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首页> 外文期刊>American Journal of Physiology >Regulation of actin dynamics is critical for endothelial barrier functions.
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Regulation of actin dynamics is critical for endothelial barrier functions.

机译:肌动蛋白动力学的调节对于内皮屏障功能至关重要。

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We tested the hypothesis that the equilibrium between F- and G-actin in endothelial cells modulates the integrity of the actin cytoskeleton and is important for the maintenance of endothelial barrier functions in vivo and in vitro. We used the actin-depolymerizing agent cytochalasin D and jasplakinolide, an actin filament (F-actin) stabilizing and promoting substance, to modulate the actin cytoskeleton. Low doses of jasplakinolide (0.1 microM), which we have previously shown to reduce the permeability-increasing effect of cytochalasin D, had no influence on resting permeability of single-perfused mesenteric microvessels in vivo as well as on monolayer integrity. The F-actin content of cultured endothelial cells remained unchanged. In contrast, higher doses (10 microM) of jasplakinolide increased permeability (hydraulic conductivity) to the same extent as cytochalasin D and induced formation of intercellular gaps in cultured myocardial endothelial (MyEnd) cell monolayers. This was accompanied by a 34% increase of F-actin and pronounced disorganization of the actin cytoskeleton in MyEnd cells. Furthermore, we tested whether an increase of cAMP by forskolin and rolipram would prevent the cytochalasin D-induced barrier breakdown. Conditions that increase intracellular cAMP failed to block the cytochalasin D-induced permeability increase in vivo and the reduction of vascular endothelial cadherin-mediated adhesion in vitro. Taken together, these data support the hypothesis that the state of polymerization of the actin cytoskeleton is critical for maintenance of endothelial barrier functions and that both depolymerization by cytochalasin D and hyperpolymerization of actin by jasplakinolide resulted in an increase of microvessel permeability in vivo. However, cAMP, which is known to support endothelial barrier functions, seems to work by mechanisms other than stabilizing F-actin.
机译:我们测试了以下假设:内皮细胞中F-和G-肌动蛋白之间的平衡调节肌动蛋白细胞骨架的完整性,对于维持体内和体外的内皮屏障功能非常重要。我们使用肌动蛋白解聚剂cytochalasin D和jasplakinolide(肌动蛋白丝(F-actin)稳定和促进物质)来调节肌动蛋白的细胞骨架。我们先前已证明低剂量的jasplakinolide(0.1 microM)会降低细胞松弛素D的通透性增加作用,但对单次灌注的肠系膜微血管的体内静息通透性以及单层完整性没有影响。培养的内皮细胞的F-肌动蛋白含量保持不变。相反,更高剂量的(10 microM)jasplakinolide与细胞松弛素D相同程度地增加了通透性(水导率),并在培养的心肌内皮(MyEnd)细胞单层中诱导了细胞间隙的形成。这伴随着F-肌动蛋白增加34%和MyEnd细胞中肌动蛋白细胞骨架的明显紊乱。此外,我们测试了佛司可林和咯利普兰增加cAMP能否预防细胞松弛素D诱导的屏障破坏。增加细胞内cAMP的条件不能阻止细胞松弛素D诱导的体内通透性增加和体外血管内皮钙黏着蛋白介导的粘附减少。综上所述,这些数据支持以下假设:肌动蛋白细胞骨架的聚合状态对于维持内皮屏障功能至关重要,并且细胞松弛素D的解聚和jasplakinolide引起的肌动蛋白的超聚合都导致体内微血管通透性增加。但是,已知可支持内皮屏障功能的cAMP似乎是通过稳定F-肌动蛋白以外的机制发挥作用。

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