首页> 外文期刊>The Journal of Urology >Collagen directly stimulates bladder smooth muscle cell growth in vitro: regulation by extracellular regulated mitogen activated protein kinase.
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Collagen directly stimulates bladder smooth muscle cell growth in vitro: regulation by extracellular regulated mitogen activated protein kinase.

机译:胶原蛋白在体外直接刺激膀胱平滑肌细胞的生长:通过细胞外调节的促分裂原活化蛋白激酶进行调节。

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PURPOSE: Bladders clinically subjected to excessive pressure or distention demonstrate an altered extracellular matrix (ECM) composition. We determined how an altered collagen substratum might affect bladder smooth muscle cell (bSMC) growth in vitro and probed the mechanism of this response. MATERIALS AND METHODS: Primary culture rat bSMCs were seeded onto culture plates pre-coated with normal type I collagen (NC) or heat denatured type I collagen (DNC) under standard culture conditions. In separate experiments bSMCs from the 2 substrates were enzymatically released and changed to growth on normal collagen (NC-->NC or DNC-->NC) or denatured collagen (DNC-->DNC or NC-->DNC). At 24 hours proliferation was assessed by 3H-thymidine incorporation. Statistical significance in triplicate wells was determined by ANOVA. RESULTS: The proliferation of bSMCs on DNC was 5-fold greater than on NC (p <0.0001). Passage onto damaged collagen (DNC-->DNC) showed 2-fold further augmentation in proliferation (p <0.0001) but only a 50% decrease when NC was reintroduced (DNC-->NC) (p <0.001). Conversely replating on NC (NC-->NC) generated a 33% decrease in the already low proliferation rate (p <0.001) but 9-fold stimulation of proliferation when changed to damaged ECM (NC-->DNC) (p <0.0001). The mitogenic effect of damaged ECM on bSMC growth was abolished by specific inhibition of extracellular regulated kinase mitogen activated protein kinase signaling using PD98059. CONCLUSIONS: Damaged type I collagen (ECM) is mitogenic to bSMCs. The response is amplified by re-exposure to DNC. However, mitogenicity is only partially reversible by re-introducing NC. These results demonstrate striking bSMC responsiveness to ECM conformation. Signaling through the extracellular regulated kinase mitogen activated protein kinase pathway supports bSMC-ECM interaction. We speculate that remodeling the ECM in vivo may regulate bSMC growth.
机译:目的:临床上承受过大压力或膨胀的膀胱表现出改变的细胞外基质(ECM)组成。我们确定了改变的胶原蛋白基质如何可能在体外影响膀胱平滑肌细胞(bSMC)的生长,并探讨了这种反应的机制。材料与方法:在标准培养条件下,将原代培养的大鼠bSMC接种到预先涂有正常I型胶原蛋白(NC)或热变性I型胶原蛋白(DNC)的培养板上。在单独的实验中,通过酶促释放来自2种底物的bSMC,并在正常胶原蛋白(NC-> NC或DNC-> NC)或变性胶原蛋白(DNC-> DNC或NC-> DNC)上生长。在24小时,通过3 H-胸苷掺入评估增殖。通过ANOVA确定一式三份孔的统计显着性。结果:bNCs在DNC上的增殖是NC上的5倍(p <0.0001)。在受损胶原蛋白(DNC-> DNC)上的传代显示增殖进一步增加了2倍(p <0.0001),但是当再次引入NC(DNC-> NC)时仅降低了50%(p <0.001)。相反地​​,在受损的ECM(NC-> DNC)上重新铺上NC(NC-> NC)可使原本很低的增殖率降低33%(p <0.001),但刺激了9倍的增殖(p <0.0001 )。通过使用PD98059特异性抑制细胞外调节激酶有丝分裂原激活的蛋白激酶信号传导,可以消除受损的ECM对bSMC生长的促有丝分裂作用。结论:受损的I型胶原(ECM)对bSMC有丝分裂作用。通过再次暴露于DNC可以放大响应。但是,有丝分裂性只能通过重新引入NC才能部分逆转。这些结果证明了惊人的bSMC对ECM构象的反应能力。通过细胞外调节激酶促分裂原活化蛋白激酶途径的信号支持bSMC-ECM相互作用。我们推测在体内重塑ECM可能会调节bSMC的生长。

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