Matsuyama M, Funao K, Kawahito Y, Sano H, Chargui J, Touraine J-L, Takemoto Y, Nakatani T, Yoshimura R
Department of Transplantation and Clinical Immunology, Claude Bernard University of Lyon and Lyon Hospitals, Lyon, France.
Transplant Proc. 2008 Sep;40(7):2149-51. doi: 10.1016/j.transproceed.2008.06.009.
Renal ischemia-reperfusion (I/R) injury is a major cause of renal transplant dysfunction. Recent studies of I/R injury have focused on the function of neutrophils, the mechanisms of action of inflammatory cytokines, and oxygen free radicals, as well as other mediators. However, few reports address the cysteinyl leukotriene-1 receptor (CysLT1R), an important mediator of bronchial asthma in human beings. We examined the expression of CysLT1R in rat renal I/R injury. At laparotomy, the right kidney was harvested and the left renal artery and vein were clamped. The kidney was reperfused after 90 minutes of ischemia, and the rats were killed after 0, 3, 5, 12, or 24 hours. Expression of CysLT1R analyzed at immunohistochemistry was observed only in endothelial cells in nonischemic kidney. At 0 to 3 hours after reperfusion, CysLT1R expression on endothelial cells gradually became stronger, being most intense at 3 hours after reperfusion. Twelve hours after reperfusion, necrosis extended throughout the ischemic kidney; nearly all of the tubular epithelial cells were destroyed. At 3 to 12 hours after reperfusion, CysLT1R expression gradually became weaker on endothelial cells. At 24 hours after reperfusion, CysLT1R expression was almost at the level of that in nonischemic kidney. Expression of CysLT1R was noted in a rat model of renal I/R injury. Several hours after the maximal CysLT1R expression, we observed the maximum renal I/R injury. These results may suggest a relationship between the CysLT1R and renal I/R injury.
肾缺血再灌注(I/R)损伤是肾移植功能障碍的主要原因。最近关于I/R损伤的研究集中在中性粒细胞的功能、炎性细胞因子的作用机制、氧自由基以及其他介质上。然而,很少有报道涉及半胱氨酰白三烯-1受体(CysLT1R),它是人类支气管哮喘的一种重要介质。我们检测了CysLT1R在大鼠肾I/R损伤中的表达。在剖腹手术时,取出右肾并夹闭左肾动脉和静脉。缺血90分钟后进行肾脏再灌注,在0、3、5、12或24小时后处死大鼠。免疫组织化学分析显示,CysLT1R仅在非缺血肾脏的内皮细胞中表达。再灌注后0至3小时,内皮细胞上的CysLT1R表达逐渐增强,在再灌注后3小时最强。再灌注12小时后,坏死扩展至整个缺血肾脏;几乎所有肾小管上皮细胞均被破坏。再灌注后3至12小时,内皮细胞上的CysLT1R表达逐渐减弱。再灌注24小时后,CysLT1R表达几乎恢复到非缺血肾脏的水平。在大鼠肾I/R损伤模型中观察到了CysLT1R的表达。在CysLT1R表达达到最大值数小时后,我们观察到了最大程度的肾I/R损伤。这些结果可能提示CysLT1R与肾I/R损伤之间存在关联。