Mata-Greenwood Eugenia, Grobe Albert, Kumar Sanjiv, Noskina Yelina, Black Stephen M
International Heart Institute of Montana, 3rd Floor, St. Patrick Hospital, 554 West Broadway, Missoula, MT 59802, USA.
Am J Physiol Lung Cell Mol Physiol. 2005 Aug;289(2):L288-9. doi: 10.1152/ajplung.00417.2004. Epub 2005 Apr 8.
Our previous studies have indicated that transforming growth factor (TGF)-beta1 and VEGF expression are increased in the smooth muscle cell (SMC) layer of the pulmonary vessels of lambs with pulmonary hypertension secondary to increased pulmonary blood flow. Furthermore, we found that TGF-beta1 expression increased before VEGF. Because of the increased blood flow in the shunt lambs, the SMC in the pulmonary vessels are exposed to increased levels of the mechanical force, cyclic stretch. Thus, in this study, using primary cultures of pulmonary arterial SMC isolated from pulmonary arteries of 4-wk-old lambs, we investigated the role of cyclic stretch in the apparent coordinated regulation of TGF-beta1 and VEGF. Our results demonstrated that cyclic stretch induced a significant increase in VEGF expression both at the mRNA and protein levels (P < 0.05). The increased VEGF mRNA was preceded by both an increased expression and secretion of TGF-beta1 and an increase in reactive oxygen species (ROS) generation. In addition, a neutralizing antibody against TGF-beta1 abolished the cyclic stretch-dependent increases in both superoxide generation and VEGF expression. Our data also demonstrated that cyclic stretch activated an NAD(P)H oxidase that was TGF-beta1 dependent and that NAD(P)H oxidase inhibitors abolished the cyclic stretch-dependent increase in VEGF expression. Therefore, our results indicate that cyclic stretch upregulates VEGF expression via the TGF-beta1-dependent activation of NAD(P)H oxidase and increased generation of ROS.
我们之前的研究表明,在继发于肺血流量增加的肺动脉高压羔羊的肺血管平滑肌细胞(SMC)层中,转化生长因子(TGF)-β1和血管内皮生长因子(VEGF)的表达增加。此外,我们发现TGF-β1的表达在VEGF之前增加。由于分流羔羊的血流量增加,肺血管中的SMC暴露于增加水平的机械力,即周期性牵张。因此,在本研究中,我们使用从4周龄羔羊肺动脉分离的肺动脉SMC原代培养物,研究了周期性牵张在TGF-β1和VEGF明显协同调节中的作用。我们的结果表明,周期性牵张在mRNA和蛋白质水平上均诱导VEGF表达显著增加(P < 0.05)。VEGF mRNA的增加之前是TGF-β1表达和分泌的增加以及活性氧(ROS)生成的增加。此外,抗TGF-β1中和抗体消除了超氧化物生成和VEGF表达的周期性牵张依赖性增加。我们的数据还表明,周期性牵张激活了一种依赖于TGF-β1的NAD(P)H氧化酶,并且NAD(P)H氧化酶抑制剂消除了VEGF表达的周期性牵张依赖性增加。因此,我们的结果表明,周期性牵张通过TGF-β1依赖性激活NAD(P)H氧化酶和增加ROS生成来上调VEGF表达。