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Hepatocyte Transplantation into Diseased Mouse Liver : Kinetics of Parenchymal Repopulation and Identification of the Proliferative Capacity of Tetraploid and Octaploid Hepatocytes

机译:肝细胞移植到患病小鼠肝脏中:实质性重塑的动力学和四倍体和八倍体肝细胞增殖能力的鉴定

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摘要

To examine the process of liver repopulation by transplanted hepatocytes, we developed transgenic mice carrying a mouse major urinary protein-urokinase-type plasminogen activator fusion transgene. Expression of this transgene induced diffuse hepatocellular damage beginning at 3 weeks of age, and homozygous mice supported up to 97% parenchymal repopulation by healthy donor hepatocytes transplanted into the spleen. Using this transplantation model, we determined that 1) a mean of 21% of splenically injected hepatocytes engraft in liver parenchyma; 2) a mean of 6.6% of splenically injected hepatocytes (or one-third of engrafted cells) can give rise to proliferating hepatocyte foci; 3) transplanted cells in proliferating foci display an initial cell-doubling time of 28 hours, and focus growth continues through a mean of 12 cell doublings; 4) hepatocytes isolated from young and aged adult mice display similar focus repopulation kinetics; 5) the extent of repopulated parenchyma remains stable throughout the life of the recipient mouse; and 6) tetraploid and octaploid hepatocytes can support clonal proliferation.
机译:为了检查移植肝细胞在肝脏中的繁殖过程,我们开发了携带小鼠主要尿 蛋白-尿激酶型纤溶酶原激活物融合转基因的转基因小鼠。 此转基因的表达在3周龄时开始引起弥漫性肝细胞损伤 ,纯合子小鼠通过健康的供体肝细胞将 支持的实质再填充率高达97%。 >移植到脾脏中。使用该移植模型,我们确定1)肝实质中平均有21%脾脏注射的 肝细胞植入。 2)平均有6.6%脾脏注射的sups肝细胞(或移植细胞的三分之一)可使sups增生的肝细胞灶。 3)增殖灶中的移植细胞 显示初始细胞倍增时间 为28小时,并且焦点生长持续平均12 细胞倍增; 4)从年轻和成年 成年小鼠中分离出的肝细胞具有相似的聚焦种群动力学; 5)重新填充的薄壁组织细胞的 程度在受体小鼠的 整个生命期内保持稳定;和6)四倍体和八倍体 肝细胞可以支持克隆增殖。

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  • 来源
    《American Journal of Pathology》 |2000年第6期|1963-1974|共12页
  • 作者单位

    From the Department of Pathobiological Sciences,School of Veterinary Medicine, University of Wisconsin-Madison, Madison, Wisconsin;

    and the Division of Developmental Biology,Children’s Hospital Research Foundation, University of Cincinnati, Cincinnati, Ohio;

    From the Department of Pathobiological Sciences,School of Veterinary Medicine, University of Wisconsin-Madison, Madison, Wisconsin;

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