研究分野
基礎研究は、「なぜこれが重要なのか?」という質問に答えます。一方、応用科学は「これをどのように使用できるか?」という質問に答えます。
応用科学は、既存の科学知識を応用しより実用的な方法を開発し、重要な答えを、さらには命を救うような答えを導き出す科学の分野です。 ベックマン・コールター ライフサイエンスは、研究者の皆様がご自身の研究分野でより素晴らしい成果を得るために必要な情報を提供するためにここにいます。
Explore Additional Topics, Research, Standards, Documents, Videos and More
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リソース
- 研究分野
- 細胞種
- 疾病管理 (Disease Management)
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Biologics Drug Discovery and Development
- Analytical Method Development and Testing
- Biologics Assay Development
- Introduction to Biologics
- Target Discovery, Identification and Selection
- Biologics Drug Discovery
- Preclinical Drug Development
- Flow Cytometry in Cell Therapy
- Biologics Upstream Development
- Biologics Downstream Development
- cGMP Biologics Production
- QA / QC Release Testing
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Disease Research
- アレルギー
- 自己免疫疾患
- 心血管疾患
- Immune-Mediated Inflammatory Diseases
- Infectious Diseases
- Metabolic
- Diseases of the Microbiome
- Oncology
- 先天性疾患
- 皮膚疾患
- 環境性疾患
- 消化器系疾患
- 遺伝性疾患
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白血病と悪性リンパ腫
- B細胞腫瘍
- フローサイトメトリー検査のワークフローに存在するムダの最小化
- T細胞腫瘍
- 骨髄系腫瘍
- B細胞腫瘍におけるCD200の発現
- Importance of CD34 in Screening Tests for Hematolymphoid Neoplasms: ClearLLab LS Shows the Way
- フローサイトメトリーによる造血リンパ腫検査へのClearLLabリンパ球スクリーニングチューブの使用
- Demonstration of the Clinical Performance of the ClearLLab LS in a Multi-Center Study
- Performance Testing of the ClearLLab LS (Lymphoid Screen)*
- ClearLLab 10Cアプリケーションの標準化されたコンペンセーション設定
- ClearLLab Control Cells–ClearLLab 10Cパネルを用いた測定のプロセスコントロール用コントロール細胞
- Download the Immunophenotyping Reference Table for Hematopoietic Malignancies
- ClearLLab 10カラーパネルの性能:ロット間再現性
- ClearLLab 10Cパネルマーカーとその組み合わせ
- フローサイトメトリーによる造血器腫瘍イムノフェノタイピングに用いる標準化試薬およびガイドライン
- DURA Innovations Cost Benefit Calculator
- Leukemia and lymphoma: an example of how flow cytometry aids diagnosis
- ドライ抗体試薬の使用による、ワークフローの効率化
- ドライ抗体試薬と液状抗体試薬
- エキスパートのご紹介
- 検査結果の標準化-臨床ビネット
- グローバルヘルス
- モノクローナル抗体医薬品開発ワークフロー
- 多様な業界に広がるバイオテクノロジー
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標準規格の解説
- USP<643>
- 21 CFR Part 11 - Data Integrity
- FDA ALCOAガイダンス
- European Pharmacopoeia EP 2.2.44
- EU GMP Annex 1
- EU GMP Annex 11
- ISO 14644 cleanroom recovery testing explained
- ISO 21501
- ISO Regulations
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IVD-Regulation (IVDR)
- IVDR compliant instruments*
- IVDR compliant software*
- IVDR compliant reagents
- E-book
- Future proofing your flow cytometry panel under IVDR
- In-house IVD FCM panel or not: it depends
- Building IVDR compliant panels for haematological disorders
- Impact of the new EU IVD-Regulation on the daily life of the clinical Flow cytometry laboratory webinar
- Laboratory Developed Test (LDT) vs IVD Validation Workflow
- Meet the Expert — Maurizio Suppo, PhD
- Potential Impacts of EU IVD-Regulation on the Clinical Flow Cytometry Lab
- IVD-R Annex I Global Safety and Performances Requirements (GSPR). A New Set of Requirements for Clinical Laboratories Performing Laboratory Developed Tests
- IVD-R: Key Considerations to Validate a Flow Cytometry Assay According to ISO 15189 Requirements
- Regulatory Entities: Separation with Cooperation
- USP 1046
- USP 1047
- USP <788>、<787>およびEP2.9.19
- USP <790>
- ISO 11171規格
- USP <787>
- 実験テクニックと手法
- ライフサイエンス研究で使用されるサンプルの種類
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テクノロジー
- 機械学習(マシンラーニング)を用いたサイトメトリーデータ解析
- レーザー回折
- Next Generation Sequencing
- 超遠心分析法
- Title
- 動的光散乱法
- ドライ抗体技術 DURA Innovations
- Accessible Flow
- Acoustic Sample Management
- Elevating Bioprocessing Efficiency with Avanti JXN and Optima XPN Centrifuges
- How the Vi-CELL BLU Analyzer supports You from Data to Insights
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ラボラトリーオートメーションの基礎
- 貴社のラボラトリーに自動リキッドハンドリングシステムを導入する前に考えるべき7つの質問
- automation in mrna vaccine research and antibody e
- オートメーションの海図作成:ラボラトリーのオートメーション化の準備と導入
- Applications in synthetic biology automation
- beckman biomek i3 automated magnetic bead cleanup
- echo dbtl high throughput dna assembly
- beckman echo enveda natural product
- echo fastpb high throughput gene construction
- beckman echo525 high throughput plating
- biomek-i3-automated-cell-transfection-doe
- biomek i3 introduction
- echo drug sensitivity resistance screening
- high-throughput-anaerobic-fermentation-probiotics-biolector-xt
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遠心分離技術
- 遠心処理におけるバイオセーフティ対策
- sample preparation for singleparticle electron cryomicroscopy
- Analytical ultracentrifugation technique: Quantitative analysis of crude AAV samples using DGE AUC
- exosome-ultracentrifugation-rotor-tube-selection
- optima auc lnp characterization
- Continuous Flow Centrifugation
- ダイナミック・ロータ・イナーシャチェック(DRIC)
- Elutriation Centrifugation
- 遠心機の安全な取り扱い方法
- 遠心の加減速制御技術 (Ultra Harmonic Technology:UHT)
- 超遠心分離技術
- ベックマン博士の遠心分離一口メモ
- JP DGUC Solution
- 密度勾配遠心法とは?
- JP High Performance Ecosystem
- 遠心分離の原理
- Cytobank Training
- SPRI磁性ビーズ
- Accessible Flow Learning Center
- Flow Cytometry Basics
- Flow Cytometry Data Reproducibility
- Flow Cytometry Panel Design
- コールター原理(コールターカウンター法)の基礎
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資料集
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アプリケーションノート
- フローサイトメトリーによる簡単な17 マーカー、 18カラーのヒト血液フェノタイピング
- 21 CFR Part 11 Data Integrity for On-line WFI Instruments
- 8011+ Reporting Standards Feature and Synopsis
- 気中浮遊粒子のモニタリング:ISO21501-4校正のインパクト
- Automated Cord Blood Cell Viability and Concentration Measurements Using the Vi‑CELL XR
- Biomek Automated NGS Solutions Accelerate Genomic Research
- Biomek i-Series Automation of the Beckman Coulter GenFind V3 Blood and Serum DNA Isolation Kit
- 超遠心機および自動分注装置を用いた カーボンナノチューブの調製・精製と 分析用超遠心システムによる解析
- Viability Assessment of Cell Cultures Using the CytoFLEX
- MET ONE HHPC 6+を用いた小型クリーンルームの空気清浄度クラス分類
- ハンドヘルド型気中パーティクルカウンターで行う クリーンキャビネットの定期的な評価
- Recommended cleaning procedure for the exterior surface of the MET ONE 3400+
- Counting Efficiency: MET ONE Air Particle Counters and Compliance to ISO-21501
- Critical Particle Size Distribution for Cement using Laser Diffraction
- Detecting and counting bacteria with the CytoFLEX research flow cytometer: II-Characterization of a variety of gram-positive bacteria
- 沈殿および遠心分離を組み合わせたキットを使用しない効率的な核酸分離法
- Echo System-Enhanced SMART-Seq v2 for RNA Sequencing
- 遠心機によるナノセルロースの分級
- 超遠心分離法 / 動的光散乱法による 顔料インクの分級と粒子径測定
- How to Use Violet Laser Side Scatter Detect Nanoparticle
- HIAC(ハイアック)システムでHRLDセンサーを使用する際の推奨ターボリューム設定
- Particle Size Analysis Simple, Effective and Precise
- Flow Cytometric Analysis of auto-fluorescent cells found in the marine demosponge Clathria prolifera
- MET ONE センサーの過酸化水素ガス(VHP)耐性
- 超遠心分離法による 金属コロイド精製と濃縮
- 密度勾配遠心法による 金ナノロッドの分離精製
- Miniaturized and High-Throughput Metabolic Stability Assay Enabled by the Echo Liquid Handler
- Minimal Sample to Sample Carry Over with the HIAC 8011+
- Modern Trends in Non‐Viable Particle Monitoring during Aseptic Processing
- ナノ粒子複合材の粒子径測定 - 密度勾配超遠心法と動的光散乱法を用いて -
- Identification of Circulating Myeloid Cell Populations in NLRP3 Null Mice
- Optimizing the HIAC 8011+ Particle Counter for Analyzing Viscous Fluids
- パーティクルカウンター資料集 高圧ガス配管内の清浄度測定- MET ONE 3400ガス校正オプションで ISO 14644の計測を簡単に -
- 無菌医薬品製造区域の環境モニタリング
- 無菌医薬品製造のためのペーパーレスによる環境モニタリング
- Analysis of plant genome sizes using flow cytometry: a case study demonstrating dynamic range and measurement linearity
- Calibrating the QbD1200 TOC Analyzer
- Detection Limit
- Vibrio Natriegens Process Scale-up
- モノクローナル抗体産生CHO 細胞株の96-ウェルプレートを用いたフェドバッチ培養条件最適化の自動化
- A Deeper Look at Lipid Nanoparticles
- A High-Throughput, Automated Screening Platform for IgG Quantification During Drug Discovery and Development
