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Pulmonary artery smooth muscle cell endothelin-1 expression modulates the pulmonary vascular response to chronic hypoxia

机译:肺动脉平滑肌细胞内皮素-1表达调节慢性缺氧的肺血管反应

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摘要

Endothelin-1 (ET-1) increases pulmonary vascular tone through direct effects on pulmonary artery smooth muscle cells (PASMC) via membrane-bound ET-1 receptors. Circulating ET-1 contributes to vascular remodeling by promoting SMC proliferation and migration and inhibiting SMC apoptosis. Although endothelial cells (EC) are the primary source of ET-1, whether ET-1 produced by SMC modulates pulmonary vascular tone is unknown. Using transgenic mice created by crossbreeding SM22a-Cre mice with ET-1 flox/flox mice to selectively delete ET-1 in SMC, we tested the hypothesis that PASMC ET-1 gene expression modulates the pulmonary vascular response to hypoxia. ET-1 gene deletion and selective activity of SM22a promoter-driven Cre recombinase were confirmed. Functional assays were performed under normoxic (21% O2) or hypoxic (5% O2) conditions using murine PASMC obtained from ET-1+/+ and ET-1"'" mic and in human PASMC (hPASMC) after silencing of ET-1 using siRNA. Under baseline conditions, there was no difference in right ventricular systolic pressure (RVSP) between SM22a-ET-l"/- and SM22a-ET-l+/+ (control) littermates. After exposure to hypoxia (10% O2, 21-24 days), RVSP was and vascular remodeling were less in SM22a-ET-l~/~ mice compared with control littermates (P < 0.01). Loss of ET-1 decreased PASMC proliferation and migration and increased apoptosis under normoxic and hypoxic conditions. Exposure to selective ET-1 receptor antagonists had no effect on either the hypoxia-induced hPASMC proliferative or migratory response. SMC-specific ET-1 deletion attenuates hypoxia-induced increases in pulmonary vascular tone and structural remodeling. The observation that loss of ET-1 inhibited SMC proliferation, survival, and migration represents evidence that ET-1 derived from SMC plays a previously undescribed role in modulating the response of the pulmonary circulation to hypoxia. Thus PASMC ET-1 may modulate vascular tone independently of ET-1 produced by EC.
机译:内皮素-1(ET-1)通过对肺动脉平滑肌细胞(PASMC)通过膜结合的ET-1受体的直接影响增加肺血管间调。通过促进SMC增殖和迁移和抑制SMC凋亡,循环ET-1有助于血管重塑。虽然内皮细胞(EC)是ET-1的主要来源,但是SMC制剂的ET-1是否调节肺血管基调是未知的。使用通过用ET-1氟甲基/氟小鼠的杂交SM22A-CRE小鼠产生的转基因小鼠在SMC中选择性地删除ET-1,我们测试了PASMC ET-1基因表达调节肺血管反应的假设。确认了SM22A启动子驱动CRE重组酶的ET-1基因缺失和选择性活性。使用从Et-1 + / +和ET-1“”麦克风和人体PASMC(HPASMC)获得的鼠PASMC在常氧(21%O 2)或缺氧(5%O 2)条件下进行功能测定,然后在静电后1使用siRNA。在基线条件下,SM22A-ET-L“/ - 和SM22A-ET-L + / +(对照)凋落物之间的右心室收缩压(RVSP)没有差异。暴露于缺氧后(10%O2,21-24昼夜),RVSP是与对照凋落物相比的SM22A-ET-L〜/〜〜/〜小鼠中的血管重塑(P <0.01)。ET-1的损失降低了疟疾增殖和迁移增加,并在常氧和缺氧条件下增加了凋亡。暴露选择性ET-1受体拮抗剂对缺氧诱导的催眠增殖或迁移反应没有影响。SMC特异性ET-1缺失衰减缺氧诱导的肺血管间调和结构重塑的增加。观察到ET-1丧失抑制SMC增殖,存活率和迁移代表来自SMC的ET-1在调节肺循环对缺氧的响应方面发挥以前未描述的作用。因此,PASMC ET-1可以独立地调节血管基调的ET-1产品由ec ec。

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