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暴露于血小板衍生生长因子会调节猪主动脉平滑肌细胞对生长调节素-C的反应。

Exposure to platelet-derived growth factor modulates the porcine aortic smooth muscle cell response to somatomedin-C.

作者信息

Clemmons D R

出版信息

Endocrinology. 1985 Jul;117(1):77-83. doi: 10.1210/endo-117-1-77.

Abstract

Platelet-derived growth factor (PDGF) is a potent mitogen for smooth muscle cells, but to detect maximal stimulation by PDGF, the cells must be incubated with plasma. Somatomedin-C (Sm-C), a peptide growth factor that is present in plasma, has been shown to interact with PDGF synergistically to stimulate DNA synthesis in cultured fibroblasts. These studies were designed to test the hypothesis that PDGF interacted with Sm-C to stimulate smooth muscle cell replication and to compare the response of this cell type to that of fibroblasts. When PDGF or Sm-C was added individually to smooth muscle cell cultures, each growth factor induced only minimal increases in [3H]thymidine incorporation into DNA (i.e. PDGF, 3,400 +/- 1,120 to 54,900 +/- 1,550 cpm; Sm-C, 3,400 +/- 1,120 to 10,950 +/- 980 cpm). In contrast, addition of increasing concentrations of Sm-C to cultures that were continuously exposed to PDGF in the presence of Sm-C-deficient plasma resulted in a synergistic increase in [3H]thymidine incorporation (3,400 +/- 1,120 to 54,500 +/- 1,800 cpm; P less than 0.001). To determine if Sm-C was required for smooth muscle cell replication, cultures were sequentially exposed to PDGF, followed by Sm-C-deficient plasma. The rate at which the non-Sm-C-exposed cells synthesized DNA was retarded compared to that of cells exposed to Sm-C-containing plasma; however, 68% nuclear labeling was present after 44 h of incubation. To exclude the possibility that some cellular secretory product was substituting for Sm-C, the medium was changed every 2 h and replaced by fresh Sm-C-deficient medium. Using these test conditions, exposure to PDGF and Sm-C-deficient plasma induced only 11% labelling. Readdition of pure Sm-C to this medium restored nuclear labeling to 82% at 44 h. Other variables that appeared to modulate the cellular response to Sm-C were culture density and simultaneous PDGF exposure. Sm-C and PDGF both appear to be potent mitogens for porcine aortic smooth muscle cells, and when added together to quiescent cultures, their effects are synergistic. Smooth muscle cells appear to require Sm-C to initiate DNA synthesis, and in its absence produce a Sm-like factor that can partially compensate for Sm-C deficiency and allow replication.

摘要

血小板衍生生长因子(PDGF)是平滑肌细胞的一种强效促有丝分裂原,但要检测PDGF的最大刺激作用,细胞必须与血浆一起孵育。生长调节素C(Sm-C)是一种存在于血浆中的肽类生长因子,已被证明可与PDGF协同作用,刺激培养的成纤维细胞中的DNA合成。这些研究旨在检验以下假设:PDGF与Sm-C相互作用以刺激平滑肌细胞复制,并比较这种细胞类型与成纤维细胞的反应。当将PDGF或Sm-C单独添加到平滑肌细胞培养物中时,每种生长因子仅使[3H]胸苷掺入DNA的量略有增加(即PDGF,3400±1120至54900±1550 cpm;Sm-C,3400±1120至10950±980 cpm)。相反,在缺乏Sm-C的血浆存在下,向持续暴露于PDGF的培养物中添加浓度递增的Sm-C,导致[3H]胸苷掺入量协同增加(3400±1120至54500±1800 cpm;P<0.001)。为了确定平滑肌细胞复制是否需要Sm-C,培养物依次暴露于PDGF,然后是缺乏Sm-C的血浆。与暴露于含Sm-C血浆的细胞相比,未暴露于Sm-C的细胞合成DNA的速率减慢;然而,孵育44小时后仍有68%的细胞核标记。为了排除某些细胞分泌产物替代Sm-C的可能性,每2小时更换一次培养基,并用新鲜的缺乏Sm-C的培养基替代。在这些测试条件下,暴露于PDGF和缺乏Sm-C的血浆仅诱导11%的标记。向该培养基中重新添加纯Sm-C可使44小时时的细胞核标记恢复到82%。其他似乎调节细胞对Sm-C反应的变量是培养密度和同时暴露于PDGF。Sm-C和PDGF似乎都是猪主动脉平滑肌细胞的强效促有丝分裂原,当一起添加到静止培养物中时,它们的作用是协同的。平滑肌细胞似乎需要Sm-C来启动DNA合成,在其不存在时会产生一种类似Sm的因子,该因子可以部分补偿Sm-C的缺乏并允许复制。

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