- Automated Research Flow Cytometry Workflow Using DURA Innovations Dry Reagent Technology with the *Biomek i7 Automated Workstation and *CytoFLEX LX Flow Cytometer
- Automating antibody titration using a CytoFLEX LX analyzer Integrated with a Biomek i7 Multichannel workstation and Cytobank streamlined data analysis
- Automated IDT Alt-R CRISPR/Cas9 Ribonucleoprotein Lipofection Using the Biomek i7 Hybrid Automated Workstation
- Monitoring Yeast Cultures with the BioLector and Multisizer 4e instruments
- Cultivation of suspended plant cells in the BioLector®
- Determination of cell death in the BioLector Microbioreactor
- Echo System-Enhanced SMART-Seq v4 for RNA Sequencing
- 環境モニタリングに最適なハンドヘルドパーティクルカウンターを選ぶためのシンプルガイド
- Leveraging Analytical Ultracentrifugation for Comprehensive Characterization of Lipid Nanoparticles in Drug Delivery Systems| 1Accelerating Answers Background Analytical ultracentrifugation (AUC) is a well-established biophysical technique for the characterization of macromolecules. It has become the gold standard characterization method for adeno-associated viruses (AAVs) to determine particle loading states1 and has recently been applied to characterize lipid nanoparticles (LNPs) using sedimentation velocity and density contrast methods.2,3 Both methods provide information on the purity and comparability of different formulations. Density contrast AUC is used to experimentally determine the sample's density or partial specific volume distribution, enabling the characterization of unloaded particles, RNA copy number in the LNPs, and size distributions. AUC provides an array of unique information from a single technique, opens new possibilities, and enhances the characterization of LNPs for safer therapeutics.APPLICATION NOTE
- Linearity of the Vi-CELL BLU Cell Counter and Analyzer
- Miniaturized 16S rRNA Amplicon Sequencing with the Echo 525 Liquid Handler for Metagenomic and Microbiome Studies
- マイクロバイオリアクターBioLector XTおよび 微生物径・体積分布測定装置Multisizer 4eによる異なる培養培地でのシアノバクテリアSynechocystisのモニタリング
- mRNA Manufacturing with Fed Batch In Vitro Transcription
- Nanoliter Scale High-Throughput Protein Crystallography Screening with the Echo Liquid Handler
- Optimizing EV Analysis with a CytoFLEX nano flow cytometer and FCMPASS
- Preparation of Mouse Plasma Microsamples for LC-MS/MS Analysis Using the Echo Liquid Handler
- Robust and High-Throughput SARS-CoV-2 Viral RNA Detection, Research, and Sequencing Using RNAdvance Viral and the OT-2 Platform
- The Effects of Tubing Length on Airborne Particulate Sampling
- The Valita Aggregation Pure assay: A rapid and accurate alternative for aggregation quantification of purified monoclonal antibodies
- フローサイトメトリーを用いた海洋サンプル中植物プランクトンの正確な計数
- ファインバブルのサイズと粒子数を正確に測定
- Achieving Compliant Batch Release – Sterile Parenteral Quality Control
- Adaptive Laboratory Evolution of Pseudomonas putida in the RoboLector
- Adjustment of the pH control settings in the BioLector Pro microbioreactor
- Aerobic cultivation of high-oxygen-demanding microorganisms in the BioLector XT microbioreactor
- CytoFLEX mosaicシステムを用いたコンベンショナル検出とスペクトル検出の比較:DURAClone IM T細胞サブセット抗体パネルでのケース
- 分析における革命:次世代を担うOptima AUCの概要
- スペクトル検出モジュールCytoFLEX mosaic を用いて複数の自家蛍光を除去することによる、白血球ポピュレーションのスペクトルアンミキシングの向上
- OMIP-104 食事誘発性肥満マウスの肝臓組織免疫細胞構成の検討:公開されているOMIP パネルのスペクトルフローサイトメーター CytoFLEX mosaic システムへの適用
- Multisizer 4eを用いた二枚貝の育成繁殖のための分析
- Assay Assembly for Miniaturized Quantitative PCR in a 384-well Format Using the Echo Liquid Handler
- Automated 3D Cell Culture and Screening by Imaging and Flow Cytometry
- Automating a Linear Density Gradient for Purification of a Protein:Ligand Complex
- Automating Biopharma Quality Control to Reduce Costs and Improve Data Integrity
- Automating Bradford Assays
- 細胞培養プロセスの自動化
- 自動化システム活用による細胞株開発(CLD)における課題の克服
- BioLector マイクロバイオリアクターを使ったプロバイオティクス細菌の嫌気培養プロセス
- NGSワークフローの自動化比較:NGSライブラリ自動調製システム Biomek NGeniuSと従来型自動分注機 *
- Automation of CyQuant LDH Cytotoxicity Assay using Biomek i7 Hybrid Automated Workstation to Monitor Cell Health
- NGS ライブラリ自動調製システム Biomek NGeniuS を用いた Illumina DNA Prep Kit の自動化
- Automation of protein A ELISA Assays using Biomek i7 hybrid workstation
- 新機種Avanti J-15遠心機におけるサンプル保護の改善およびサンプル回収率の最大化
- 新機種Avanti J-15遠心機の短時間減速プロファイルによるワークフロー効率の向上
- タンパク質精製-すべてのステップをこの1台で!-
- バイオ医薬品の品質管理を目的として細胞カウントを自動化する際の注意点
- 今さら聞けない マルチカラーフローサイトメトリーのコツ
- Beer, Evaluation of Final Product and Filtration Efficiency
- Monitoring E. coli Cultures with the BioLector and Multisizer 4e Instruments
- BiomekによるゲノムDNAライブラリ調製の自動化がもたらす研究の加速
- Biomek i7 Hybrid Automated KAPA mRNA HyperPrep Workflow
- Biomek i-Series Automated AmpliSeq for Illumina® Library Prep Kit
- Biomek i-Series Automated Beckman Coulter Agencourt RNAdvance Blood Kit
- Biomek i-Series Automated Beckman Coulter Agencourt RNAdvance Cell
- Biomek i-Series Automated Beckman Coulter Agencourt SPRIselect for DNA Size Selection
- Biomek i-Series Automated IDT® xGen Hybridization Capture of DNA libraries on Biomek i7 Hybrid Genomics Workstation
- Biomek i-Series Automated Illumina Nextera DNA Flex Library Prep Kit
- Biomek i-Series Automated Illumina® Nextera XT DNA Library Prep Kit
- Biomek i-Series Automated Illumina TruSeq DNA PCR-Free Library Prep Kit
- Biomek i-Series Automated Illumina TruSeq® Nano DNA Library Prep Kit
- Biomek i-Series Automated Illumina TruSeq® Stranded mRNA Sample Preparation Kit Protocol
- Biomek i-Series Automated Illumina TruSeq® Stranded Total RNA Sample Preparation Kit Protocol
- Biomek i–Series Automated Illumina® TruSight Tumor 170 32 Sample Method
- Biomek i-Series Automated KAPA HyperPrep and HyperPlus Workflows
- Biomek i-Series Automated New England Biolabs NEBNext® Ultra II DNA Library Prep Kit
- Biomek i-Series Automated SurePlex PCR and VeriSeq PGS Library Prep for Illumina
- Biomek i-Series Automation of the DNAdvance Genomic DNA Isolation Kit
- 生死細胞オートアナライザーVi–CELL BLUの計数性能評価
- Cell Line Development – Data Handling
- Cell Line Development – Limiting Dilution
- バイオ医薬品の細胞株開発に向けたモノクローンの選別とエンリッチメント
- コールター原理を用いた細胞計数
- Changes to GMP Force Cleanroom Re-Classifications
- 超遠心分析を用いたバイオ医薬品インスリンのキャラクタリゼーション
- 気中パーティクルカウンター MET ONE 3400+のFDA 21CFR Part11 コンプライアンスガイド
- 生死細胞オートアナライザーVi-CELL BLUを用いたクラスタ計数解析と、サンプル調製方法についての検討
- Comparing Data Quality & Optical Resolution of the Next Generation Optima AUC to the Proven ProteomeLab on a Model Protein System
- 96ウェルプレートを利用して細胞の計数条件を決める有効な方法
- Consistent Cell Maintenance and Plating through Automation
- スフェロイドのサイズのコントロールと製品化へのサポート
- Control Standards and Method Recommendations for the LS 13 320 XR
- 医薬・製薬業界で求められるデータインテグリティと気中パーティクルカウンターMET ONE 3400+の機能
- Cydem VT Automated Clone Screening System – Generating an Antibody Standard Curve
- Cydem VT System: A Comparison to Traditional Clone Screening Platforms
- Cydem VT System Analytical Capabilities and Repeatability
- Determination of kLa values on the Cydem VT Automated Clone Screening System
- Optimize Clone Screening: Time Savings with the Cydem VT System in Monoclonal Antibody-Producing Cell Line Development Workflows
- Protein Titer Capabilities - A Comparison of the Cydem VT System to Current Technology across Various CHO Media
- Vi-CELL BLU Analyzer Data Exports and Offline Analysis Instructions
- フローサイトメトリーハイパラメータ(高次元)データでのマシンラーニングアルゴリズムを用いた解析・可視化 -CytoFLEX LX 20カラーパネルでの例-
- チャネル数の異なるFCSファイルをRで書き換える方法
- ナノフローサイトメーター CytoFLEX nano が実現する、ナノ粒子解析の新アプローチ
- ナノフローサイトメーターCytoFLEX nano:ナノスケール・フローサイトメトリーの新境地
- Detecting Moisture in Hydraulic Fluid, Oil and Fuels
- 半導体封止材のクラックを引き起こすシリカ中の粗大粒子の検出
- Multisizer 4eを用いたメッキ液中の異物検出
- コールターカウンターを用いた薬剤耐性菌の測定
- Determination of Size and Concentration of Particles in Oils
- DO-controlled fed-batch cultivation in the RoboLector®
- dsDNA Quantification with the Echo 525 Liquid Handler for Miniaturized Reaction Volumes, Reduced Sample Input, and Cost Savings
- Screening of yeast-based nutrients for E. coli-based recombinant protein production using the RoboLector Platform
