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机械拉伸对胎儿混合肺细胞凝血酶调节的影响。

Influence of mechanical stretch on thrombin regulation by fetal mixed lung cells.

作者信息

Chan A K, Baranowski B, Berry L, Liu M, Rafii B, Post M, O'Brodovich H, Monagle P, Andrew M

机构信息

The MRC Group in Lung Development, Respiratory Research Division, and the Neonatal Research Division of The Hospital for Sick Children, Toronto; and the Departments of Pediatrics of the University of Toronto, Toronto, Canada.

出版信息

Am J Respir Cell Mol Biol. 1998 Sep;19(3):419-25. doi: 10.1165/ajrcmb.19.3.3119.

Abstract

Respiratory distress syndrome (RDS) is characterized by intrapulmonary fibrin deposition, which can adversely affect surfactant function, and stimulate fibroblast proliferation, which may contribute to the development of bronchopulmonary dysplasia (BPD). We speculated that the premature lung may have impaired regulation of thrombin, thus making preterm infants susceptible to fibrin formation within the lung. Therefore, we studied the effect of stretch, which simulates fetal breathing movements (FBMs), on the generation and inhibition of a key hemostatic enzyme-thrombin-by rat fetal mixed lung cells (FMLCs). Our results showed that stretch induced glycosaminoglycan production with increased antithrombin activity due to an increase in the concentration of active chondroitin sulfate. Stretch downregulated secretion of tissue factor procoagulant activity, which may lead to decreased thrombin generation on the surface of FMLCs. Overall, stretch enhanced the local control of thrombin by FMLCs. These results suggest that premature infants, who will have experienced less FBM, may have impaired thrombin regulation. Impaired thrombin regulation likely contributes to increased fibrin deposition and, potentially, the development of BPD.

摘要

呼吸窘迫综合征(RDS)的特征是肺内纤维蛋白沉积,这会对表面活性物质功能产生不利影响,并刺激成纤维细胞增殖,这可能导致支气管肺发育不良(BPD)的发生。我们推测早产肺可能存在凝血酶调节受损的情况,从而使早产儿易在肺内形成纤维蛋白。因此,我们研究了模拟胎儿呼吸运动(FBMs)的牵张对大鼠胎儿混合肺细胞(FMLCs)产生关键止血酶——凝血酶及对其抑制作用的影响。我们的结果表明,牵张诱导糖胺聚糖产生,抗凝血酶活性增加,这是由于活性硫酸软骨素浓度升高所致。牵张下调组织因子促凝活性的分泌,这可能导致FMLCs表面凝血酶生成减少。总体而言,牵张增强了FMLCs对凝血酶的局部控制。这些结果表明,经历较少FBM的早产儿可能存在凝血酶调节受损的情况。凝血酶调节受损可能导致纤维蛋白沉积增加,并可能导致BPD的发生。

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