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Role of COX-2 in microcirculatory disturbance in experimental pancreatitis

机译:COX-2在实验性胰腺炎微循环障碍中的作用

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摘要

AIM: To elucidate the role of COX-2 in the development of capillary leakage in rats with acute interstitial pancreatitis.METHODS: Rats with acute interstitial pancreatitis were induced by caerulein subcutaneous injection. Reverse transcription-polymerase chain reaction (RT-PCR) was used to determine the gene expression of COX-2 in pancreatic tissues, spectrophotometry was used to assay the parameters of acute pancreatitis such as the serum amylase and plasma myeloperoxidase, and determination of capillary permeability in the pancreas by quantifying the permeability index (PI) assisted response of pancreatic microvascular via intravital fluorescence microscope video image analysis system.RESULTS: A significant increase of COX-2 expression, elevation of serum amylase, and plasma myeloperoxidase were detected in rats with acute edematous pancreatitis compared with control rats. The changes of pancreatic microvascular after caerulein injection were as following: (a) the decrease of pancreatic capillary blood flow (4th h, 0.56 ± 0.09 nL/min, P < 0.05; 8 th h, 0.34 ± 0.10 nL/min, P < 0.001); (b) reduction of functional capillary density (4 th h, 381 ± 9 cm-1, P > 0.05; 8th h, 277 ± 13 cm-1, P < 0.001); (c) irregular and intermittent capillary perfusion was observed at the 8th h and these vessels were also prone to permeation.CONCLUSION: COX-2 plays an important role in mediating capillary permeability in pancreatitis, thereby contributing to capillary leakage.
机译:目的:阐明COX-2在急性间质性胰腺炎大鼠毛细血管渗漏中的作用。方法:皮下注射菜青素诱导大鼠急性间质性胰腺炎。用逆转录聚合酶链反应(RT-PCR)测定胰腺组织中COX-2的基因表达,用分光光度法测定急性胰腺炎的血清淀粉酶和血浆髓过氧化物酶等参数,并测定毛细血管通透性通过活体荧光显微镜视频图像分析系统量化胰腺微血管的通透性指数(PI)辅助反应,可检测胰腺中的脂肪。结果:在急性大鼠中,COX-2表达,血清淀粉酶升高和血浆髓过氧化物酶显着增加与对照组相比,水肿性胰腺炎。注射铜绿蛋白后胰腺微血管的变化如下:(a)胰腺毛细血管血流量减少(第4 h,0.56±0.09 nL / min,P <0.05;第8 h,0.34±0.10 nL / min,P < 0.001); (b)降低功能性毛细血管密度(4 h,381±9 cm -1 ,P> 0.05; 8 h,277±13 cm -1 ,P < 0.001); (c)在第8小时观察到不规则和间歇性的毛细血管灌注,并且这些血管也易于渗透。结论:COX-2在介导胰腺炎的毛细血管通透性中起重要作用,从而导致毛细血管渗漏。

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