- E. coli fed-batch cultivation using the BioLector® Pro
- マルチプレックス全ゲノムシーケンシングおよびマイクロバイオームアプリケーションのためのIllumina Nextera XTライブラリ調製の効果的な微量化
- Efficient clone screening with increased process control and integrated cell health and titer measurements with the Cydem VT Automated Clone Screening System
- Efficient Factorial Optimization of Transfection Conditions
- ワクチン開発・製造を推し進める
- Enumeration And Size Distribution Of Yeast Cells In The Brewing Industry
- Filling MicroClime Environmental Lids
- Flexible ELISA automation with the Biomek i5 Workstation
- 高速冷却遠心機に搭載の優れた"空気摩擦熱減少システム"
- Fully Automated Peptide Desalting for Liquid Chromatography–Tandem Mass Spectrometry Analysis Using Beckman Coulter Biomek i7 Hybrid Workstation
- Biomek i7ハイブリッド・加圧・遠心分離インテグレーションシステムによるビタミンD測定前処理の自動化
- Get Control in GMP Environments
- Getting Started with Kaluza: Data Scaling and Compensation Adjustment
- Getting Started with Kaluza: Parameters
- g-Max:ベックマン・コールターの多機能な超遠心用製品群への性能追加
- 超遠心法によりナノ粒子を分級して 正確な粒子径を求める方法
- DURACloneのコンペンセーション設定
- HIAC Industrial – Our overview solution for fluid power testing for all applications
- High throughput cultivation of the cellulolytic fungus Trichoderma reesei in the BioLector®
- High-Throughput qPCR and RT-qPCR Workflows Enabled by Echo Acoustic Liquid Handling and NEB Luna Reagents
- A Highly Consistent BCA Assay on Biomek i-Series
- A Highly Consistent Bradford Assay on Biomek i-Series
- A Highly Consistent Lowry Method on Biomek i-Series
- Highly Reproducible Automated Proteomics Sample Preparation on Biomek i-Series
- High-throughput IgG quantitation platform for clone screening during drug discovery and development
- High-throughput Miniaturization of Cytochrome P450 Time-dependent Inhibition Screening Using the Echo 525 Liquid Handler
- 細胞株開発におけるハイスピードでエラーを低減できるヒットピッキング自動化の実現
- Host Cell Residual DNA Testing in Reduced Volume qPCR Reactions Using Acoustic Liquid Handling
- 生死細胞オートアナライザー Vi–CELL BLUの機器間差評価テスト
- ベックマン・コールターの遠心機を使用したエクソソーム除去FBSの作製:コスト効果に優れた堅実な選択肢
- フローサイトメーターCytoFLEXを用いた、バイオレットレーザーの側方散乱光を利用してナノ粒子を検出する方法
- 細胞株開発
- ICH Q2 – the Challenge of Measuring Total Organic Carbon in Modern Pharmaceutical Water Systems
- ICH Q2 – The Challenge of Measuring Total Organic Carbon in Modern Pharmaceutical Water Systems
- ICH Q2 – the Challenge of Measuring Total Organic Carbon in Modern Pharmaceutical Water Systems
- Illumina Nextera Flex for Enrichment on the Biomek i7 Hybrid Genomics Workstation
- Improved data quality of plate-based IgG quantification using Spark®’s enhanced optics
- Valita Titer 384ウェルプレートによるIgG定量スループットの向上
- Vi-CELL BLU 生死細胞自動セルカウンターとSartorius 社のAmbr® 250 ハイスループットバイオリアクターとの統合による細胞濃度および生存率の測定の自動化
- Temperature dependence of hydrodynamic radius of an intrinsically disordered protein measured in the Optima AUC analytical ultracentrifuge.
- Introducing the Cydem VT Automated Cell Culture System: A high-throughput platform for fast and reliable clone screening experiments
- Issues with Testing Jet Fuels for Contamination
- Jurkat Cell Analyses Using the Vi-CELL BLU Cell Viability Analyzer
- 細胞代謝活性モニタリングにおける Vi-CELL MetaFLEXの有用性
- Linearity of BSA Using Absorbance & Interference Optics
- 光学式パーティクルカウンターにおける「Long Life Lasers(長寿命レーザー)」の検証
- LS 13 320 XR: Sample Preparation - How to measure success
- Beckman’s LS 13 320 XR Vs. Malvern Mastersizer
- 20カラー イムノタイピングデータのマシンラーニング アルゴリズムを用いた細胞サブセットの詳細解析
- Vi–CELL XRとVi–CELL BLUの 計数マッチング方法
- Media optimization in the RoboLector platform for enhanced protein production using C. glutamicum
- MET ONE 3400+ LDAP & Active Directory connection Guide
- Vi-CELL BLUの計数値をVi-CELL XRに素早く一致させるための有効な方法
- フローサイトメーターCytoFLEX Sでデザインしたパネルの セルソーターCytoFLEX SRTへの移行方法
- Miniaturization of an Epigenetic AlphaLISA Assay with the Echo Liquid Handler and the BMG LABTECH PHERAstar FS
- Miniaturization and Rapid Processing of TXTL Reactions Using Acoustic Liquid Handling
- Miniaturized Enzo Life Sciences HDAC1 Fluor de Lys Assays Using an Echo Liquid Handler Integrated in an Access Laboratory Workstation
- Miniaturized Enzymatic Assays with Glycerol
- Miniaturized EPIgeneous HTRF Assays Using the Echo Liquid Handler
- Miniaturized Gene Expression in as Little as 250 nL
- Miniaturized Genotyping Reactions Using the Echo Liquid Handler
- Miniaturized Multi-Piece DNA Assembly Using the Echo 525 Liquid Handler
- Miniaturized Sequencing Workflows for Microbiome and Metagenomic Studies
- ミネラルウォーター製造工程のばらつき最小化
- CytoFLEX SRTセルソーターによる ミックスモードソーティング
- Mode of operation of optical sensors for dissolved oxygen and pH value
- Modular DNA Assembly of PIK3CA Using Acoustic Liquid Transfer in Nanoliter Volumes
- Multi-Wavelength Analytical Ultracentrifugation of Human Serum Albumin complexed with Porphyrin
- Nanoliter Scale DNA Assembly Utilizing the NEBuilder HiFi Cloning Kit with the Echo 525 Liquid Handler
- 卓上型セルソーターCytoFLEX SRTによるナノスケール粒子のソーティング
- What to do now that ACFTD is discontinued
- Low-pH profiling in µL-scale to optimize protein production in H. polymorpha using the BioLector
- Optimized NGS Library Preparation with Acoustic Liquid Handling
- Particle Counting in Mining Applications
- Performance of the Valita Aggregation Pure assay vs HPLC-SEC
- BioLector XT マイクロバイオリアクターを使った Chlorella vulgaris の光照射培養
- Plate Deposition Speed Comparison of Astrios and CytoFLEX SRT Cell Sorters
- Multisizer 4eによる脂肪細胞サイズの精密測定
- Principles of Continuous Flow Centrifugation
- Flow Cytometric Approach to Probiotic Cell Counting and Analysis
- Protocols for use of SuperNova violet 428 conjugated antibodies in a variety of flow cytometry applications
- 超遠心分離法によるエクソソームの高純度精製
- VTi 90ロータと塩化セシウム等密度勾配超遠心法(CsCl DGUC)を用いたウイルスベクター精製
- JP SDBS Validation
- USP System Suitability
- Calibrating the QbD1200+ TOC Analyzer
- Multisizer 4eを用いたブロッキング防止パウダーの粒子径の品質管理
- Using the Coulter Principle to Quantify Particles in an Electrolytic Solution for Copper Acid Plating
- A Rapid Flow Cytometry Data Analysis Workflow Using Machine Learning- Assisted Analysis to Facilitate Identifying Treatment- Induced Changes
- Rapid Measurement of IgG Using Fluorescence Polarization
- Valita Titer アッセイを用いた迅速なウサギIgG定量
- NGSライブラリ自動調製システム Biomek NGeniuS のエラー低減機能
- Root Cause Investigations for Pharmaceutical Water Systems
- Screening yeast extract to improve biomass production in acetic acid bacteria starter culture
- 卓上型セルソーターCytoFLEX SRTによるシングルセルソーティング
- スペクトルフローサイトメトリーでの自家蛍光の克服:埋もれていた自家蛍光シグナルを分離する
- Biomek i7ハイブリッド・加圧インテグレーションシステムによる除タンパクカートリッジを用いたビタミンD測定前処理の自動化
- Vi–CELL XRとVi–CELL BLUとの仕様比較
- スペクトルフローサイトメトリーの科学的概要
- Specifying Non-Viable Particle Monitoring for Aseptic Processing
- ベックマン・コールターの装置を使用してエクソソームの分離および特性評価を行うための標準化・自動化されたアプローチ
- アコースティック分注による合成生物学の合理化
- Switching from Oil Testing to Water and back using the HIAC 8011+ and HIAC PODS+
- SWOFF The unrecognized yet indispensable sibling of FMO
- ドライ抗体試薬DURACloneを用いたフローサイトメーターCytoFLEXによるヒトT細胞サブセットの13カラー解析
- The scattered light signal: Calibration of biomass
- Comparative Performance Analysis of CHO and HEK Cells Using Vi-CELL BLU Analyzer and Roche Cedex® HiRes Analyzer
- k-ファクタを利用したロータの効率比較
- Utilization of the MicroClime Environmental Lid to Reduce Edge Effects in a Cell-based Proliferation Assay
- Validation of On-line Total Organic Carbon Analysers for Release Testing Using ICH Q2
- 過酸化水素ガス滅菌によるVi–CELL BLUの性能評価
- Vesicle Flow Cytometry with the CytoFLEX
- Automating the Valita Titer IgG Quantification Assay on a Biomek i-Series Liquid Handling System
- Evaluating Clone Performance and Cell-Specific Productivity: Comparing the Cydem VT System and 10 L Bioreactor Cultivations
- 密度勾配自動作製装置 OptiMATE Gradient Makerを用いた迅速なアデノ随伴ウイルスの高純度精製
- 密度勾配自動作製装置OptiMATE Gradient Makerによるウイルスベクター精製におけるバラツキと作業時間の低減
- 自動セルカウント装置3種およびマニュアル法との比較によるVi-CELL BLUの変動性解析
- Automating the Valita Aggregation Pure Assay on a Biomek i-Series Liquid Handler
- Vi-CELL BLU 規制への対応 – 21 CFR Part 11
