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The role of collagen in extralobar pulmonary artery stiffening in response to hypoxia-induced pulmonary hypertension

机译:胶原在缺氧引起的肺动脉高压中对肺叶外肺动脉硬化的作用

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摘要

Hypoxic pulmonary hypertension (HPH) causes extralobar pulmonary artery (PA) stiffening, which potentially impairs right ventricular systolic function. Changes in the extracellular matrix proteins collagen and elastin have been suggested to contribute to this arterial stiffening. We hypothesized that vascular collagen accumulation is a major cause of extralobar PA stiffening in HPH and tested our hypothesis with transgenic mice that synthesize collagen type I resistant to collagenase degradation (Col1a1R/R). These mice and littermate controls that have normal collagen degradation (Col1a1+/+) were exposed to hypoxia for 10 days; some were allowed to recover for 32 days. In vivo PA pressure and isolated PA mechanical properties and collagen and elastin content were measured for all groups. Vasoactive studies were also performed with U-46619, Y-27632, or calcium- and magnesium-free medium. Pulmonary hypertension occurred in both mouse strains due to chronic hypoxia and resolved with recovery. HPH caused significant PA mechanical changes in both mouse strains: circumferential stretch decreased, and mid-to-high-strain circumferential elastic modulus increased (P < 0.05 for both). Impaired collagen type I degradation prevented a return to baseline mechanical properties with recovery and, in fact, led to an increase in the low and mid-to-high-strain moduli compared with hypoxia (P < 0.05 for both). Significant changes in collagen content were found, which tended to follow changes in mid-to-high-strain elastic modulus. No significant changes in elastin content or vasoactivity were observed. Our results demonstrate that collagen content is important to extralobar PA stiffening caused by chronic hypoxia.
机译:缺氧性肺动脉高压(HPH)会导致肺叶外肺动脉(PA)僵硬,这可能会损害右心室的收缩功能。提示细胞外基质蛋白胶原蛋白和弹性蛋白的变化有助于这种动脉硬化。我们假设血管胶原蛋白积聚是HPH中叶外PA硬化的主要原因,并用合成抗胶原酶降解的I型胶原蛋白的转基因小鼠(Col1a1 R / R )验证了我们的假设。将这些具有正常胶原降解(Col1a1 + / + )的小鼠和同窝幼仔暴露于缺氧环境10天。一些被允许恢复32天。测量所有组的体内PA压力和分离的PA机械性能以及胶原蛋白和弹性蛋白含量。还使用U-46619,Y-27632或无钙和镁的培养基进行了血管活性研究。两种小鼠品系均因慢性低氧而发生肺动脉高压,并随着恢复而缓解。 HPH在两种小鼠品系中均引起了显着的PA机械改变:圆周拉伸降低,中高应变圆周弹性模量增加(两者均P <0.05)。与缺氧相比,受损的I型胶原降解阻止了恢复时恢复到基线力学性能的作用,实际上导致了低,中至高应变模量的增加(两者均P均<0.05)。发现胶原含量的显着变化,其倾向于跟随中高应变弹性模量的变化。弹性蛋白含量或血管活性未见明显变化。我们的结果表明,胶原蛋白含量对于慢性缺氧引起的叶外PA硬化很重要。

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