- Cellartis Cardiomyocytes (from ChiPSC22) Kit
- Cellartis Cardiomyocytes (from ChiPSC22)
- Cellartis CM Thawing Base
- Cellartis CM Culture Base
- Fetal Bovine Serum (FBS) (Thermo Fisher Scientific, Cat. # 16140063)
- Fibronectin (Sigma-Aldrich, Cat. No. F0895)
- Maestro MEA 48-well plate (Axion BioSystems, M768-KAP-48)
- PBS Dulbecco’s with Ca2+ & Mg2+ (D-PBS +/+)
- The Maestro MEA System (Axion BioSystems)
- General cell culture equipment used in a cell culture laboratory
- Technical notes
- Getting started with hepatocyte differentiation
- Cardiomyocytes in FLIPR 384-well plate format
- Cardiomyocytes on the Patchliner system
- Cardiomyocytes on the Maestro MEA system
- Cardiomyocytes on the MED64 MEA system
- Cardiomyocytes on the CardioExcyte 96 system
- Cardiomyocytes on the xCELLigence RTCA CardioECR system
- Reprogramming fibroblasts
- Reprogramming PBMCs
- Spin embryoid body formation
- Transferring iPSCs from other media to DEF-CS
- Transferring iPSCs on MEFs to DEF-CS
- Selection guides
Cellartis cardiomyocytes on the Maestro MEA system
Cellartis cardiomyocytes are derived from human induced pluripotent stem cells and provide a promising, physiologically relevant, human model for preclinical testing and drug screening. Axion BioSystems' Maestro multi-electrode array (MEA) platform allows for noninvasive detection of extracellular field potential (EFP) recordings in a high-throughput format. Cellartis cardiomyocytes used in combination with Axion BioSystems' MEA technology demonstrates the potential to accurately predict cardiotoxic responses and to screen compound efficacy.
User-generated protocols are based on internal proof-of-concept experiments, customer collaborations, and published literature. In some cases, relevant results are discussed in our research news BioView blog articles. While we expect these protocols to be successful in your hands, they may not be fully reviewed or optimized. We encourage you to contact us or refer to the published literature for more information about these user-generated and -reported protocols.
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A highly homogeneous population of cardiomyocytes derived from human induced pluripotent stem cells.
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