- Whole Genome Sequencing of Microbial Communities for Scaling Microbiome and Metagenomic Studies Using the Echo 525 Liquid Handler and CosmosID
- 卓上型セルソーターCytoFLEX SRTを使用した 稀少なE-SLAM造血幹細胞のソーティングと その後の培養
- スペクトルフローサイトメトリーにおけるアンミキシングアルゴリズムの重要な役割
- 等密度勾配超遠心法によるアデノウイルスの精製: 垂直ロータの有用性
- Vi–CELL BLUの新機能、高速モード
- 超遠心分離法によるウイルスベクターの精製
- 超遠心分析法を用いた脂質ナノ粒子の特性評価:包括的レビュー
- 超遠心分析法を活用した、薬物送達システムに使用する脂質ナノ粒子の特性評価
- 総合カタログ
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製品カタログ / データシート
- Access Single Robot System for Synthetic Biology Workflows
- Automated Solutions for Cell Line Development
- Automated Solutions for ELISA
- Echo Acoustic Liquid Handling for Synthetic Biology
- HIAC 8011+ Liquid Particle Counting Systems
- LS 13 320 XR - Laser Diffraction Particle Size Analyzer
- Download the Valita Titer Assay Brochure
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導入事例 (インタビュー記事)
- 検査の効率化と精度向上を実現
- セルソーターを用いたバイオ燃料高産生藻のハイスループット遺伝子改変オートメーションシステム
- 高速冷却遠心機を用いたアデノウイルスベクターの効率的で再現性の良い調製方法
- 老舗の培地メーカーが挑む抗体開発と培地開発
- 研究に最適な卓上遠心機を選択するポイント
- がん遺伝子パネル解析/クリニカルシーケンスにおけるFFPE組織切片からのゲノムDNA抽出の重要性
- 大学における留学生を対象とした英語による遠心機の安全教育セミナーの有用性
- 大学における共通機器室の機器管理とサポート体制について
- 超遠心法を用いたエクソソームの分離精製
- Fast, Cost-Effective and High-Throughput Solutions for DNA Assembly
- High-throughput next-generation DNA sequencing of SARS-CoV-2 enabled by the Echo 525 Liquid Handler
- X線結晶構造解析のための膜タンパク質精製の基礎
- 密度勾配超遠心法による簡便な細胞小器官の分画
- 堆積地質学の研究における粒度分布測定
- Tierra Biosciences reveals major molecular discovery
- 大学の共通機器室での機器管理とサポート体制について
- 「細胞のごみ」を分解するオートファジーの 全容に迫る
- B細胞の生成と成熟、維持の研究を創薬にも活かす
- 生殖生物学の基礎研究と現在の生殖補助医療
- 動脈硬化の免疫的な機序から心血管疾患の治療と予後を研究 ― マルチカラーフローサイトメーターで研究を加速 ―
- 10カラーフローサイトメトリーを用いた細胞マーカー解析の有用性
- 新しいアプローチでの膠原病疾患治療に向けて
- 最善の総合医療を提供し、疾病の克服と健康の増進を通じて社会に貢献する
- 機能性抗体で免疫応答を制御し、新しい治療戦略と創薬に結びつける ― 研究を加速するフローサイトメーター ―
- 炎症の観点から疾患の発症メカニズムを解明し、治療薬を創出する
- 「運用の自由度」と「業務効率」を両立するカクテル抗体試薬活用の実際
- 現場に寄り添うサービスサポートと変化に備える一台
- 免疫研究で漁業の未来を変える - 研究の効率を上げるフローサイトメーター -
- 高精度の迅速診断に向けて - Navios EXによる造血器腫瘍細胞の10カラー解析の導入 -
- フローサイトメトリーによる造血器腫瘍解析検査の病院内実施がもたらすもの
- フローサイトメトリー検査を分割し、測定装置の特長を活かすことで生じる作業効率向上とその先
- 研究支援の未来を見据えて
- 細胞外タンパク質分解の新たな可能性を拓く
- 臨床検査技師育成におけるフローサイトメーター教育の重要性とCytoFLEXの活用
- EV研究を支える解析ツール:フローサイトメーターはどこまで進化した?
- iPS 細胞のメカニズムと 安全で効率のよい 樹立・維持法を追究
- Leveraging acoustic and tip-based liquid handling to increase throughput of SARS-CoV-2 genome sequencing
- 劇的に変わったワークフロー -AQUIOSによるCD34陽性細胞数測定-
- 粒子間の相互作用研究から、細胞と粒子の相互作用研究へ
- 遺伝子治療ベクターの品質評価における最新事情
- 虹彩細胞からの網膜細胞再生へ ~MoFlo Astriosの役割~
- iPS 細胞由来の “ 肝臓の芽 ” の移植で重度肝疾患の治療を目指す
- 患者の自己骨髄細胞を用いて肝硬変を治療する
- 超遠心法によるウイルス精製の基礎
- フライヤー
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インタビュー記事
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- 水田土壌細菌の菌体計測における コールターカウンターの有用性
- iPS細胞由来ナチュラルキラー細胞の大量製造法開発における コールター原理の有用性
- 濁度計では測定が困難な微生物の「体積・菌数」の精確な測定法
- がん抑制遺伝子p53の標的遺伝子PHLDA3の機能解析進展と AMPure XPによるDNAクリーンアッププロセスへの貢献
- 小児白血病治療における中央診断 -小児白血病グループ研究統合の中での変遷-
- 小児白血病治療における中央診断 -小児白血病中央診断の現状-
- How the BioLector XT Microbioreactor and Biomek Liquid Handler solutions are transforming precision fermentation
- 生死細胞カウント方法における課題
- がん微小環境の1細胞解析におけるクラウドベース解析ソフトウエア Cytobankの貢献
- iGEM 2021 Kyotoチーム : FLOWEREVER 学部生による合成生物学の社会実装に向けた技術開発
- 院内検査室におけるフローサイトメトリー検査 -国家公務員共済組合連合会 虎の門病院-
- Fundamentals of Ultracentrifugal Virus Purification
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- 再生医療分野での細胞集塊体積計測の重要性とMultisizer 4eの有用性
-
ポスター
- Applications of Ultracentrifugation in Purification and Characterization of Biomolecules
- Automating Genomic DNA Extraction from Whole Blood and Serum with GenFind V3 on the Biomek i7 Hybrid Genomic Workstation
- ABRF 2019: Automated Genomic DNA Extraction from Large Volume Whole Blood
- Automated library preparation for the MCI Advantage Cancer Panel at Miami Cancer Institute utilizing the Beckman Coulter Biomek i5 Span-8 NGS Workstation
- Automating Cell Line Development for Biologics
- Cell-Line Engeneering
- Characterizing the Light-Scatter Sensitivity of the CytoFLEX Flow Cytometer
- AACR 2019: Isolation and Separation of DNA and RNA from a Single Tissue or Cell Culture Sample
- Preparing a CytoFLEX for Nanoscale Flow Cytometry
- A Prototype CytoFLEX for High-Sensitivity, Multiparametric Nanoparticle Analysis
- ABRF 2019: Simultaneous DNA and RNA Extraction from Formalin-Fixed Paraffin Embedded (FFPE) Tissue
- Quantification of AAV Capsid Loading Fractions: A Comparative Study
- SARS-CoV2感染応答についての標準化ドライ抗体パネルを使用したフローサイトメトリーの有用性
- 製品の取扱説明書
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ホワイトペーパー
- CytoFLEX mosaicが登るスペクトルサイトメトリーの山登頂と生還のための登山装備(アルゴリズム)たち
- 超遠心分析法がもたらすmRNA-LNP製剤CQA評価の新たな指標― 密度に基づくmRNA-LNPの品質特性の理解と管理 ―
- Centrifugation is a complete workflow solution for protein purification and protein aggregation quantification
- 分析用超遠心機:汎用性の高い、優れた高分子特性評価手法
- 遺伝子治療用ウイルスベクターにおける精製・品質管理の課題への取り組み
- 分析用超遠心機を用いたタンパク質間相互作用の解析
- Elevate Your Extracellular Vesicle (EV) Research – An Introduction to EVs
- Enhancing Molecular Studies with Multiwavelength Analytical Ultracentrifugation
- GMPクリーンルームの清浄度クラスと日常環境モニタリング
- AUC Insights - Assessing the quality of adeno-associated virus gene therapy vectors by sedimentation velocity analysis
- ホワイトペーパー:脂質ナノ粒子(LNP)研究ガイド
- フローサイトメトリーによる生物学的機構の解析
- USP<1788>Subvisible Particulate Matterの変更
- Automation Approach to Accelerate Antibody Drug Development
- Characterization of RNAdvance Viral XP RNA Extraction Kit using AccuPlex™ SARS–CoV–2 Reference Material Kit
- CytoFLEX Platform Gain Independent Compensation Enables New Workflows
- CytoFLEX Platform Flow Cytometers with IR Laser Configurations: Considerations for Red Emitting Dyes
- Evaluation of the Analytical Performance of the AQUIOS CL Flow Cytometer in a Multi-Center Study
- Simultaneous Isolation and Parallel Analysis of gDNA and total RNA for Gene Therapy
- Hydraulic Particle Counter Sample Preparation
- 密度勾配超遠心法による生体高分子高純度精製のしくみ
- ベックマン・コールター社製ウイルスRNA抽出溶解緩衝液を用いたCOVID-19疾患ウイルスSARS-CoV-2の不活化
- セルソーターの原理と細胞ソーティングのコツ
- 分析用超遠心機を用いた生体分子複合体の特性解析と測定時のサンプル濃度の関係性
- Liquid Biopsy Cancer Biomarkers – Current Status, Future Directions
- MET ONE 3400+ IT Implementation Guide
- Reproducibility in Flow Cytometry
- 大容量遠心の効率化
- SuperNova v428:新しいフローサイトメトリー用の高輝度蛍光色素
- ライフサイエンス分野製品 安全性データシート(SDS/MSDS)
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アプリケーションノート
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動画・Webセミナー
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動画:製品紹介
- Access Laboratory Workstation Introduction
- Allegra V-15R Features and Benefits
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- AQUIOS CL How It Works
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- AQUIOS CL Flow Cytometer Online Presentation
- Automated Positive-Pressure Extraction: Biomek i-Series Integrated Solutions
- BeckmanConnect Privacy and Security Highlights
- BioLector XT Microbioreactor
- BioLector XT Microbioreactor & Biomek i5 Liquid Handler Integration
- Biomek i-Series and Echo Acoustic Liquid Handler Integrated Workstation
- Biomek i Series: Dual Gripping on the i7 Hybrid
- Biomek i Series: Gripper Rotation and Navigation on High-Density Deck
- Biomek i Series: Intrawell Pipetting for Mixing Using 96 Multichannel
- Biomek i Series: Parallel Processing on the i7 Hybrid
- Biomek i Series: Transferring Labware In/Out of an on-deck Automated Thermal Cycler (ATC)
- Biomek i5 for Automating Protein Quantification & Characterization
- Biomek i5 for Automating Screening & Hit Picking
- Biomek i-Series: 6-Column Multichannel Plate Transfer
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- Biomek i-Series: Large Volume Transfer Using the 96 Multichannel
- CellMek SPS Innovation Keynote
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- Echo Liquid Handler Can Simultaneously Normalize and Pool NGS Library
- アコースティック微量分注機EchoによるNGSライブラリ調製時間の短縮
- Fully Automated Clone Selection: Biomek i-Series Integrated Solutions
- History of Automation
