二肽基肽酶IV缺陷突变大鼠肝细胞祖细胞分化的证明。

S H Sigal, P Rajvanshi, L M Reid, S Gupta
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引用次数: 0

摘要

成人肝脏中祖细胞或干细胞的存在及其在肿瘤发生中的潜在作用是尚未解决的问题。肝细胞祖细胞的研究一直受到限制,缺乏方便的体内系统,允许明确的细胞定位和证明分化为肝细胞。为了建立体内祖细胞生物测定方法,将早期(E14)胎儿Fischer 344大鼠肝母细胞移植到二肽基肽酶IV (DPPIV)活性缺乏的同系断奶大鼠脾脏中。DPPIV表达可证实移植肝母细胞的供体状态。肝母细胞的定位是通过使用异位部位和断奶受体来促进的,这很容易识别非常少量的移植细胞。胚胎大鼠肝母细胞在移植后5天内获得葡萄糖-6-磷酸酶活性,证明其沿着肝细胞谱系进行细胞分化。对先前肝细胞祖细胞的移植研究和局部微环境在诱导分化中的作用的批判性回顾表明,这种新的生物测定方法应该有助于祖细胞的分析。
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Demonstration of differentiation in hepatocyte progenitor cells using dipeptidyl peptidase IV deficient mutant rats.

The presence of progenitor or stem cells in the adult liver and their potential roles in oncogenesis are unresolved issues. The study of hepatocyte progenitor cells has been limited by a lack of convenient in vivo systems allowing unequivocal cell localization and demonstration of differentiation into hepatocytes. To develop an in vivo progenitor bioassay, early (E14) fetal Fischer 344 rat hepatoblasts were transplanted into the spleen of syngeneic, weaning rats deficient in dipeptidyl peptidase IV (DPPIV) activity. The donor status of transplanted hepatoblasts was demonstrated by DPPIV expression. Localization of hepatoblasts was facilitated by the use of an ectopic site, as well as weanling recipients, which readily allowed identification of very small numbers of transplanted cells. Fetal rat hepatoblasts were demonstrated to undergo cellular differentiation along the hepatocyte lineage by acquiring glucose-6-phosphatase activity within 5 d of transplantation. A critical review of previous transplantation studies of hepatocyte progenitor cells and the role of the local microenvironment at inducing differentiation indicates that this novel bioassay should facilitate analysis of progenitor cells.

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Demonstration of differentiation in hepatocyte progenitor cells using dipeptidyl peptidase IV deficient mutant rats. The tyrosine phosphorylation of a p72syk-like protein in activated murine resident peritoneal macrophages. Inhibition of cleavage by restriction endonucleases due to modifications induced in SV40 DNA by methyl methanesulfonate. Fast inducible repair of microinjected UV-irradiated SV40 DNA in monkey kidney cells. NADPH-diaphorase activity in piglet intestinal mucosa.
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