Proteomic Analysis of Differentially Expressed Proteins in Rat Liver Allografts Developed Acute Rejection

被引:13
|
作者
Cheng, J.
Zhou, L.
Jiang, J. W.
Qin, Y. S.
Xie, H. Y.
Feng, X. W.
Gao, F.
Zheng, S. S. [1 ]
机构
[1] Zhejiang Univ, Sch Med, Affiliated Hosp 1,Key Lab Organ Transplantat, Div Hepatobiliary Pancreat Surg,Dept Surg, Hangzhou 310003, Zhejiang, Peoples R China
关键词
Orthotopic liver transplantation; Acute rejection; Proteomics; Gel electrophoresis; two-dimensional; ENERGY-METABOLISM; HEPATOCYTES; INTERLEUKIN-1-BETA; DYSREGULATION; OXIDATION; OXIDASE; GEL;
D O I
10.1159/000264602
中图分类号
R61 [外科手术学];
学科分类号
摘要
Background: Acute rejection (AR) after liver transplantation is a cell-mediated immune response that takes place within the allograft and results in graft dysfunction and failure, but the molecular mechanisms about hepatocyte dysfunction remain poorly understood. Here we characterized global protein expression changes in liver allograft during AR. Methods: The effect of an alloantigen-dependent immunological response was evaluated by syngeneic and allogeneic rat orthotopic liver transplantation (OLT). Using a combination of two-dimensional gel electrophoresis and mass spectrometry, we identified 18 differentially expressed proteins in AR allograft compared with matched tolerance allograft. Serum chemistry and allograft histology were determined. Results: Allogeneic OLT recipients exhibited elevated plasma levels of liver injury markers, progressive portal and venous inflammation and cellular infiltration in liver allograft compared with syngeneic OLT. 18 protein expressions altered by AR play important roles in metabolism, oxidative stress defense, signal transduction, biotransformation and transport. Decreased expression of protein disulfide isomerase in AR allograft was confirmed by Western blotting and immunohistochemistry. Conclusions: This study uncovered new mechanistic insights into graft dysfunction in AR of liver allograft. Several significantly altered protein expressions act coordinately in hepatocyte dysfunction by depressed energy, enhanced oxidative stress-induced molecular damage and restrained biotransformation. The present findings may open new avenues for the understanding and prevention of graft dysfunction and failure during AR. Copyright (C) 2009 S. Karger AG, Basel
引用
收藏
页码:43 / 51
页数:9
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