- Inside the DXFLEX Flow Cytometer Photodetectors in Flow Cytometry
- 動画でわかる、分析用超遠心機の原理
- Introducing the QbD1200 TOC Analyzer
- MET ONE 3400+ 気中パーティクルカウンター
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- Microtiter plate lid management
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- Vi-CELL BLU Analyzer Integration with Sartorius Ambr® 250 High Throughput Bioreactor & Ambr ® 15 Cell Culture Systems
- Vi-CELL BLU Sample Flow Animation
- Introducing the Vi-CELL MetaFLEX
- DURA Innovations: A Better Monday
- Advantages of ClearLLab LS
- Allegra General Purpose Centrifuge Line
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- Allegra X-15R Centrifuge Performance
- AQUIOS CL Flow Cytometer Analysis and Reporting
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- AQUIOS CL Flow Cytometer Pipeline Sample Processing
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- Automate Flow Cytometry Assays
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- Avanti JXN High Performance Centrifuge - Bioproduction
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- Avanti JXN Series High Performance Centrifuge: Introduction
- Avanti JXN Series High Performance Centrifuges in Shared Labs
- Avanti JXN-26 High Performance Centrifuge
- Biomek 4000 Automated Workstation Overview
- Centrifuge Service Installation
- ClearLLab 10C System for Integrated L&L Immunophenotyping
- Offline analysis of CytExpert files using Kaluza Analysis Software
- CytoFLEX Flow Cytometer Bandpass Filters
- CytoFLEX Flow Cytometer Inside the WDM
- CytoFLEX Flow Cytometer Bandpass Filters
- CytoFLEX LX Introduction
- CytoFLEX Flow Cytometer Peristaltic Pump
- CytoFLEX Flow Cytometer Plate Loader Option Overview
- CytoFLEX flow cytometry for the bench (and other fun locales)
- CytoFLEX Flow Cytometer Special Procedure
- DURA Innovation Workflow Comparison
- DURA Innovations Technology and Advantages
- DxFLEX Overview
- Ease of Use Avanti JXN - High Performance Centrifuges
- Harvest Line System Liner: How to Use
- Harvest Line System Liner: How to Use
- HIAC 8011+ Digital Exports and Web Server
- HIAC 8011+ Liquid Particle Counter Features
- HIAC 8011 Plus Interchangeable Sensors and Magnetic Stirrer
- HIAC 8011+ Liquid Particle Counter Overview
- HIAC 8011+ Product Demonstration
- HIAC 8011+ Liquid Particle Counter Sample Recipe Setup
- 8011+ Sample Recipe Wizard
- HIAC 8011+ Self-Diagnostic Alerts and Cleaning Routines
- HIAC 8011+ Vacuum and Degas
- HIAC PODS+ Digital Exports
- HIAC PODS+ Filter Cart Mode
- HIAC PODS+ Internal Compressor and Moisture Detector
- HIAC PODS+ Online Mode
- HIAC PODS+ Liquid Particle Counter -- An Overview
- HIAC PODS+ Product Demonstration
- HIAC PODS+ Sample Recipe Wizard
- HIAC PODS+ Self-Diagnostic Alerts and Cleaning Routines
- Introducing the Biomek i-Series Automated Workstation
- Introducing the LS 13 320 XR
- Introduction to AUC - an Analytical Ultracentrifuge
- Introduction to CytoFLEX LX
- Kaluza Reads FCS Compliant Files: FACSCelesta
- Kaluza Reads FCS Files: FACSVerse Acquisition Data
- Kaluza Software Award
- Kaluza Software Design
- Kaluza Software Launch
- Kaluza Software Parametric Visualization
- Kaluza Software Performance
- LS 13 320 Overview - Particle Characterization
- LS 13 320 XR ADAPT Software
- LS 13 320 XR: X-D Array and PIDS Technology
- Changing the Module in the LS 13 320 XR
- Multisizer 4e Cell Counter and Analyzer -- An Overview
- Searching for the Oldest Centrifuge
- Optima AUC Overview, New Analytical Ultracentrifuge
- Optima MAX Series - Tabletop Ultracentrifuge
- Optima X Series Ultracentrifuges - An Overview
- Optima XE and XPN Ultracentrifuge Performance
- Optima XE and XPN Safety and Reliability
- Optima XE and XPN Ultracentrifuges: A Total System
- Results with Tandem Dyes
- The AQUIOS CL Flow Cytometer Advantage
- The History of AUC - An Analytical Ultracentrifuge
- Ultra Harmonic Technology in the Avanti J-15 Centrifuge
- Unboxing Your New CytoFLEX Flow Cytometer
- Vi-CELL BLU Livestream Announcement
- Vi-CELL BLU フルモデルチェンジした 次世代型生死細胞アナライザー
-
科学関連
- The Coulter Principle
- Overview of Density Gradient Equilibrium Analytical Ultracentrifugation (DGE-AUC)
- 3D Imaging of Cancer Spheroids
- A Simplified Approach to Automating ELISA
- Advances in Cellular Automation
- Advances in Synthetic Biology Technologies: Cell-Free Protein Synthesis from Academia to Applied Market
- Automated 3D Cell Culture and Screening by Imaging and Flow Cytometry
- Automated Cell Culture Workflows: Biomek Integrated Solutions
- Automated group testing at scale to enable COVID-19 decision makers - Using Echo for tapestry pooling and high-throughput qPCR setup
- CytoFLEXの優れた感度を生み出すアバランシェ・フォトダイオード
- Biomek FXP as a tool for discovery
- CAR-T Cell Therapy: Introduction and Overview
- Cellular Solutions of all Shapes and Sizes
- Centrifuge 101
- Challenging Samples in Cancer Research: Formalin-Fixed Paraffin-Embedded Tissues
- Contract Manufacturing Services
- CRISPR for Immunotherapy: Introduction and Overview
- Custom Design Services for Multi-Color Flow Cytometry
- Cytogenetics Cancer Research
- Digital Pathology Image Analysis for Cancer Research
- DNA and RNA Sequencing Sample Preparation
- DURAClone Technology
- Echo Acoustic Liquid Handling Technology
- ELISA Automation on a Biomek i-Series
- An Overview of Exosome Isolation
- Flow Cytometry Principle
- Flow Cytometric Analysis of Hematologic Malignancies with ClearLLab LS Tube
- 生産から品質管理までの遺伝子治療ワークフロー
- Automated human stem cell-based phenotypic high-throughput drug screening
- How Automation Helps to Improve your ELISA
- Immunotherapy Introduction and Overview
- New Automation Strategies for Improving Sample Prep for The Analytical Laboratory
- Increasing NGS Sequencing Capacity with High-Throughput Automated TruSeq Stranded mRNA Library Construction
- Industrial Fluid Particle Counter Sample Preparation
- Innovation to Improve Genomic Sample Prep
- Introduction to Automating NGS Workflows
- Introduction to Flow Cytometry
- Multipurpose robotic platform for molecular biology, biophysical, and cellular assays
- NanoGBS - A Miniaturized Procedure for Genotyping By Sequencing Library Preparation
- Automated NEBNext Ultra Directional RNA Library Prep Kit
- Phospho Epitopes Exposure Kit
- Proteome Centric Precision Medicine - Embracing Pathological Diversity
- Evaluation to Implementation with the University of Luxembourg
- Sample Preparation for Biologics Bioanalysis
- Chemogenomics - Screening of Biologically Active Drug Libraries
- Small Talk: Episode 1 - Before You Even Start…
- Small Talk Episode 2 - Harvesting EVs
- Small Talk: Episode 3 - Getting Ready for Your Experiment
- Small Talk Episode 4 - Let's Explore
- Small Talk Episode 5 - The Power of Flow
- Small Talk Q&A
- SPRI Bead Technology Video
- A Streamlined Approach to Automating ELISA
- Cell volume is an important indicator of white blood cell health and therapeutic potential
- Translating Nature into Medicine Using Machine Learning, Metabolomics, and High-Throughput Pharmacology
- Unlocking FFPE Tissues using Illumina NGS Biomek Automated Sample Preparation
- VersaComp Antibody Capture Beads
- Viral Particle Production 101
- Viral Vectors Introduction and Overview
- Workflow Challenges Solved: The Palmer Lab
-
動画:シンポジウム
- Assessing Proliferation and Cytotxic Potential Using Multicolor Flow Cytometry
- AUC Symposium: Characterization of Gene Therapy Formulations by Analytical Ultracentrifugation
- AUC Symposium - Building Better Things with the Analytical Ultracentrifuge
- Lipid Nanoparticles: Paradigm-Shifting Nucleic Acid Therapeutics
- AUC Symposium Panel Discussion - June 2021
- Analytical Ultracentrifuge (AUC) Symposium Series: Multiwavelength Analysis of Proteins (Session 1)
- Analytical Ultracentrifuge (AUC) Symposium Series: Multiwavelength Analysis of Proteins (Session 2)
