肺动脉高压
右心室肥大
促红细胞生成素肝细胞(Eph)受体
肺动脉
以法林
罗亚
缺氧(环境)
血管平滑肌
医学
内科学
内分泌学
受体
胚胎血管重塑
生物
病理
信号转导
细胞生物学
化学
平滑肌
氧气
有机化学
受体酪氨酸激酶
作者
Slaven Crnković,Sonja Rittchen,Katharina Jandl,Juergen Gindlhuber,Diana Zabini,Ayse Ceren Mutgan,Francesco Valzano,Panja M. Boehm,Konrad Höetzenecker,Wolfgang Toller,Christine Veith,Ákos Heinemann,Ralph T. Schermuly,Andrea Olschewski,Leigh M. Marsh,Grażyna Kwapiszewska
出处
期刊:Hypertension
[Ovid Technologies (Wolters Kluwer)]
日期:2023-02-01
卷期号:80 (2)
被引量:1
标识
DOI:10.1161/hypertensionaha.122.19479
摘要
Background: Smooth muscle cell (SMC) expansion is one key morphological hallmark of pathologically altered vasculature and a characteristic feature of pulmonary vascular remodeling in pulmonary hypertension. Normal embryonal vessel maturation requires successful coverage of endothelial tubes with SMC, which is dependent on ephrin-B2 and EphB4 ligand-receptor guidance system. In this study, we investigated the potential role of ephrin-B2 and EphB4 on neomuscularization in adult pulmonary vascular disease. Methods and Results: Ephrin-B2 and EphB4 expression is preserved in smooth muscle and endothelial cells of remodeled pulmonary arteries. Chronic hypoxia-induced pulmonary hypertension was not ameliorated in mice with SMC-specific conditional ephrin-B2 knockout. In mice with global inducible ephrin-B2 knockout, pulmonary vascular remodeling and right ventricular hypertrophy upon chronic hypoxia exposure were significantly diminished compared to hypoxic controls, while right ventricular systolic pressure was unaffected. In contrast, EphB4 receptor kinase activity inhibition reduced right ventricular systolic pressure in hypoxia-induced pulmonary hypertension without affecting pulmonary vascular remodeling. Genetic deletion of ephrin-B2 in murine pulmonary artery SMC, and pharmacological inhibition of EphB4 in human pulmonary artery smooth muscle cells, blunted mitogen-induced cell proliferation. Loss of EphB4 signaling additionally reduced RhoA expression and weakened the interaction between human pulmonary artery smooth muscle cells and endothelial cells in a three-dimensional coculture model. Conclusions: In sum, pulmonary vascular remodeling was dependent on ephrin-B2-induced Eph receptor (erythropoietin-producing hepatocellular carcinoma receptor) forward signaling in SMC, while EphB4 receptor activity was necessary for RhoA expression in SMC, interaction with endothelial cells and vasoconstrictive components of pulmonary hypertension.
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