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在无血清且添加激素的培养基中培养来自啮齿动物的前脂肪细胞系和细胞株。

Growth of preadipocyte cell lines and cell strains from rodents in serum-free hormone-supplemented medium.

作者信息

Gaillard D, Négrel R, Serrero-Davé G, Cermolacce C, Ailhaud G

出版信息

In Vitro. 1984 Feb;20(2):79-88. doi: 10.1007/BF02626647.

Abstract

Ob17 is a clonal cell line isolated from the epididymal fat pad of C57 BL/6J ob/ob mouse that differentiates into adiposelike cells in serum-supplemented medium. In serum-free medium, this cell line shows increased growth under the addition of insulin, transferrin, fibroblast growth factor (FGF), and a factor present in extract of rat submaxillary gland (SMGE). This medium is referred to as 4F. Epidermal growth factor or nerve growth factor cannot replace SMGE, whereas partially purified platelet extract can substitute for FGF but only partially for SMGE. 4F Medium is able to support the proliferation of cells from other established preadipocyte clonal lines, HGFu and 3T3-F442A, and also of preadipocyte cells isolated from the stromal-vascular fraction of rat and mouse adipose tissues. In each case 4F medium is insufficient to support the differentiation of these cells into adipocytes. Ob17 cells grown and maintained in serum-free hormone-supplemented medium retain the ability to convert to adiposelike cells after serum addition. This serum requirement for differentiation cannot be substituted by the addition of growth hormone or of other putative adipogenic factors, or both. The results are discussed with respect to the requirements for growth and differentiation of the 3T3-L1 and 1246 preadipocyte cell lines previously described.

摘要

Ob17是从C57 BL/6J ob/ob小鼠附睾脂肪垫分离出的克隆细胞系,在添加血清的培养基中可分化为脂肪样细胞。在无血清培养基中,添加胰岛素、转铁蛋白、成纤维细胞生长因子(FGF)和大鼠颌下腺提取物(SMGE)中的一种因子后,该细胞系生长加快。这种培养基称为4F培养基。表皮生长因子或神经生长因子不能替代SMGE,而部分纯化的血小板提取物可替代FGF,但只能部分替代SMGE。4F培养基能够支持其他已建立的前脂肪细胞克隆系HGFu和3T3-F442A的细胞增殖,也能支持从大鼠和小鼠脂肪组织的基质血管部分分离出的前脂肪细胞的增殖。在每种情况下,4F培养基都不足以支持这些细胞分化为脂肪细胞。在无血清且添加激素的培养基中生长和维持的Ob17细胞,在添加血清后仍保留转化为脂肪样细胞的能力。这种分化所需的血清不能通过添加生长激素或其他假定的脂肪生成因子或两者来替代。结合先前描述的3T3-L1和1246前脂肪细胞系的生长和分化需求对结果进行了讨论。

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