- Automation of sample preparation for an efficient protein quantification workflow for proteomics
- Covid Symposium Day1, Q&A, Panel Discussion
- Anis Larbi Physiological Aging and Immunological Erosion
- Andrea Cossarizza Recognizing the Immune Response to SARS-CoV-2
- Ryan Brinkman The COVID Cytometry Project
- Q & A Session from Day 2, Viral Particle Detection and Characterization
- Silvana Verdiani New ELISA Kit for Serological Testing for SARS COV-2 Infection
- Miranda Byrne-Steele A Needle in a Haystack Using Immune Repertoire and Single Cell VDJ Sequencing to Identify COVID-specific B-cell Responses
- Marc-Andre Langlois Learnings from Single Particle Analysis of Moloney MLV Insight into its Infectivity, Genome Packaging Efficiency, and Host Marker Acquisition
- Q & A Session from Day 3, Vaccine and Therapy Development
- Jean Boyer Development and Immune Assessment of a DNA Vaccine Against COVID-19
- Bernhard Ellinger Using drug repurposing to identify inhibitors of SARS-CoV-2 cellular toxicity in vitro
- Bruce Patterson Disruption of the CCL5RANTES-CCR5 Pathway 1 Restores Immune Homeostasis and Reduces Plasma Viral Load in Critical COVID-19
- DKMS Life Science Lab: ultra-high throughput HLA genotyping for stem cell donor recruitment
- Extracellular Vesicles for ‘Liquid Biopsy’ Development in Cancer by Dr. Karla Williams
- Introduction to Mesenchymal Stem Cell DURAClone Dry Reagents
- Miniaturization of metagenomic RNA-seq library prep demonstrates greatly improved productivity and efficiency when utilizing acoustic liquid handling
- Miniaturized Illumina Nextera XT Library Prep using an Integrated Biomek i5 and Echo 525 Liquid Handling Workstation
- Monitoring Signal Transduction Pathways in Human Disease
- Multi-Sizing your Multi-Color Panel
- SynBioBeta 2020 with Beckman Coulter Life Sciences
-
動画:お客様の声
- Allegra V-15R Testimonial by Dr. Martin J. Richer
- Analytical ultracentrifugation - hear it from our customers
- AQUIOS CL Flow Cytometer Advantages
- Mobile Lab with AQUIOS - Dr Lillian Hesselink
- Mobile Lab with AQUIOS - Dr Roy Spijkerman
- A moment analytical ultracentrifugation gave you an answer that made you really happy
- 東北大学加齢医学研究所でのリモートサポートサービスの活用事例
- Collaborative data analysis platform explained by our expert Herve Luche
- CytoFLEX Testimonial from Dr. Karen Hogg, University of York, United Kingdom
- Discovery in Motion: High-throughput Automation Solutions at Sintef
- Sintef: Why a CRO Chooses to Automate their Lab with Biomek Liquid Handlers
- Using Vertical Rotors and the new VTi 50.1 by Chris Nieder
- Dr. Karla Williams on Analyzing Extracellular Vesicles Using the CytoFLEX
- Reflections on 70 Years of Centrifugation Innovation
- Exosomes Workflow Testimonial with Dr. Vannberg
- Collaboration with the University of York and Dr. Karen Hogg
- Dr. Jurgen Riedl, Clinical Chemist, Albert Schweitzer Hospital Customer Testimonial
- Customer Testimonial: Flow Cytometry Service and Support with Dr. Karen Hogg
- Selecting High Performance Flow Cytometry Reagents with Dr. Karen Hogg
- High Quality Flow Cytometry Reagent Selection Criteria with Dr. Karen Hogg
- A new dimension in simplified AUC analysis - Dr. Borries Demeler
- AQUIOS CL Benefits with Casiana Fernandez-Bango
- AQUIOS CL Size Testimonial with Alexandra Amador
- AQUIOS CL Software Testimonial with Casiana Fernandez-Bango
- AQUIOS CL Training Testimonial with Alexandra Amador
- Automation and Genomics Implementation with University of Luxembourg
- CytoFLEX Cancer Biology Research Testimonial with Leonardo Salmena
- CytoFLEX Capabilities Testimonial with Sarah Schuett
- CytoFLEX Lab Perspective Testimonial with Sarah Schuett
- CytoFLEX S Accelerated Research Testimonial with Brian Phillip
- CytoFLEX S Contest Winner Testimonial with Brian Phillip
- CytoFLEX S Potential Testimonial with Brian Phillip
- CytoFLEX Upgrades Testimonial with Sarah Schuett
- CytoFLEX Value Testimonial with Sarah Schuett
- Kaluza Software Testimonial with Dr. Rob Woestenenk
- Kaluza Software Testimonial with Tim Hutten
- Utilizing the CytoFLEX Testimonial with Leonardo Salmena
-
動画:トレーニング
- CytoFlex operation in Chinese
- AQUIOS CL Flow Cytometer - Advanced Operation Training
- AQUIOS CL Flow Cytometer - Advanced Operation Training in French
- AQUIOS CL Advanced Operation in German
- AQUIOS CL Advanced Operation in Italian
- AQUIOS CL Advanced Operation in Portuguese
- AQUIOS CL Advanced Operation in Russian
- AQUIOS CL Advanced Operation in Spanish
- AQUIOS CL Flow Cytometer - Basic Operation Training
- AQUIOS CL Basic Operation in French
- AQUIOS CL Basic Operation in German
- AQUIOS CL Basic Operation in Italian
- AQUIOS CL Basic Operation in Portuguese
- AQUIOS CL Basic Operation in Russian
- AQUIOS CL Basic Operation in Spanish
-
動画:チュートリアル
- 5 Years of high-throughput strain engineering with the Echo: lessons from Zymergen Automation presented by Christopher Bremner, Automation Engineer, Zymergen @SLAS2020
- Characterization of CytoFLEX Gain Settings
- Cytobank Basics
- Cytobank CITRUS
- Cytobank Experiment Manager
- Cytobank FlowSOM
- Cytobank SPADE
- Cytobank viSNE
- Creating an Experiment using CytoFLEX
- Generating a Compensation Matrix using CytoFLEX
- CytoFLEX How to Set Up Violet Side Scatter
- How to Install Rotors on Allegra V-15R
- How to Program ECO Mode on Allegra V-15R
- How to Program Rapid Temp on Allegra V-15R
- How to Register Your Instrument with BeckmanConnect
- How to Set-Up and Run a Program on Allegra V-15R
- Intellifuge Calculator Introduction
- Kaluza Batch Analysis Tutorial with Dr. David Onion
- Kaluza Boolean Gates tutorial with Dr. David Onion
- Kaluza Cell Cycle Analysis Tutorial with Dr. David Onion
- Kaluza Composites Tutorial with Dr. David Onion
- Kaluza Cytobank Plugin
- Kaluza Linked Gates Tutorial with Dr. David Onion
- Kaluza Levey-Jennings Plots and Quality Control Analysis Tutorial with Dr. David Onion
- Kaluza Radar and Tree Plots Tutorial with Dr. David Onion
- Kaluza Tables and Export Tutorial with Dr. David Onion
- Off-the-shelf, Echo-based DNA Assembly Automation presented by George McArthur, Arzeda @SLAS2020
- Optima AUC 解析準備(2)分析セルの組み立て方法
- Optima AUC 解析準備(3)サンプルの投入方法
- Optima AUC 解析準備(1)部品の準備
- Seminar: Diverse Applications of Flow Cytometry to Answer Biological Questions
- Extended Features for Kaluza Software Tutorial
- Getting to Know Kaluza Acquisition Software Tutorial
- Seminar: High Dimensional Flow Cytometry on Small Instrument Platforms Tutorial
- Kaluza Analysis Overview Tutorial
- Kaluza for Gallios Compensation Worklist Tutorial
- Kaluza for Gallios Simulator with a Legacy Browser Tutorial
- Kaluza for Gallios Software Tutorial - Flow Cytometry
- Kaluza Analysis Software Tutorial - Loading Files and Creating Plots
- Kaluza Analysis Software: Creating Overlay Plots
- Setting up Statistics with Kaluza Software Tutorial
- How to Fill and Seal a Quick-Seal Tube
- How to Seal Quick-Seal Tubes using the Cordless Tube Topper
- How to Use Open-Top Tubes in Ultracentrifuges
- How to Fill and Plug a OptiSeal Tube
- Syringe Extraction of a Ultra-Clear, Quick-Seal Tube
-
WEBセミナー
- 21 CFR Part 11 for Particle QC Applications
- Addressing the Challenges of Purification & Quality Control in Gene Therapy
- Cell-Free Technology and Acoustic Liquid Handling Are Helping Tierra Disrupt Natural Product Discovery
- Characterizing Viruses: From Deadly Pathogens to the Workhorses of Gene Therapy
- Cytobank ウェビナー - Dr. Anna BelkinaによるCITRUSを用いた研究事例紹介 -
- Clinical Flow Cytometry User Group Meeting
- Kaluza Batch Analysis Tutorial with Dr. David Onion
- Webinar: Kaluza Software for Flow Cytometry Data Analysis
- Leveraging acoustic and tip-based liquid handling to increase SARS-CoV-2 sequencing throughput
- QbD1200+ Expert Roundtable
- Is Your Online TOC Analyzer Ready to Meet Pharmacopeia and Annex 1 Requirements?
