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首页> 外文期刊>Mechanisms of Development >Hemodynamic force is required for vascular smooth muscle cell recruitment to blood vessels during mouse embryonic development
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Hemodynamic force is required for vascular smooth muscle cell recruitment to blood vessels during mouse embryonic development

机译:在小鼠胚胎发育期间血管平滑肌细胞募集到血管中需要血液动力学力

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摘要

Blood vessel maturation, which is characterized by the investment of vascular smooth muscle cells (vSMCs) around developing blood vessels, begins when vessels remodel into a hierarchy of proximal arteries and proximal veins that branch into smaller distal capillaries. The ultimate result of maturation is formation of the tunica media-the middlemost layer of a vessel that is composed of vSMCs and acts to control vessel integrity and vascular tone. Though many studies have implicated the role of various signaling molecules in regulating maturation, no studies have determined a role for hemodynamic force in the regulation of maturation in the mouse. In the current study, we provide evidence that a hemodynamic force-dependent mechanism occurs in the mouse because reduced blood flow mouse embryos exhibited a diminished or absent coverage of vSMCs around vessels, and in normal-flow embryos, extent of coverage correlated to the amount of blood flow that vessels were exposed to. We also determine that the cellular mechanism of force-induced maturation was not by promoting vSMC differentiation/proliferation, but instead involved the recruitment of vSMCs away from neighboring low-flow distal capillaries towards high-flow vessels. Finally, we hypothesize that hemodynamic force may regulate expression of specific signaling molecules to control vSMC recruitment to high-flow vessels, as reduction of flow results in the misexpression of Semaphorin 3A, 3F, 3G, and the Notch target gene Hey1, all of which are implicated in controlling vessel maturation. This study reveals another role for hemodynamic force in regulating blood vessel development of the mouse, and opens up a new model to begin elucidating mechanotransduction pathways regulating vascular maturation.
机译:血管成熟,其特征在于在显影血管周围的血管平滑肌细胞(VSMC)的投资开始,当血管重塑成近端动脉和近端脉冲分支成较小远端毛细血管的等级时开始。成熟的最终结果是形成Tunica介质 - 由VSMC组成的血管的中间体层,并用于控制血管完整性和血管基调。虽然许多研究涉及各种信号分子在调节成熟方面的作用,但没有研究确定了在小鼠中成熟的调节中的血流动力力的作用。在目前的研究中,我们提供了血流动力依赖性机理,因为降低血液流动小鼠胚胎在血管周围的VSMC覆盖率减少或不存在,并且在正常流胚胎中,覆盖程度与量相关的覆盖范围血液流动暴露于血液流量。我们还确定力诱导成熟的细胞机制不是通过促进VSMC分化/增殖,而是涉及招募VSMC远离邻近的低流量远端毛细管朝向高流量容器。最后,我们假设血液动力学力可以调节特定信号分子的表达,以控制VSMC募集到高流量容器,因为流动的降低导致曲目3A,3F,3G和NOTCH靶基因Hey1的Misexpression,所有这些涉及控制血管成熟。本研究揭示了血液动力在调节小鼠血管发育方面的另一个作用,并开辟了一种新模型,以开始调节血管成熟的机械调节途径。

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