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大鼠肝脏发育过程中白蛋白和甲胎蛋白生成的动力学

Kinetics of albumin- and alpha-fetoprotein-production during rat liver development.

作者信息

Elmaouhoub Abderrahim, Dudas József, Ramadori Giuliano

机构信息

Department of Internal Medicine, Section of Gastroenterology and Endocrinology, Georg-August-University, Goettingen, Germany.

出版信息

Histochem Cell Biol. 2007 Nov;128(5):431-43. doi: 10.1007/s00418-007-0338-y. Epub 2007 Sep 19.

Abstract

Synthesis of most of the plasma proteins is one of the main functions of the hepatocytes. Albumin synthesis is quantitatively the most abundant. In the present study we investigated albumin- and alpha-fetoprotein-gene-expression, and the function of the secretory apparatus during rat liver development. To this purpose we used the method of radioactive biosynthetic labeling of newly synthesized albumin and alpha-fetoprotein (AFP) to monitor the secretory capacity of endodermal cells derived from ventral foregut region (embryonic day 10, E10), and of embryonic and fetal hepatoblasts. Synthesis and secretion of albumin and AFP were already detected in the low numbered ventral foregut endodermal cells; fibrinogen synthesis was detectable in the E12 hepatoblasts, which were in higher number. The whole secretory machinery was functional from the earliest stages of liver development, and the speed of secretion was comparable with that of the adult hepatocytes. There was almost 4-fold increase of hepatoblasts cell volume in fetal stage compared with embryonic stage. The model used suggests that the hepatocyte secretory apparatus is already functional before the emergence of the liver bud. This is the first comparative report to analyze the hepatocyte secretory function, cell proliferation and cell volume during liver development.

摘要

大多数血浆蛋白的合成是肝细胞的主要功能之一。白蛋白合成在数量上最为丰富。在本研究中,我们调查了大鼠肝脏发育过程中白蛋白和甲胎蛋白基因的表达,以及分泌装置的功能。为此,我们采用放射性生物合成标记新合成的白蛋白和甲胎蛋白(AFP)的方法,来监测源自前肠腹侧区域(胚胎第10天,E10)的内胚层细胞以及胚胎和成体肝母细胞的分泌能力。在数量较少的前肠腹侧内胚层细胞中已检测到白蛋白和AFP的合成与分泌;在数量较多的E12肝母细胞中可检测到纤维蛋白原的合成。整个分泌机制从肝脏发育的最早阶段就开始发挥作用,分泌速度与成年肝细胞相当。与胚胎期相比,胎儿期肝母细胞的细胞体积增加了近4倍。所采用的模型表明,在肝芽出现之前,肝细胞分泌装置就已经开始发挥功能。这是第一份分析肝脏发育过程中肝细胞分泌功能、细胞增殖和细胞体积的比较报告。

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