- 17 Color Immunophenotyping using CytoFLEX LX and ViaKrome
- GMP Cleanroom Routine Environmental Monitoring & 21 CFR Part 11 Data Integrity
- ACFTD Discontinuance and the HIAC 8011+ and HIAC PODS+
- Achieving Cell-Free Gene Expression with An Acoustic Liquid Handler
- Seminar: Advanced Sensitivity and Resolution in Flow Cytometry through Innovation
- Advances in Sedimentation Analysis by Dr. Borries Demeler
- Agencourt AMPure XP
- Automated Alternative to the Hanging Drop Method of Stem Cell Differentiation
- An End-to-End Automated Workflow for High-Throughput SARS-Cov-2 Sequencing and Surveillance
- AUCを用いた生体高分子の特性評価の概要(英語)
- Analysis of Cell Biochemical Processes from First Principles to Cytometry
- Analysis of Particle Size Distributions by Analytical Ultracentrifugation
- Analytical Ultracentrifugation For Structural Analysis - Proteins and Macromolecular Complexes
- Analytical Ultracentrifugation in the Biopharmaceutical Industry
- Analytical Ultracentrifugation in Nanoparticle Analysis
- Analytical Methods to Measure Empty and Full AAV Particles
- Analytical Ultracentrifugation of Carbon Nanotubes
- Applications of Counterflow Centrifugal Elutriation CCE
- Automated 3D Cell Culture and Screening by Imaging and Flow Cytometry
- Automated Assays For Protein Engineering, In Vitro And In Vivo, By Dr. Daniela Quaglia
- Automated High-Throughput and High-Content Analysis by Flow Cytometry
- Using Data to Drive Automated Screening and Effective Reporting
- Automating Continuous Cell Culture by Dr. Oliver Gassmann
- Taking the Tricky Out of Automating NGS Sample Prep
- Automation of PCR Setup and AMPure XP Purification using the Biomek 4000 Workstation
- Automation-Enabled LC/MS Analysis of Biologics
- Avoid Pitfalls When Automating Cell Viability Counting for Biopharmaceutical Quality Control
- Avoiding the Perils of Hidden Requirements
- Basic Research Signaling Applications
- B-cell Lymphoproliferative Disorders Diagnostics by Flow Cytometry
- The Use of the Analytical Ultracentrifuge to Characterize Very Large Complex Biopharmaceuticals
- Cell Counting & Viability: Faster Results Through Automation
- Cell Cycle Analysis by Quantitative Imaging Cytometry
- Cellular Analysis Using the Coulter Principle
- Centrifugal Elutriation - Utility in the Flow Cytometry Laboratory
- Centrifugation Safety 1
- Centrifugation Safety 2
- Centrifugation Safety 3
- Changes to USP <1788>: Determination of Subvisible Particle Matter from the HIAC and Coulter Counters
- Changes to USP <643> Total Organic Carbon for Pharmaceutical Grade Waters
- Characterization of CRISPR Technologies Using Cell-Free Transcription and Translation and an Acoustic Liquid Handler
- Characterization of CRISPR Technologies Using Cell-Free Transcription and Translation and an Acoustic Liquid Handler
- Characterization of Extracellular Vesicles with Nanoscale Flow Cytometry
- Characterization of LNPs via Density Matching AUC
- Characterizing Viral Vector Fullness in Density Gradient Separations
- Cleanroom Routine Environmental Monitoring & Classification
- Contamination Control in the Hydraulic Industry
- Cytobank Bootcamp Session #6 Single Cell Data
- Cytobank Bootcamp Session #4 FlowSOM
- Cytobank Bootcamp Session #1 Introduction to Cytobank
- Cytobank Bootcamp Session #3 viSNE
- Cytobank Bootcamp Session #2 Data Management
- Cytobank Bootcamp Session #5 Biomarker discovery with CITRUS
- マシンラーニングによる細胞集団の同定
- Cytometry data sharing platform for collaborative multi-centric data analysis
- Data Insights for Automated Liquid Handling
- Dendritic Cells Sorting
- Detection of Microparticles with Flow Cytometry
- Development and Production of Viral Vectors: Advances in Processes and Translation for Human Gene Therapy
- Diamond-Based Nanomedicine for Enhanced Cancer Treatment and Imaging
- Direct EV Measurement in Complex Biofluids Using Single Vesicle Flow Cytometry (vFC) and the CytoFLEX
- Recent Advances in Immunotherapy: Directing Cells to Address Disease
- Diversity of Cancer-Derived Extracellular Vesicles
- Diversity of Extracellular Vesicles and Their Cargo in Cell-To-Cell Communication
- DNA Cytometry with Kaluza
- Webinar: Flow Cytometry for Drug Allergy Diagnostics
- Emitting Dye for Violet Laser Excitation with Krome Orange
- Evolution in the Manufacturing of Cellular Therapies
- Exosome Biogenesis and the Budding of Proteins and Viruses
- High-Performance Exosome Purification and Characterization via automated Density Gradient
- Exploring Exosomes and the Tumor Microenvironment
- Exploring the Stoichiometry of Macromolecular Complexes Using Multi-Signal Sedimentation Velocity Analytical Ultracentrifugation
- Extracellular Vesicle Isolation by Flow Cytometric Sorting and Characterization by Analytical Ultra-Centrifugation and Dynamic Light Scatter
- Extracellular Vesicles Delivery and RNA Translation
- Fast Cost-Effective High Throughput Solutions for DNA Assembly
- Advanced Flow Cytometric Analysis of Human T-Cell Memory Subsets
- Flow Cytometry Data Analysis in a Flash
- Flow Cytometry in Clinical Immunology-Actual Approach to Immune Status Evaluation
- Fully Automated RNA Library Preparation for Sequencing Respiratory Viruses
- Gallios Flow Cytometer Forward Angle Light Scatter Innovation
- Goldilocks & the Three Cells: The Art of Monitoring & Managing Cell Cultures
- Hematopoietic Bone Marrow Cell Sorting without Compromise
- How Stem Cells Speak with Immune Cells
- ICH Q2 Validation of Analytical Procedures for Pharmaceutical TOC Analyzers
- Identifying and Isolating Stem Cells Through High-Speed Cell Sorting
- Is Immunotherapy Living up to its Promise?
