Immortalized human uterine smooth muscle cellsDepartment Introduction:
Although primary human uterine smooth muscle cells can more accurately reflectUterine smooth muscle cellsThe physiological state in the human body, but on the one hand, human uterine tissue is very precious, and primary isolation and cultivation of human uterine smooth muscle cells have a long cycle and require high technical experience. On the other hand, these primary cells cannot be passaged multiple times in vitro, which restricts the widespread application of primary human uterine smooth muscle cells in the laboratory. The research team of Xinrun Biology has years of experience in primary cell isolation, culture, and cell immortalization services, and has successfully established immortalized human uterine smooth muscle cells.
The uterus is a part of the female reproductive organ of animals and is the place where animal fetuses or juveniles develop and grow. The uterine muscle layer is relatively thick, composed of bundles or patches of smooth muscle, separated by connective tissue between muscle bundles. The smooth muscle of the uterus has a contraction function, which is regulated by hormones. Its contraction activity helps to transport sperm to the fallopian tubes, discharge menstrual blood, and deliver the fetus. The division and proliferation of uterine smooth muscle cells are also influenced by gonadotropins.Human uterine smooth muscle cell lineOriginating from the original generationSmooth muscle cells of human uterus.
Our company produces immortalized human uterine smooth muscle cells using enzymatic hydrolysis and gene transfectionPrepared, with a total cell count of approximately 1 × 106/The T25 square bottle has a cell purity of over 90% and does not contain HIV-1, HBV, HCV, mycoplasma, bacteria, yeast, fungi, etc.
Culture medium information:
We recommend using the product developed by Xinrun BiotechnologyImmortalized human uterine smooth muscle cell culture medium(Product Code: IH1009-5) is used as a culture medium for in vitro cultivation of immortalized human uterine smooth muscle cells.