首页> 外文期刊>Transplantation: Official Journal of the Transplantation Society >Activation of mitochondrial apoptotic pathways in human renal allografts after ischemiareperfusion injury.
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Activation of mitochondrial apoptotic pathways in human renal allografts after ischemiareperfusion injury.

机译:缺血再灌注损伤后人肾脏同种异体移植物中线粒体凋亡途径的激活。

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BACKGROUND: Ischemia-reperfusion injury in cadaveric (CAD) kidney allografts is associated with tubular cell injury, delayed graft function, and an increased incidence of acute and chronic rejection. We tested the hypothesis that activation of specific apoptotic pathways represents a mechanism for tubular cell death after CAD kidney transplantation. METHODS: Serial tissue sections from paraffin-embedded needle biopsy specimens obtained at approximately 1 hr of reperfusion after transplantation of 13 CAD and 12 living-related donor (LRD) renal allografts were examined by using the terminal deoxynucleotide transferase-mediated dUTP nick-end labeling assay to detect apoptosis and by immunohistochemistry for expression of key pro-apoptotic molecules (Bax, Bak, tumor necrosis factor receptor [TNFR]-1, Fas, and cytochrome c). RESULTS: Apoptosis was detected primarily in tubular cells, with a mean+/-standard deviation of 6.8+/-2.2 apoptotic cells per 100 cells examined in CAD renal allografts compared with 1.8+/-2.7 cells per 100 in LRD (P<0.001) renal allografts. There was a significant correlation between apoptosis rate and cold ischemia time in CAD (r=0.86, P<0.001) renal allografts. Bax was expressed in 100% of CAD versus 17% of LRD renal allografts (P<0.001), Bak in 92% of CAD versus 17% of LRD renal allografts (P<0.001), and TNFR-1 in 100% of CAD versus 58% of LRD renal allografts (P<0.05). Fas was expressed in only a small number of samples (23% of CAD and 17% of LRD renal allografts, P=not significant). Bax and Bak were expressed predominantly in apoptotic cells. Cytochrome c was detected as a mitochondrial pattern in LRD renal allografts, but in a diffuse cytosolic distribution in CAD renal allografts. CONCLUSIONS: Ischemia-reperfusion injury in CAD kidney transplants is associated with a duration-dependent increase in tubular cell apoptosis, mediated at least in part by activation of mitochondrial pathways.
机译:背景:尸体(CAD)肾脏异体再灌注损伤与肾小管细胞损伤,移植物功能延迟以及急慢性排斥反应的发生率增加有关。我们测试了这一假设,即特定凋亡途径的激活代表了CAD肾脏移植后肾小管细胞死亡的机制。方法:使用末端脱氧核苷酸转移酶介导的dUTP缺口末端标记,检查了13例CAD和12例活体相关供体(LRD)肾脏同种异体移植后约1小时再灌注后石蜡包埋的针头活检标本的连续组织切片检测细胞凋亡的方法,并通过免疫组织化学检测关键促凋亡分子(Bax,Bak,肿瘤坏死因子受体[TNFR] -1,Fas和细胞色素c)的表达。结果:细胞凋亡主要在肾小管细胞中检测到,在CAD肾脏同种异体移植物中,每100个细胞的平均+/-标准偏差为6.8 +/- 2.2个凋亡细胞,而LRD中每100个细胞的平均+/-标准偏差为1.8 +/- 2.7个细胞(P <0.001)肾脏同种异体移植。肾脏同种异体移植的细胞凋亡率与冷缺血时间之间存在显着相关性(r = 0.86,P <0.001)。 Bax在100%的CAD中表达为17%的LRD肾移植(P <0.001),Bak在92%的CAD中表达为17%的LRD肾脏同种移植物(P <0.001),TNFR-1在100%的CAD中表达LRD肾异体移植的58%(P <0.05)。 Fas仅在少量样品中表达(23%的CAD和17%的LRD肾同种异体移植,P =不显着)。 Bax和Bak主要在凋亡细胞中表达。细胞色素c在LRD肾脏同种异体移植物中被检测为线粒体模式,但在CAD肾脏同种异体移植物中呈弥漫性胞质分布。结论:CAD肾脏移植物中的缺血-再灌注损伤与肾小管细胞凋亡的持续时间依赖性增加有关,至少部分地由线粒体途径的激活介导。

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