首页> 美国卫生研究院文献>American Journal of Physiology - Lung Cellular and Molecular Physiology >Peroxisome proliferator activated receptor-γ-Rho-kinase interactions contribute to vascular remodeling after chronic intrauterine pulmonary hypertension
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Peroxisome proliferator activated receptor-γ-Rho-kinase interactions contribute to vascular remodeling after chronic intrauterine pulmonary hypertension

机译:过氧化物酶体增殖物激活的受体-γ-Rho-激酶相互作用促进慢性子宫内肺动脉高压后的血管重塑

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摘要

Peroxisome proliferator-activated receptor-γ (PPARγ) and Rho-kinase (ROCK) regulate smooth muscle cell (SMC) proliferation and contribute to vascular remodeling in adult pulmonary hypertension. Whether these pathways interact to contribute to the development of vascular remodeling in persistent pulmonary hypertension of the newborn (PPHN) remains unknown. We hypothesized that ROCK-PPARγ interactions increase SMC proliferation resulting in vascular remodeling in experimental PPHN. Pulmonary artery SMCs (PASMCs) were harvested from fetal sheep after partial ligation of the ductus arteriosus in utero (PPHN) and controls. Cell counts were performed daily for 5 days with or without PPARγ agonists and ROCK inhibition. PPARγ and ROCK protein expression/activity were measured by Western blot in normal and PPHN PASMCs. We assessed PPARγ-ROCK interactions by studying the effect of ROCK activation on PPARγ activity and PPARγ inhibition (siRNA) on ROCK activity and PASMC proliferation. At baseline, PPHN PASMC cell number was increased by 38% above controls on day 5. ROCK protein expression/activity were increased by 25 and 34% and PPARγ protein/activity decreased by 40 and 50% in PPHN PASMC. ROCK inhibition and PPARγ activation restored PPHN PASMC growth to normal values. ROCK inhibition increased PPARγ activity by 50% in PPHN PASMC, restoring PPARγ activity to normal. In normal PASMCs, ROCK activation decreased PPARγ activity and PPARγ inhibition increased ROCK activity and cell proliferation, resulting in a PPHN hyperproliferative PASMC phenotype. PPARγ-ROCK interactions regulate SMC proliferation and contribute to increased PPHN PASMC proliferation and vascular remodeling in PPHN. Restoring normal PPARγ-ROCK signaling may prevent vascular remodeling and improve outcomes in PPHN.
机译:过氧化物酶体增殖物激活受体-γ(PPARγ)和Rho激酶(ROCK)调节平滑肌细胞(SMC)增殖,并有助于成人肺动脉高压的血管重塑。这些途径是否相互作用,以促进新生儿持续性肺动脉高压(PPHN)的血管重塑发展。我们假设ROCK-PPARγ相互作用会增加SMC增殖,从而导致实验性PPHN中的血管重塑。部分子宫内动脉导管(PPHN)和对照结扎后,从胎羊中收获肺动脉SMC(PASMC)。在有或没有PPARγ激动剂和ROCK抑制的情况下每天进行细胞计数5天。通过蛋白质印迹法在正常和PPHN PASMC中测量PPARγ和ROCK蛋白的表达/活性。我们通过研究ROCK活化对PPARγ活性和PPARγ抑制(siRNA)对ROCK活性和PASMC增殖的影响,评估了PPARγ-ROCK的相互作用。在基线时,PPHN PASMC的PPHN PASMC细胞数比对照组增加了38%,在第5天。ROCK蛋白的表达/活性增加了25%和34%,PPARγ蛋白/活性降低了40%和50%。 ROCK抑制和PPARγ激活将PPHN PASMC生长恢复到正常值。在PPHN PASMC中,ROCK抑制可将PPARγ活性提高50%,使PPARγ活性恢复正常。在正常的PASMC中,ROCK激活会降低PPARγ活性,PPARγ抑制会增加ROCK活性和细胞增殖,从而导致PPHN过度增殖的PASMC表型。 PPARγ-ROCK相互作用调节SMC增殖并促进PPHN的增殖PASMC增殖和PPHN中的血管重塑。恢复正常的PPARγ-ROCK信号传导可预防血管重塑并改善PPHN的预后。

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