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组织培养中源自成熟肌肉的间充质细胞的软骨组织分化。

Cartilage tissue differentiation from mesenchymal cells derived from mature muscle in tissue culture.

作者信息

Urist M R, Terashima Y, Nakagawa M, Stamos C

出版信息

In Vitro. 1978 Aug;14(8):697-706. doi: 10.1007/BF02616166.

Abstract

Under the influence of biochemical components of bone matrix gelatin (BMG), cartilage differentiates in tissue culture from the connective tissue cell outgrowths of mature muscle. Proliferation and differentiation begin within 24 hr with synthesis of hyaluronate, continue with high levels of synthesis of DNA and hyaluronidase, and culminate in production of large quantities of chondroitin sulfate. The addition of hyaluronic acid to the culture medium during the first 48 hr of culture depresses, whereas chondroitin sulfate enhances, subsequent production of cartilage. These observations on the cell biosynthetic products prior to the appearance of mature cartilage suggest that the BMG--modified connective tissue outgrowths of mature muscle exhibit the developmental potential of embryonic axial mesenchyme. Whether muscle harbors embryonic cells in a programmed but not yet activated readiness (protodifferentiated state) to differentiate into cartilage, or simply contributes a population of temporarily dedifferentiated fibroblasts, is not known, but in any event, BMG switches the pathway of further development from fibrous connective tissue to cartilage.

摘要

在骨基质明胶(BMG)生化成分的影响下,软骨在组织培养中从成熟肌肉的结缔组织细胞生长物中分化出来。增殖和分化在24小时内开始,伴随着透明质酸盐的合成,随后DNA和透明质酸酶的合成水平升高,并最终大量产生硫酸软骨素。在培养的最初48小时内向培养基中添加透明质酸会抑制软骨的后续产生,而硫酸软骨素则会增强软骨的产生。这些在成熟软骨出现之前对细胞生物合成产物的观察表明,BMG修饰的成熟肌肉结缔组织生长物展现出胚胎轴中胚层的发育潜能。肌肉中是否含有处于程序化但尚未激活的准备状态(原分化状态)以分化为软骨的胚胎细胞,或者仅仅贡献了一群暂时去分化的成纤维细胞,目前尚不清楚,但无论如何,BMG将进一步发育的途径从纤维结缔组织转变为软骨。

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