- New Automation Strategies For Improving Sample Prep - The Analytical Laboratory
- Initial Evaluation of the ClearLLab 10C System in the Immunophenotyping of Leukemia and Non Hodgkin Lymphoma
- Isolation and Characterization of Exosomes and Ectosomes
- Isolation of Extracellular Vesicles: Latest Advances and Challenges
- Large Scale Purification of RNA and RNA-based Nanoparticles by Preparative Ultracentrifugation
- Laser Cytometry in Biomedical Analysis
- Webinar: Leukocytes Immunophenotyping in COVID-19 Patients
- Leveraging the Value of Automated High-Content Screening
- Optima AUCの概要:AUCを用いた生体高分子の分析の運用(英語)
- Cleanrooms: Controlling Contamination, Setting Alerts & Actions, Considerations of Removal Efficiency
- GMP Cleanroom Routine Environmental Monitoring & 21 CFR Part 11 Data Integrity
- Particle Monitoring Systems for Isolator / RABS Filling Lines and 503B Compounding Facilities
- Measuring Molecular Interactions by Multi-Wavelength AUC
- Microvesicle Detection and Cell Sorting
- On the Importance of Monitoring Both Transfection and Transduction Efficiencies in Cell Therapy Development
- Monitoring Signal Transduction Pathways in Human Disease
- Multicolor Flow Cytometry Webinar
- Multi-Color Solution for Flow Cytometry
- Combined Use of Multiple Particle Characterization Technologies to Evaluate Targeted Liposomal Formulations
- Multi-Sizing your Multi-Color for Panel Design
- Nano-Emulsion Formulation and Characterization Life Science and Industrial Markets
- Webinar: NanoGBS—A Miniaturized Procedure for Genotyping by Sequencing Library Preparation
- Next Generation Polymer Dyes: Enhance your multicolor flow cytometry panels
- Optimizing Quality Control Electronic Records for 21 CFR Part 11 Compliance
- Advanced Process Quality Control and Outlier Detection with Discrete Particle Analysis
- 遺伝子治療ベクターの精製工程を最適化するための密度勾配超遠心法(英語)
- Particle Counters Must Now be Calibrated With ISO 21501-4
- Particle Size Analysis with Laser Diffraction and Result Interpretation
- Particle Size and Associated Sedimentary Processes on Wetland Gain and Loss in the Mississippi River Delta
- Particle Size Characterization by Laser Diffraction Analysis in Geoscience and Soil Science
- Particle Size Distribution for Cement using Laser Diffraction
- Total Organic Carbon Analysis in the new ASTM E3106 Cleaning Standard
- Physical and Chemical Characterization of Nanoparticle Constructs Using the Analytical Ultracentrifuge
- Plant Cell Cytometry Analysis
- Webinar: Practical aspects of laser diffraction results interpretation
- Predictive power of CITRUS
- Proteome Profiling of the Tumor Microenvironment: Role of Human Primary Fibroblasts Derived Exosomes in Oral Cancer Progression
- Quantifying Protein Aggregates by Sedimentation Velocity
- Quantitative Determination of Reaction Stoichiometry, Interaction Energies, and Solute Masses Using Analytical Ultracentrifugation
- Rare Event Analysis by Flow Cytometry
- Rethinking Data Analysis for Flow Cytometry with Kaluza 1.1 Software
- The Revised ISO 14644-1 Changes Classification and Monitoring Methods
- Sample Prep for MS
- Changes in T- and B-lymphocytes after COVID-19 and SARS-CoV-2 specific immunity
- Scaling-Up Exosomes and Other Extracellular Vesicles
- Contemporary Cell Staining and Imaging Tools for Screening Stem Cell-Derived Cardiomyocytes
- Introduction to the New USP <787>: Subvisible Particulate Matter in Therapeutic Protein Injections
- Take the Risk out of Rotations Understanding and Implementing BioSafety Solutions in Centrifugation
- Testing Vaccines Final Form Dose to USP<787> Subvisible Particulate Matter
- The Art of Sorting for Advancing Cytometry
- The Complexities of SV Analytical Ultracentrifugation: AAVs are not Simple, Binary Systems
- The Future of Liquid Handling Automation has Arrived
- The Power of Automated Assay Optimization
- The Role of Exosomes in Inflammatory Disease - Pathogenesis and Treatment
- The Science of Flow Cytometry Part 1
- The Science of Flow Cytometry Part 2
- Three Distinct Analytical Ultracentrifugation Methods for Virus and Viral Vector Characterizations
- Transferring Cell Counting Methods: Best Practices
- Cross-talk and Developmental Programs - A Key to Translational Stem Cell Biology
- Understanding the How and the Why: Biosafety in Centrifugation
- Understanding the Role and Benefits of Centrifugation in Cell Harvest and Separation
- qPCR Webinar: Scalable Workflows for Viral RNA Extraction and Reaction Setup
-
動画:製品紹介
-
製品アプリケーション
- Use of Cells in Therapeutics Product Development
- Lead Optimization
- GMPに準拠した品質管理
- Echo Liquid Handling for ADME-Tox
-
生物学的製剤のアプリケーション
- High-Throughput Screen (HTS)
- Liquid Handling for Gene Expression
- Liquid Handling for Genotyping
- Helping the Immune System Beat Cancer: Biologics in Immuno-oncology Research
- Liquid Handling for Microbial Research
- A Natural Answer: Biologics 101
- Natural Factories: Biologics Production 101
- Package Delivery: Biologics as Vectors
- Acoustic Liquid Handling for Protein Crystallography
- PCR, qPCR, and RT-qPCR
- Restoring Balance: Biologics in Immune-Disorder Research
- COVID-19に関する研究
- アコースティックリキッドハンドラーEchoを用いたマイクロサンプリングによる薬物動態(PK)および薬理学(PD)試験
- Multi-omics
- Process Development Manufacturing: Biotherapeutics
- Transcriptomics
-
実験テクニックと手法
- Cell Counting Methods and Technologies
- Cell Harvesting in Cell Culture: Methods, Technologies, and Process Optimization
-
サイトメトリードットコム
- アプリケーションノート一覧
- フローサイトメーターによる悪性リンパ腫の解析 -A to Z-
- Beginner
- Bioessay
- Campaign
- Efficient Operation of Flow Cytometer
- 臨床検査での導入事例(ユーザーインタビュー)
- 様々な研究分野での導入事例(ユーザーインタビュー)
- SDSのダウンロード方法
- Spectoral Flow Cytometry
- Streamline Clinical Workflow
- サイトメトリー&セルアナリシスカタログ
- CDチャート CD抗体分類
- フローサイトメトリー誕生物語
- フローサイトメトリー技術情報
- サイトメトリー情報
- デジタルフローサイトメーター新技術 弱点の克服
- フローサイトメトリー(FCM)の歴史
- 検査室のためのFCM検査の基礎
- 初めてFCMを使う方のために
- フローサイトメトリー用語辞典
- サイトメトリー(FCM)の原理入門講座
- 発作性夜間血色素尿症(PNH)型血球の高感度測定法
- Practical Flow Cytometry ダウンロードサービス(無料)
- FCMのための精度管理入門
- サイトメトリー関連試薬・抗体・サポート製品
- 細胞表面マーカーのサンプル調製と染色方法
- フローサイトメトリー用蛍光色素
- サポート&サービス
- 白血病タイピング検査概論
- サイトメトリーとは
- 細胞の維持
- 免疫モニタリング
- Interaction Quantification & Characterization Using Analytical Ultracentrifugation
- ハイスループットスクリーニング
- Viral Particle Purification Using Centrifugation Methods
- 質量分析法
-
spINSIGHTS
- Issue 1
- 細胞外小胞の精製に超遠心分離法を選択すべき理由
- When should I choose centrifugation instead of affinity chromatography for purifying viral vectors?
- 脂質ナノ粒子の不均一性についてより深く理解するには?
- 超遠心分析法(AUC)を用いた細胞外小胞の特性評価
- How can I minimize potential sample waste when using the OptiMATE Gradient Maker to dispense gradients?
- What advantages does the Optima AUC provide to improve my data quality and workflow efficiency?
- How can I transfer an existing centrifugation protocol to a new rotor, bottle, or tube?
- AAVベクターの特性評価に超遠心分析法(AUC)を使う理由
- 超遠心法で再現性よくサンプルを精製するための密度勾配法
- AUC実験での石英ウィンドウとサファイアウィンドウの使い分け
- 分析用超遠心機Optima AUCのご紹介
- 多波長AUC特性解析と治療用リポソームの品質管理
- AUCデータを活用した細胞培養法の最適化
- イムノフェノタイピング(Immunophenotyping)
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研究分野
- 3次元細胞培養
- Extracellular Vesicles
-
HIV Advanced Disease Management
- 12 Steps to CD4 Testing
- Advanced Disease Management
- World Health Organization Guidelines Reinforce Role of CD4 Cell Counting in Immunocompromised Patients
- CD4 Testing in Remote Areas
- Innovation In CD4 Testing
- The Impact of Laboratory Proficiency Testing And External Quality Assurance Schemes In Resource Limited Settings
- What is CD4 & Why is it Important?
- An Overview of the Current Status for the Global HIV/AIDS Pandemic
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ナノ粒子
- Certified Beads
- ナノ粒子研究 関連製品
- ナノサイズの検出が可能なフローサイトメトリーによる細胞外小胞の特性評価
- Measuring Single EVs and their Cargo: Sensitive and Specific Vesicle Flow Cytometry (vFCTM)
- ナノ粒子の研究において考慮すべき点
- Western Blot and Other Methods vs. Nanoscale Flow Cytometry
- ナノ粒子・マイクロ粒子
- CytoFLEX初心者の体験談
- Williams博士のラボにおける発見
- Trends in Extracellular Vesicle Research
- Free Extracellular Vesicles Poster For Your Lab
- ナノ粒子研究ついてのFAQ
- Small Talk
- フロー初心者Karanの体験談
- Astrios and the Nanoscale
- ナノ粒子のソーティング
- ナノ粒子の研究におけるガイドラインの重要性
- フローサイトメーターCytoFLEXでの細胞外小胞の分析
- Machine Learning Assisted Analysis for Cytometry Data