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Apoptosis of rat liver in cold preservation with custom-designed KYL solution

Apoptosis of rat liver in cold preservation with custom-designed KYL solution
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摘要 BACKGROUND: A suitable perfusate is very important in reducing various problems in liver preservation, prolonging the time of organ preservation and enhancing the quality of donor tissue. University of Wisconsin (UW) solution is the most successful solution for preserving multiple organs at present, but it has many shortcomings. We set out to develop a new liver preservation solution (KYL solution) and study its effects on apoptosis in rat liver undergoing cold preservation. METHODS: Using non-circulated isolated perfused rat liver (IPRL), we randomly preserved Sprague-Dawley rat livers for 0, 4, 8, 16, 24, and 48 hours with KYL solution or UW solution. The effects were assessed by measuring the content of free radicals in Krebs-Henseleit solution and the intracellular calcium content of hepatocytes, assessing hepatocellular apoptosis and related-gene expression, and observing the morphological changes in liver. To evaluate the protection by KYL and UW solutions in rat liver perfusion and preservation, we chosed normal saline for negative comparison. RESULTS: The intracellular calcium content of the liver preserved in KYL solution was less than that preserved in UW solution. At every different period of preservation, the malonaldehyde and superoxide dismutase content in Krebs-Henseleit solution, the percentage of apoptotic cells and the expression patterns of apoptosis-related-genes were similar in livers preserved in KYL and UW solutions. Morphological changes in the two groups were almost the same. The variables in both groups were better than those of livers preserved in normal saline. Both KYL and UW solutions protected rat liver from ischemia-reperfusion injury. CONCLUSIONS: KYL solution is superior to UW solution in preventing calcium overload. More severe hepatocyte damage may appear in the KYL group than in the UW group and the effect of KYL solution on apoptosis in rat liver preservation is similar to that of UW solution. BACKGROUND: A suitable perfusate is very important in reducing various problems in liver preservation, prolonging the time of organ preservation and enhancing the quality of donor tissue. University of Wisconsin (UW) solution is the most successful solution for preserving multiple organs at present, but it has many shortcomings. We set out to develop a new liver preservation solution (KYL solution) and study its effects on apoptosis in rat liver undergoing cold preservation. METHODS: Using non-circulated isolated perfused rat liver (IPRL), we randomly preserved Sprague-Dawley rat livers for 0, 4, 8, 16, 24, and 48 hours with KYL solution or UW solution. The effects were assessed by measuring the content of free radicals in Krebs-Henseleit solution and the intracellular calcium content of hepatocytes, assessing hepatocellular apoptosis and related-gene expression, and observing the morphological changes in liver. To evaluate the protection by KYL and UW solutions in rat liver perfusion and preservation, we chosed normal saline for negative comparison. RESULTS: The intracellular calcium content of the liver preserved in KYL solution was less than that preserved in UW solution. At every different period of preservation, the malonaldehyde and superoxide dismutase content in Krebs-Henseleit solution, the percentage of apoptotic cells and the expression patterns of apoptosis-related-genes were similar in livers preserved in KYL and UW solutions. Morphological changes in the two groups were almost the same. The variables in both groups were better than those of livers preserved in normal saline. Both KYL and UW solutions protected rat liver from ischemia-reperfusion injury. CONCLUSIONS: KYL solution is superior to UW solution in preventing calcium overload. More severe hepatocyte damage may appear in the KYL group than in the UW group and the effect of KYL solution on apoptosis in rat liver preservation is similar to that of UW solution.
出处 《Hepatobiliary & Pancreatic Diseases International》 SCIE CAS 2007年第5期497-503,共7页 国际肝胆胰疾病杂志(英文版)
关键词 LIVER APOPTOSIS organ preservation solution liver apoptosis organ preservation solution
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  • 1KaiSun,Zhi-SuLiu,QuanSun.Role of mitochondria in cell apoptosis during hepatic ischemia-reperfusion injury and protective effect of ischemic postconditioning[J].World Journal of Gastroenterology,2004,10(13):1934-1938. 被引量:86
  • 2Heather HARTIG,Ivan DZHAGALOV,David DRAPER.The role of apoptosis in the development and function of T lymphocytes[J].Cell Research,2005,15(10):749-769. 被引量:16
  • 3刘书筠,王孝铭,马丽英.大鼠离体心脏缺氧/复氧不同时相OH的生成及RAS对其影响[J].中国病理生理杂志,1996,12(5):487-490. 被引量:4
  • 4[1]Trieb K, Eberl T, Steger M, et al. Apoptosis is involved in endothelial cells damage during preservation and influenced by organ storage solutions [J]. Transplant Proc, 1997; 29(1-2)∶416
  • 5[2]Momburg F, Neefjes JJ, Hammerling GJ. Peptide selection by MHC-encoded TAP transperters [J]. Curr Opin In Immunol, 1994; 6(1)∶32
  • 6[3]Eastman A. Apoptosis: a product of programmed and unprogrammed cell death [J]. Toxico Appl Pharmacol, 1993; 121(1)∶160
  • 7[4]Shimamatsu K, Wanless IR. Role of ischemia in causing apoptosis, atrophy, and nodular hyperplasia in human liver [J]. Hepatology, 1997; 262)∶343
  • 8[5]Li Y, Chopp M, Jiang N, et al. Induction of DNA fragmentation after 10 to 120 minutes of focal cerebral ischemia in rats [J]. Stroke, 1995; 26(7)∶1251
  • 9[6]MacManus JP, Hill IE, Preston E, et al. Differences in DNA fragmentation following transiet cerebral or decapitation ischemia in rats [J]. J Cereb Blood Flow Matab, 1995; 15(3)∶728
  • 10[7]Fliss H. Accelerated apoptosis in reperfused myocardium: friend of foe [J]? Basic Res Cardiol, 1998; 932)∶90

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