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Home ->Human -> Umbilical Cord Cell System->8020


Human Umbilical Vein Smooth Muscle Cells
(HUVSMC)
Catalog Number: 8020
Pricing       Order       Reference       Product Sheet       Certificate of Analysis

Cell Specification
Vascular smooth muscle cell is the cellular substrate of most significant arterial diseases[1]. The increased growth potential of vascular smooth muscle cells represents one of the crucial anomalies responsible for the development of essential vascular diseases. New studies demonstrate vascular smooth muscle cells expression ICAM-1 and VCAM-1 which may contribute to the inflammatory reaction in the vascular wall and may actively be involved in the progression and stability of vascular diseases [2]. In vitro culture of human VSMC as a model of vascular research has played a critical role and continue to provide information in the pharmacology and therapy of vascular diseases.

HUVSMC from ScienCell Research Laboratories are isolated from human umbilical vein. HUVSMC are cryopreserved at the end of secondary culture and delivered frozen. Each vial contains >5 x 105 cells in 1 ml volume. HUVSMC are characterized by immunofluorescent method with antibodies to alpha-smooth muscle actin and desmin. HUVSMC are negative for HIV-1, HBV, HCV, mycoplasma, bacteria, yeast and fungi. HUVSMC are guaranteed to further expand for 15 population doublings in the conditions specified by ScienCell Research Laboratories.

Recommended Medium
It is recommended to use Smooth Muscle Cell Medium (SMCM, Cat. No. 1101) for the culturing of HUVSMC in vitro.

Product Use
HUVSMC are for research use only. They are not approved for human or animal use, or for application in in vitro diagnostic procedures.

Storage
Transfer cells directly and immediately from dry ice to liquid nitrogen upon receiving and keep the cells in liquid nitrogen until cell culture needed for experiments.

Shipping
Dry ice.

Reference
[1] Schwartz, S. M., Campbell, G. R., Campbell, J. H. (1986) Replication of smooth muscle cells in vascular disease. Circ. Res. 58:427-444.
[2] Braun, M., Pietsch, P., Schror, K., Baumann, G., Felix, S. B. (1999) Cellular adhesion molecules on vascular smooth muscle cells. Cardiovasc. Res. 41:395-401.


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