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机械应变通过血小板衍生生长因子(PDGF)的自分泌作用诱导血管平滑肌细胞生长。

Mechanical strain induces growth of vascular smooth muscle cells via autocrine action of PDGF.

作者信息

Wilson E, Mai Q, Sudhir K, Weiss R H, Ives H E

机构信息

Division of Nephrology, University of California, San Francisco 94143.

出版信息

J Cell Biol. 1993 Nov;123(3):741-7. doi: 10.1083/jcb.123.3.741.

Abstract

The effect of cyclic mechanical strain on growth of neonatal rat vascular smooth muscle (VSM) cells were examined. Cells were grown on silicone elastomer plates subjected to cyclic strain (60 cycle/min) by application of a vacuum under the plates. A 48 h exposure to mechanical strain increased the basal rate of thymidine incorporation by threefold and increased cell number by 40% compared with cells grown on stationary rubber plates. Strain also increased the rate of thymidine incorporation in response to alpha-thrombin (from 15- to 33-fold), but not to PDGF. As determined by thymidine autoradiography, strain alone induced a fourfold increase in labeled nuclei at the periphery of dishes, where strain is maximal, and a 2-3-fold increase at the center of dishes. Strain appeared to induce the production of an autocrine growth factor(s), since conditioned medium from cells subjected to strain induced a fourfold increase in DNA synthesis in control cells. Western blots of medium conditioned on the cells subjected to strain indicate that the cells secrete both AA and BB forms of PDGF in response to strain. Northern blots of total cell RNA from cells exposed to strain for 24 h show increased steady-state level of mRNA for PDGF-A. Lastly, polyclonal antibodies to the AA form of PDGF reduced by 75% the mitogenic effect of strain and polyclonal antibodies to AB-PDGF reduced mitogenicity by 50%. Antibodies to bFGF did not significantly reduce the strain-induced thymidine incorporation. Thus, the mechanism of strain-induced growth appears to involve the intermediary action of secreted PDGF.

摘要

研究了周期性机械应变对新生大鼠血管平滑肌(VSM)细胞生长的影响。将细胞接种在硅橡胶弹性体平板上,通过在平板下方施加真空使其受到周期性应变(60次/分钟)。与在固定橡胶平板上生长的细胞相比,48小时的机械应变暴露使胸苷掺入的基础速率增加了三倍,细胞数量增加了40%。应变还增加了细胞对α-凝血酶刺激的胸苷掺入速率(从15倍增加到33倍),但对血小板衍生生长因子(PDGF)无此作用。通过胸苷放射自显影测定,单独的应变在培养皿周边(应变最大处)使标记细胞核数量增加了四倍,在培养皿中心增加了2 - 3倍。应变似乎诱导了一种自分泌生长因子的产生,因为来自受应变处理细胞的条件培养基能使对照细胞的DNA合成增加四倍。对受应变处理细胞的培养基进行蛋白质免疫印迹分析表明,细胞在应变刺激下分泌AA和BB两种形式的PDGF。对暴露于应变24小时的细胞的总细胞RNA进行Northern印迹分析显示,PDGF - A的mRNA稳态水平升高。最后,针对PDGF AA形式的多克隆抗体使应变的促有丝分裂作用降低了75%,针对AB - PDGF的多克隆抗体使促有丝分裂活性降低了50%。针对碱性成纤维细胞生长因子(bFGF)的抗体并未显著降低应变诱导的胸苷掺入。因此,应变诱导生长的机制似乎涉及分泌型PDGF的中介作用。

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