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Analysis of Myosin Heavy Chain in human embryonic stem cell (hESC)-derived cardiomyocytes. hESC-
derived cardiomyocytes (Evans laboratory, UC San Diego) were disassociated and fixed in BD Cytofix™ Fixation Buffer (Cat. No. 554655), permeabilized with BD Phosflow™ Perm/Wash Buffer I (Cat. No. 557885), and stained with PE Mouse Anti-Myosin Heavy Chain (MHC) and Alexa Fluor® 647 Mouse Anti-Cardiac Troponin I (cTnI) (Cat. No. 554409). The cells were first gated on light scatter properties and then analyzed for MHC and cTnI expression. Flow cytometry was performed on a BD LSRFortessa™ flow cytometry system.
Analysis of Myosin Heavy Chain in differentiated C2C12 mouse myoblast cell line. C2C12 cells (ATCC: CRL-1772) that were differentiated for 3 days and then disassociated and fixed in BD Cytofix™ Fixation Buffer (Cat. No. 554655), permeabilized with BD Phosflow™ Perm/Wash buffer I (Cat. No. 557885), and stained with PE Mouse Anti-Myosin Heavy Chain (MHC). The cells were first gated on light scatter properties and then analyzed for MHC expression. Flow cytometry was performed on a BD LSRFortessa™ flow cytometry system.
Analysis of Myosin Heavy Chain in human embryonic stem cell (hESC)-derived cardiomyocytes. hESC-
derived cardiomyocytes (Evans laboratory, UC San Diego) were disassociated and fixed in BD Cytofix™ Fixation Buffer (Cat. No. 554655), permeabilized with BD Phosflow™ Perm/Wash Buffer I (Cat. No. 557885), and stained with PE Mouse Anti-Myosin Heavy Chain (MHC) and Alexa Fluor® 647 Mouse Anti-Cardiac Troponin I (cTnI) (Cat. No. 554409). The cells were first gated on light scatter properties and then analyzed for MHC and cTnI expression. Flow cytometry was performed on a BD LSRFortessa™ flow cytometry system.
Analysis of Myosin Heavy Chain in differentiated C2C12 mouse myoblast cell line. C2C12 cells (ATCC: CRL-1772) that were differentiated for 3 days and then disassociated and fixed in BD Cytofix™ Fixation Buffer (Cat. No. 554655), permeabilized with BD Phosflow™ Perm/Wash buffer I (Cat. No. 557885), and stained with PE Mouse Anti-Myosin Heavy Chain (MHC). The cells were first gated on light scatter properties and then analyzed for MHC expression. Flow cytometry was performed on a BD LSRFortessa™ flow cytometry system.
Analysis of Myosin Heavy Chain in human embryonic stem cell (hESC)-derived cardiomyocytes. hESC-
derived cardiomyocytes (Evans laboratory, UC San Diego) were disassociated and fixed in BD Cytofix™ Fixation Buffer (Cat. No. 554655), permeabilized with BD Phosflow™ Perm/Wash Buffer I (Cat. No. 557885), and stained with PE Mouse Anti-Myosin Heavy Chain (MHC) and Alexa Fluor® 647 Mouse Anti-Cardiac Troponin I (cTnI) (Cat. No. 554409). The cells were first gated on light scatter properties and then analyzed for MHC and cTnI expression. Flow cytometry was performed on a BD LSRFortessa™ flow cytometry system.
Analysis of Myosin Heavy Chain in differentiated C2C12 mouse myoblast cell line. C2C12 cells (ATCC: CRL-1772) that were differentiated for 3 days and then disassociated and fixed in BD Cytofix™ Fixation Buffer (Cat. No. 554655), permeabilized with BD Phosflow™ Perm/Wash buffer I (Cat. No. 557885), and stained with PE Mouse Anti-Myosin Heavy Chain (MHC). The cells were first gated on light scatter properties and then analyzed for MHC expression. Flow cytometry was performed on a BD LSRFortessa™ flow cytometry system.
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The MF20 monoclonal antibody specifically binds to the heavy chain component of skeletal muscle myosin or myosin II. Skeletal muscle myosin is composed of 2 heavy chains and 4 light chains. Myosin Heavy chain is a 220-kDa protein that interacts with actin in the ATP-dependent mechanism of muscle contraction. This antibody is reported to cross react with human, mouse, rat, chicken, dog, frog, and zebrafish.
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Comparisons, where applicable, are made against older BD Technology, manual methods or are general performance claims. Comparisons are not made against non-BD technologies, unless otherwise noted.
For Research Use Only. Not for use in diagnostic or therapeutic procedures.