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AC16 Human Cardiomyocyte Cell Line

AC16 Human Cardiomyocytes can be serially passaged and can differentiate when cultured in mitogen-free medium. The cells may be used to study developmental regulation of cardiomyocytes.

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Synonym(s):
AC16 Ventricular Cardiomyocyte Cell Line
eCl@ss:
32011203

biological source

human

Quality Level

technique(s)

cell culture | mammalian: suitable

shipped in

dry ice

Related Categories

General description

AC16 Human Cardiomyocyte Cell Line is a proliferating cell line that was derived from the fusion of primary cells from adult human ventricular heart tissues with SV40 transformed, uridine auxotroph human fibroblasts, devoid of mitochondrial DNA . After selection in uridine-free medium to remove unfused fibroblasts, the resulting fused cells were further subcloned and subsequently screened for the presence of SV40 large T-ag, β-myosin heavy chain (βMHC) and connexin-43 (CX-43) .

AC16 cells are proliferating and differentiation of the cells may be controlled by altering culture conditions and by silencing the expression of SV40 T-Ag . The cells can be used to study cardiac gene expression and function, during normal development and in pathological conditions at the cellular, organellar and molecular levels.

Cell Line Description

Cardiomyocyte Cells

Application

Research Category
Cardiac

Cardiovascular Disease

Toxicity
This product is available for sale to academic institutions or not-for-profit entities for research use. For information on commercial licensing please contact licensing@emdmillipore.com.

Quality

• Each vial contains ≥ 1X106 viable cells.
• Cells are tested negative for HPV-16, HPV-18, Hepatitis A, B, C, and HIV-1 & 2 viruses by PCR.
• Cells are negative for mycoplasma contamination.
• Each lot of cells is genotyped by STR analysis to verify the unique identity of the cell line.

Storage and Stability

AC16 Human Cardiomyocyte Cell Line should be stored in liquid nitrogen. The cells can be cultured for at least 10 passages after initial thawing without significantly affecting the cell marker expression and functionality.

Disclaimer

RESEARCH USE ONLY. This product is regulated in France when intended to be used for scientific purposes, including for import and export activities (Article L 1211-1 paragraph 2 of the Public Health Code). The purchaser (i.e. enduser) is required to obtain an import authorization from the France Ministry of Research referred in the Article L1245-5-1 II. of Public Health Code. By ordering this product, you are confirming that you have obtained the proper import authorization.

Storage Class Code

10 - Combustible liquids

WGK

WGK 1

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable

Regulatory Information

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Xiangyang Wu et al.
Experimental and therapeutic medicine, 18(4), 3172-3176 (2019-10-02)
MicroRNA-663 (miRNA-663) regulates the expression of transforming growth factor β1 (TGF-β1), which participates in the pathogenesis of myocardial fibrosis. Therefore, microRNA-663 may also serve a role in myocardial fibrosis. The present study aimed to determine whether miRNA-663 participates in myocardial
Xinyong Cai et al.
Molecular medicine reports, 22(6), 4579-4588 (2020-11-12)
FGD5 antisense RNA 1 (FGD5‑AS1) is a long non‑coding RNA in acute myocardial infarction (AMI), which is primarily caused by myocardial ischemia‑hypoxia. Retinoid acid receptor‑related orphan receptor α (RORA) is a key protector in maintaining heart function. However, the roles of FGD5‑AS1 and RORA
Matthew Alonzo et al.
Progress in biomaterials, 9(3), 125-137 (2020-09-27)
Hydrogels are a class of biomaterials used for a wide range of biomedical applications, including as a three-dimensional (3D) scaffold for cell culture that mimics the extracellular matrix (ECM) of native tissues. To understand the role of the ECM in
Zhe Li et al.
Molecular and cellular biochemistry, 476(9), 3241-3252 (2021-04-22)
Heart inflammation is one of the major causes of heart damage that leads to dilated cardiomyopathy and often progresses to end-stage heart failure. In the present study, we aimed to assess whether human cardiac cells could release immune mediators upon
Naveen Nagiah et al.
ACS omega, 7(16), 13894-13905 (2022-05-14)
In this study, three types of electrospun scaffolds, including furfuryl-gelatin (f-gelatin) alone, f-gelatin with polycaprolactone (PCL) in a 1:1 ratio, and coaxial scaffolds with PCL (core) and f-gelatin (sheath), were developed for tissue engineering applications. Scaffolds were developed through single

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