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促甲状腺素与原代培养犬甲状腺细胞增殖和分化的差异表达

Thyrotrophin and the differential expression of proliferation and differentiation in dog thyroid cells in primary culture.

作者信息

Roger P P, Dumont J E

出版信息

J Endocrinol. 1983 Feb;96(2):241-9. doi: 10.1677/joe.0.0960241.

Abstract

Cell proliferation and the expression of differentiated functions are generally considered to be mutually exclusive states of the cell. Thyrotrophin activates the expression of differentiated functions in dog thyroid cells by means of cyclic AMP. We have recently shown that thyrotrophin also acts through the same intracellular signal molecule to enhance proliferation of dog thyroid cells in primary cultures. In this work we showed that such primary cultures exhibit three successive phases: a latency period during which the expression of differentiated functions (iodide trapping and organification) declined, the cells still being associated with structures derived from the seeded follicles; a cell-proliferation phase with little expression of these functions, the cells being spread in a monolayer; a stationary phase with cell density reaching a plateau but no re-expression of the functions. Thyrotrophin promoted proliferation during the multiplication phase, but induced redifferentiation during the stationary phase. These effects were mimicked by cholera toxin and dibutyryl cyclic AMP, which suggested that they were mediated by cyclic AMP. Iodide uptake was also stimulated by cortisol. Thyrotrophin therefore has a different action in dog thyroid cells depending on the state of the cells. The spontaneous arrest of multiplication appears to make the cells competent to respond to thyrotrophin by the induction of redifferentiation.

摘要

细胞增殖和分化功能的表达通常被认为是细胞的相互排斥状态。促甲状腺激素通过环磷酸腺苷激活犬甲状腺细胞中分化功能的表达。我们最近发现,促甲状腺激素也通过相同的细胞内信号分子作用,增强原代培养的犬甲状腺细胞的增殖。在这项研究中,我们表明这种原代培养呈现三个连续阶段:一个潜伏期,在此期间分化功能(碘摄取和有机化)的表达下降,细胞仍与来自接种卵泡的结构相关;一个细胞增殖阶段,这些功能表达很少,细胞呈单层铺展;一个静止期,细胞密度达到平台期,但功能不再重新表达。促甲状腺激素在增殖阶段促进增殖,但在静止期诱导再分化。这些效应被霍乱毒素和二丁酰环磷酸腺苷模拟,这表明它们是由环磷酸腺苷介导的。皮质醇也刺激碘摄取。因此,促甲状腺激素在犬甲状腺细胞中的作用取决于细胞状态。增殖的自发停止似乎使细胞能够通过诱导再分化对促甲状腺激素作出反应。

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