脂肪细胞转化中的3T3细胞。

Archivos de investigacion medica Pub Date : 1991-04-01
M S O'Shea Alvarez
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引用次数: 0

摘要

3T3是已建立的异倍体细胞系的小鼠细胞。这种细胞系的一些克隆在适当的条件下培养时分化成脂肪细胞。在分化过程中,细胞由细长的成纤维细胞形状转变为圆形或椭圆形,并在胞浆内积聚小滴的脂质。这些脂滴融合成一个大的脂滴,将细胞核移向周围,使细胞看起来像白色脂肪组织的成熟脂肪细胞。细胞不仅形态发生变化,而且还发生重要的生化变化。它们同时增加甘油三酯合成和脂肪生成酶的活性。各种激素活性的反应以及受体对胰岛素和促肾上腺皮质激素等激素的重新合成也有所增加。在分化过程中,各种蛋白质的合成发生了重要的变化,如肌动蛋白、微管蛋白和其他蛋白质,这些蛋白质也构成细胞骨架,构成脂肪细胞内脂质运输的一部分。3T3细胞的脂肪分化取决于补充培养基中使用的成脂血清因子。这些致脂因子似乎在脂肪组织的形成中起着重要的作用。调节脂肪细胞分化的有激素、化学制剂和血清因子。克隆必须易受脂肪细胞分化的影响,它必须达到静止状态并发现自己处于成脂状态,才能使3T3细胞分化为脂肪细胞。它还必须进行DNA合成,这是新表型的表达。终末3T3细胞的分化。事实证明,这些细胞在生理条件下和存在于整个动物体内的脂肪生成激素下呈现脂肪细胞转化。所有这些特征表明,3T3细胞可以作为一个足够的实验系统来分析脂肪组织分化和发育过程中发生的事件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3T3 cells in adipocytic conversion.

3T3 are murine cells of an established heteroploid cellular line. Some clones of this cellular line, when cultured under adequate conditions differentiate into adipocytes. During the process of differentiation, the cells undergo a change from the elongated fibroblastic shape to a round or oval form and accumulate small drops of lipids within their cytoplasma. These lipid drops fuse into one large drop which displaces the nucleus towards the periphery, giving the cell the aspect of a mature adipocyte of white adipose tissue. The cells not only change their morphology, but they also present important biochemical changes. They show a simultaneous increase in triglyceride synthesis and activity of lipogenic enzymes. There is also an increase in the response of the activity of various hormones and the de novo synthesis of the receptors to such hormones, as insulin and ACTH. During the process of differentiation important changes occur in the synthesis of various proteins, such as actin, tubulin, and other proteins which also make up the cellular cytoskeleton, forming part of the lipid transportation within the adipose cell. The adipocytic differentiation of 3T3 cells depends on adipogenic serum factors used in the supplementary culture medium. These adipogenic factors seem to play an important role in the development of adipose tissue. There are hormones, chemical agents and serum factors which modulate adipocytic differentiation. The clone must be susceptible to adipocytic differentiation, it must reach a quiescent state and find itself in adipogenic conditions for the 3T3 cells to differentiate into adipocytes. It must also carry out an DNA synthesis which is an expression of the new phenotype. The differentiation of 3T3 cells in terminal. The fact that these cells present an adipocytic conversion under physiologic conditions and with adipogenic hormones which exist in the whole animal has been demonstrated. All of these characteristics show that the 3T3 cells may be used as an adequate experimental system to analyze the events which occur during the differentiation and development of adipose tissue.

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