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- 详细信息
- 询价记录
- 文献和实验
- 技术资料
- 英文名:
Human Coronary Artery Smooth Muscle Cells
- 细胞类型:
人正常原代细胞
- 物种来源:
人源
- 器官来源:
人源
- 运输方式:
干冰或液氮
- 年限:
液氮储存10年以上
- 生长状态:
冻存
- 规格:
500,000 cells/vial
相关产品: 培养试剂 平滑肌细胞培养基
Lifeline® normal Human Coronary Artery Smooth Muscle Cells (HCASMC), when grown in VascuLife® SMC Medium, provide an ideal low serum (5%) culture model for the study of angiogenesis, atherosclerosis, diabetes or vascular/pulmonary biology.
Lifeline® Coronary Artery Smooth Muscle Cells have been isolated from human coronary arteries, plated and expanded in culture vessels twice before being harvested for cryopreservation to ensure the highest purity, viability and plating efficiency.
Our Human Smooth Muscle Cells are quality tested in VascuLife® SMC Medium and demonstrate optimal low serum growth over a period of at least 15 population doublings at rates equal to or greater than other serum-supplemented media.
Lifeline® coronary artery smooth muscle cells are not exposed to antimicrobials or phenol red when cultured in VascuLife® SMC Medium, an advantage since these supplements can cause cell stress and “masking effects” that may negatively impact experimental results. Lifeline® offers these traditional supplements; however, they are not needed, or recommended, to achieve optimal cell performance in most research applications.
- Coronary artery smooth muscle cells can be grown without phenol red or antimicrobials when cultured in VascuLife® SMC Medium.
500,000 cells per vial

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文献和实验Culture of Human Smooth Muscle Cells
The wall of a human artery consists of three distinct tunics. The tunica intima is lined by a layer of endothelial cells facing the lumen. Smooth muscle cells (SMCs) are the predominant cell type in the tunica media of arteries
The proto-oncogene c-myb is a cellular homolog of a viral oncogene v-myb found in two independently derived avian acute leukemia viruses: avian myeloblastosis vn-us (AMV) and E26 leukemia virus (1 ). The myb gene is highly conserved
Adhesion of T-Cells to Airway Smooth Muscle Cells
on leukocytes and endothelial cells, and the interactions between these cell types, have been extensively characterized. The current model of leukocyte recruitment and homing involves the expression and activation of a cascade of CAMs, as well as the local










