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一种钙选择性、储存调控电流(ISOC)在内皮细胞通透性中的重要作用:血管渗漏部位的决定因素。

Essential role of a Ca2+-selective, store-operated current (ISOC) in endothelial cell permeability: determinants of the vascular leak site.

作者信息

Wu Songwei, Cioffi Eugene A, Alvarez Diego, Sayner Sarah L, Chen Hairu, Cioffi Donna L, King Judy, Creighton Judy R, Townsley Mary, Goodman Steven R, Stevens Troy

机构信息

Center for Lung Biology, The University of South Alabama College of Medicine, Mobile, Ala 36688, USA.

出版信息

Circ Res. 2005 Apr 29;96(8):856-63. doi: 10.1161/01.RES.0000163632.67282.1f. Epub 2005 Mar 24.

Abstract

Store-operated calcium (SOC) entry is sufficient to disrupt the extra-alveolar, but not the alveolar, endothelial cell barrier. Mechanism(s) underlying such insensitivity to transitions in cytosolic calcium ([Ca2+]i) in microvascular endothelial cells are unknown. Depletion of stored Ca2+ activates a larger SOC entry response in extra-alveolar (pulmonary artery; PAECs) than alveolar (pulmonary microvascular; PMVECs) endothelial cells. In vivo permeation studies revealed that Ca2+ store depletion activates similar nonselective cationic conductances in PAECs and PMVECs, while only PAECs possess the calcium-selective, store-operated Ca2+ entry current, I(SOC). Pretreatment with the type 4 phosphodiesterase inhibitor, rolipram, abolished thapsigargin-activated I(SOC) in PAECs, and revealed I(SOC) in PMVECs. Rolipram pretreatment shifted the thapsigargin-induced fluid leak site from extra-alveolar to alveolar vessels in the intact pulmonary circulation. Thus, our results indicate I(SOC) provides a [Ca2+]i source that is needed to disrupt the endothelial cell barrier, and demonstrate that intracellular events controlling I(SOC) activation coordinate the site-specific vascular response to inflammation.

摘要

储存性钙离子内流(SOC)足以破坏肺泡外而非肺泡内的内皮细胞屏障。微血管内皮细胞对胞质钙离子([Ca2+]i)转变不敏感的潜在机制尚不清楚。与肺泡内(肺微血管;PMVECs)内皮细胞相比,储存的Ca2+耗竭在肺泡外(肺动脉;PAECs)内皮细胞中激活更大的SOC内流反应。体内渗透研究表明,Ca2+储存耗竭在PAECs和PMVECs中激活相似的非选择性阳离子电导,而只有PAECs具有钙选择性、储存性钙离子内流电流I(SOC)。用4型磷酸二酯酶抑制剂咯利普兰预处理可消除毒胡萝卜素激活的PAECs中的I(SOC),并揭示PMVECs中的I(SOC)。咯利普兰预处理使毒胡萝卜素诱导的液体渗漏部位在完整肺循环中从肺泡外血管转移到肺泡内血管。因此,我们的结果表明I(SOC)提供了破坏内皮细胞屏障所需的[Ca2+]i来源,并证明控制I(SOC)激活的细胞内事件协调了血管对炎症的位点特异性反应。

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