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Shear stress induces synthetic-to-contractile phenotypic modulation in smooth muscle cells via peroxisome proliferator-activated receptor alpha/delta activations by prostacyclin released by sheared endothelial cells

机译:剪应力通过过氧化物酶体增殖物激活的受体α/δ激活被剪切的内皮细胞释放的前列环素诱导在平滑肌细胞中合成到收缩的表型调节

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摘要

[[abstract]]RATIONALE: Phenotypic modulation of smooth muscle cells (SMCs), which are located in close proximity to endothelial cells (ECs), is critical in regulating vascular function. The role of flow-induced shear stress in the modulation of SMC phenotype has not been well defined. OBJECTIVE: The objective was to elucidate the role of shear stress on ECs in modulating SMC phenotype and its underlying mechanism. METHODS AND RESULTS: Application of shear stress (12 dyn/cm2) to ECs cocultured with SMCs modulated SMC phenotype from synthetic to contractile state, with upregulation of contractile markers, downregulation of proinflammatory genes, and decreased percentage of cells in the synthetic phase. Treating SMCs with media from sheared ECs induced peroxisome proliferator-activated receptor (PPAR)-alpha, -delta, and -gamma ligand binding activities; transfecting SMCs with specific small interfering (si)RNAs of PPAR-alpha and -delta, but not -gamma, inhibited shear induction of contractile markers. ECs exposed to shear stress released prostacyclin (PGI2). Transfecting ECs with PGI2 synthase-specific siRNA inhibited shear-induced activation of PPAR-alpha/delta, upregulation of contractile markers, downregulation of proinflammatory genes, and decrease in percentage of SMCs in synthetic phase. Mice with PPAR-alpha deficiency (compared with control littermates) showed altered SMC phenotype toward a synthetic state, with increased arterial contractility in response to angiotensin II. CONCLUSIONS: These results indicate that laminar shear stress induces synthetic-to-contractile phenotypic modulation in SMCs through the activation of PPAR-alpha/delta by the EC-released PGI2. Our findings provide insights into the mechanisms underlying the EC-SMC interplays and the protective homeostatic function of laminar shear stress in modulating SMC phenotype.
机译:[[摘要]理由:平滑肌细胞(SMC)的表型调节在调节血管功能中至关重要,该平滑肌细胞位于与内皮细胞(ECs)接近的位置。流动引起的剪切应力在SMC表型调节中的作用尚未明确。目的:阐明剪切应力对ECs在调节SMC表型中的作用及其潜在机制。方法和结果:剪切应力(12 dyn / cm2)在与SMC共培养的EC上将SMC表型从合成状态转变为收缩状态,同时收缩标志物上调,促炎基因下调和合成期细胞百分比降低。用剪切的ECs诱导的过氧化物酶体增殖物激活受体(PPAR)-α,-δ和-γ配体结合活性的培养基处理SMC;用PPAR-alpha和-delta而不是-gamma的特定小干扰(si)RNA转染SMC可抑制剪切标记的剪切诱导。暴露于剪切应力的ECs释放前列环素(PGI2)。用PGI2合酶特异性siRNA转染EC可抑制剪切诱导的PPAR-α/δ激活,收缩标志物上调,促炎基因下调以及合成期SMC百分比降低。具有PPAR-α缺乏症的小鼠(与对照组同窝仔相比)显示出SMC表型朝着合成状态改变,对血管紧张素II的反应使动脉收缩力增加。结论:这些结果表明层剪切应力通过EC释放的PGI2激活PPAR-α/δ诱导SMC中的合成-收缩表型调节。我们的发现为深入了解EC-SMC相互作用的机制以及层状切应力在调节SMC表型中的保护稳态功能提供了见识。

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    Tsai, MC;

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  • 年度 2009
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  • 正文语种 en-US
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