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Pathological Characteristics of Liver Allografts from Donation after Brain Death Followed by Cardiac Death in Pigs

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【作者】 叶晖王东平张传钊张龙娟王皓晨李焯辉陈祯张涛蔡常洁鞠卫强马毅郭志勇何晓顺

【Author】 Hui YE;Dong-ping WANG;Chuan-zhao ZHANG;Long-juan ZHANG;Hao-chen WANG;Zhuo-hui LI;Zhen CHEN;Tao ZHANG;Chang-jie CAI;Wei-qiang JU;Yi MA;Zhi-yong GUO;Xiao-shun HE;Organ Transplant Center,The First Affiliated Hospital,Sun Yat-sen University;Laboratory of Surgery,The First Affiliated Hospital,Sun Yat-sen University;Department of Anesthesiology,The First Affiliated Hospital,Sun Yat-sen University;Surgical Intensive Care Unit,The First Affiliated Hospital,Sun Yat-sen University;

【机构】 Organ Transplant Center,The First Affiliated Hospital,Sun Yat-sen UniversityLaboratory of Surgery,The First Affiliated Hospital,Sun Yat-sen UniversityDepartment of Anesthesiology,The First Affiliated Hospital,Sun Yat-sen UniversitySurgical Intensive Care Unit,The First Affiliated Hospital,Sun Yat-sen University

【摘要】 Donation after brain death followed by circulatory death(DBCD) is a unique practice in China. The aim of this study was to define the pathologic characteristics of DBCD liver allografts in a porcine model. Fifteen male pigs(25–30 kg) were allocated randomly into donation after brain death(DBD), donation after circulatory death(DCD) and DBCD groups. Brain death was induced by augmenting intracranial pressure. Circulatory death was induced by withdrawal of life support in DBCD group and by venous injection of 40 mL 10% potassium chloride in DCD group. The donor livers were perfused in situ and kept in cold storage for 4 h. Liver tissue and common bile duct samples were collected for hematoxylin and eosin staining, TUNEL testing and electron microscopic examination. Spot necrosis was found in hepatic parenchyma of DBD and DBCD groups, while a large area of necrosis was shown in DCD group. The apoptosis rate of hepatocytes in DBD [(0.56±0.30)%] and DBCD [(0.50 ± 0.11)%] groups was much lower than that in DCD group [(3.78±0.33)%](P<0.05). And there was no significant difference between DBD group and DBCD group(P>0.05)). The structures of bile duct were intact in both DBD and DBCD groups, while the biliary epithelium was totally damaged in DCD group. Under electron microscope, the DBD hepatocytes were characterized by intact cell membrane, well-organized endoplasmic reticulum, mild mitochondria edema and abundant glycogens. Broken cell membrane, mild inflammatory cell infiltration and sinusoidal epithelium edema, as well as reduced glycogen volume, were found in the DBCD hepatocytes. The DCD hepatocytes had more profound cell organelle injury and much less glycogen storage. In conclusion, the preservation injury of DBCD liver allografts is much less severe than that of un-controlled DCD, but more severe than that of DBD liver allografts under electron microscope, which might reflect post-transplant liver function to some extent.

【Abstract】 Donation after brain death followed by circulatory death(DBCD) is a unique practice in China. The aim of this study was to define the pathologic characteristics of DBCD liver allografts in a porcine model. Fifteen male pigs(25–30 kg) were allocated randomly into donation after brain death(DBD), donation after circulatory death(DCD) and DBCD groups. Brain death was induced by augmenting intracranial pressure. Circulatory death was induced by withdrawal of life support in DBCD group and by venous injection of 40 mL 10% potassium chloride in DCD group. The donor livers were perfused in situ and kept in cold storage for 4 h. Liver tissue and common bile duct samples were collected for hematoxylin and eosin staining, TUNEL testing and electron microscopic examination. Spot necrosis was found in hepatic parenchyma of DBD and DBCD groups, while a large area of necrosis was shown in DCD group. The apoptosis rate of hepatocytes in DBD [(0.56±0.30)%] and DBCD [(0.50 ± 0.11)%] groups was much lower than that in DCD group [(3.78±0.33)%](P<0.05). And there was no significant difference between DBD group and DBCD group(P>0.05)). The structures of bile duct were intact in both DBD and DBCD groups, while the biliary epithelium was totally damaged in DCD group. Under electron microscope, the DBD hepatocytes were characterized by intact cell membrane, well-organized endoplasmic reticulum, mild mitochondria edema and abundant glycogens. Broken cell membrane, mild inflammatory cell infiltration and sinusoidal epithelium edema, as well as reduced glycogen volume, were found in the DBCD hepatocytes. The DCD hepatocytes had more profound cell organelle injury and much less glycogen storage. In conclusion, the preservation injury of DBCD liver allografts is much less severe than that of un-controlled DCD, but more severe than that of DBD liver allografts under electron microscope, which might reflect post-transplant liver function to some extent.

【基金】 supported by grants from the National High Technology Research and Development Program of China(863 Program)(No.2012AA021008);the Special Fund for Science Research by Ministry of Health(No.201302009);the Key Clinical Specialty Construction Project of National Health and Family Planning Commission of the People’s Republic of China;the Science and Technology Planning Key Clinical Project of Guangdong Province(No.2011A030400005);the Key Laboratory Construction Project of Guangdong Province
  • 【文献出处】 Journal of Huazhong University of Science and Technology(Medical Sciences) ,华中科技大学学报(医学英德文版) , 编辑部邮箱 ,2014年05期
  • 【分类号】R617
  • 【被引频次】6
  • 【下载频次】36
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