首页> 美国卫生研究院文献>PLoS Clinical Trials >In Vitro and In Vivo Evidence that Thrombospondin-1 (TSP-1) Contributes to Stirring- and Shear-Dependent Activation of Platelet-Derived TGF-β1
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In Vitro and In Vivo Evidence that Thrombospondin-1 (TSP-1) Contributes to Stirring- and Shear-Dependent Activation of Platelet-Derived TGF-β1

机译:血小板反应蛋白-1(TSP-1)促进血小板衍生的TGF-β1的搅拌和剪切依赖性活化的体外和体内证据。

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摘要

Thrombospondin 1 (TSP-1), which is contained in platelet α-granules and released with activation, has been shown to activate latent TGF-β1 in vitro, but its in vivo role is unclear as TSP-1-null (Thbs1−/−) mice have a much less severe phenotype than TGF-β1-null (Tgfb1−/−) mice. We recently demonstrated that stirring and/or shear could activate latent TGF-β1 released from platelets and have now studied these methods of TGF-β1 activation in samples from Thbs1−/− mice, which have higher platelet counts and higher levels of total TGF-β1 in their serum than wild type mice. After either two hours of stirring or shear, Thbs1−/− samples demonstrated less TGF-β1 activation (31% and 54% lower levels of active TGF-β1 in serum and platelet releasates, respectively). TGF-β1 activation in Thbs1−/− mice samples was normalized by adding recombinant human TSP-1 (rhTSP-1). Exposure of platelet releasates to shear for one hour led to near depletion of TSP-1, but this could be prevented by preincubating samples with thiol-reactive agents. Moreover, replenishing rhTSP-1 to human platelet releasates after one hour of stirring enhanced TGF-β1 activation. In vivo TGF-β1 activation in carotid artery thrombi was also partially impaired in Thbs1−/− mice. These data indicate that TSP-1 contributes to shear-dependent TGF-β1 activation, thus providing a potential explanation for the inconsistent in vitro data previously reported as well as for the differences in phenotypes of Thbs1−/− and Tgfb1−/− mice.
机译:血小板α颗粒中包含的血小板反应蛋白1(TSP-1)随激活而释放,已显示其可在体外激活潜在的TGF-β1,但尚不清楚其体内的作用是否为TSP-1-null(Thbs1 -/-)小鼠的表型严重程度低于TGF-β1-null(Tgfb1 -/-)小鼠。我们最近证明了搅拌和/或剪切可以激活从血小板释放的潜在TGF-β1,现在我们已经研究了Thbs1 -/-小鼠样品中TGF-β1激活的方法,这些样品具有更高的血小板计数且血清中的总TGF-β1水平高于野生型小鼠。经过两个小时的搅拌或剪切后,Thbs1 -/-样品显示出较低的TGF-β1活化(血清和血小板释放物中的活性TGF-β1水平分别降低了31%和54%)。通过添加重组人TSP-1(rhTSP-1)来标准化Thbs1 -/-小鼠样品中的TGF-β1激活。将血小板释放物暴露于剪切力下一小时会导致TSP-1几乎耗尽,但这可以通过将样品与硫醇反应剂一起预孵育来防止。此外,在搅拌一小时后向人血小板中补充rhTSP-1可增强TGF-β1的活化。在Thbs1 -/-小鼠中,颈动脉血栓中的体内TGF-β1活化也被部分削弱。这些数据表明TSP-1促进了剪切依赖性TGF-β1的活化,从而为先前报道的不一致的体外数据以及Thbs1 -/-的表型差异提供了可能的解释。和Tgfb1 -/-小鼠。

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