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Size-Dependent in Vivo Growth Potential of Adult Rat Hepatocytes

机译:大小依赖的成年大鼠肝细胞体内生长潜力

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摘要

The present study was performed to determine whether hepatocytes show a size-dependent growth in vivo using as a growth assay system, a retrorsine/partial hepatectomy model of dipeptidyl dipeptidase IV-deficient (DPPIV-) mutant Fischer rats. Nearly pure populations of small hepatocytes (SHs) and parenchymal hepatocytes (PHs) were prepared from DPPIV+ rats. The same number of these SHs and PHs was transplanted into the liver of retrorsine-treated and two-thirds partial hepatectomized DPPIV- rats. At 21 days after transplantation, colonies derived from donor hepatocytes were detected as DPPIV+ cells by enzyme histochemistry. SHs were approximately three times more proliferative than PHs (673 ± 25 cells/colony versus 226 ± 10 cells/colony, mean ± SE). SHs were subfractionated by a fluorescence-activated cell sorter into SH-R2s and SH-R3s. SH-R3s showed a lower extent of granularity and autofluorescence, and a smaller size than SH-R2s that showed characteristics similar to PHs. The growth potential of SH-R3s assayed as above was approximately three times higher than that of SH-R2s (1,101 ± 46 cells/colony versus 341 ± 13 cells). These results indicate that the in vivo growth potential of hepatocytes is heterogeneous and is correlated with their size, and the extent of their granularity and autofluorescence.
机译:本研究旨在通过使用生长测定系统,二肽基二肽酶的逆向/部分肝切除模型来确定肝细胞在体内是否表现出大小依赖性的生长; IV缺陷型(DPPIV -)突变型Fischer大鼠。从DPPIV + 大鼠中制备了近乎纯的小肝细胞(ss)和实质肝细胞(ss) 种群。将相同数量的这些SHs 和PHs移植到经逆转录治疗的 和三分之二的经部分肝切除的DPPIV -大鼠的肝脏中。移植后第21天 ,通过酶组织化学将源自供体肝细胞 的菌落检测为DPPIV + 细胞。 SHs 的增殖能力是PH的三倍(673 ±25个细胞/菌落,而226±10个细胞/菌落,平均值 ±SE)。通过荧光激活的细胞 分选器将SH细分为SH-R2和SH-R3。与具有类似PHs特性的SH-R2s 相比,SH-R3s的粒度和自发荧光程度更低,尺寸更小。按上述方法测定的 SH-R3s的生长潜力是SH-R2s的约3倍(sup> )(1,101±46个细胞/菌落与341 ±13个单元格)。这些结果表明,肝细胞的体内 生长潜力是异质的,并且与 与其大小,粒度和自发荧光程度相关。

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  • 来源
    《American Journal of Pathology》 |2001年第1期|97-105|共9页
  • 作者单位

    From the Hiroshima Tissue Regeneration Project,Hiroshima Prefecture Joint-Research Project for Regional Intensive, Japan Science and Technology Corporation, Hiroshima Prefectural Institute of Industrial Science and Technology, Higashihiroshima|the Department of Second Surgery,School of Medicine, Hiroshima University, Higashihiroshima;

    From the Hiroshima Tissue Regeneration Project,Hiroshima Prefecture Joint-Research Project for Regional Intensive, Japan Science and Technology Corporation, Hiroshima Prefectural Institute of Industrial Science and Technology, Higashihiroshima;

    the Department of Second Surgery,School of Medicine, Hiroshima University, Higashihiroshima;

    From the Hiroshima Tissue Regeneration Project,Hiroshima Prefecture Joint-Research Project for Regional Intensive, Japan Science and Technology Corporation, Hiroshima Prefectural Institute of Industrial Science and Technology, Higashihiroshima|and the Developmental Biology Laboratory,Department of Biological Science, Graduate School of Science, Hiroshima University, Higashihiroshima, Hiroshima, Japan;

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