Response of sinusoidal mouse liver cells to choline-deficient ethionine-supplemented diet.

Elke Ueberham, Jan Böttger, Uwe Ueberham, Jens Grosche, Rolf Gebhardt
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引用次数: 19

Abstract

Background: Proliferation of oval cells, the bipotent precursor cells of the liver, requires impeded proliferation and loss of hepatocytes as well as a specific micro-environment, provided by adjacent sinusoidal cells of liver. Despite their immense importance for triggering the oval cell response, cells of hepatic sinusoids are rarely investigated. To elucidate the response of sinusoidal liver cells we have employed a choline-deficient, ethionine-supplemented (CDE) diet, a common method for inducing an oval cell response in rodent liver. We have utilised selected expression markers commonly used in the past for phenotypic discrimination of oval cells and sinusoidal cells: cytokeratin, E-cadherin and M2-pyruvate kinase for oval cells; and glial fibrillary acidic protein (GFAP) was used for hepatic stellate cells (HSCs).

Results: CDE diet leads to an activation of all cells of the hepatic sinusoid in the mouse liver. Beside oval cells, also HSCs and Kupffer cells proliferate. The entire fraction of proliferating cells in mouse liver as well as endothelial cells and cholangiocytes express M2-pyruvate kinase. Concomitantly, GFAP, long considered a unique marker of quiescent HSCs was upregulated in activated HSCs and expressed also in cholangiocytes and oval cells.

Conclusions: Our results point to an important role of all types of sinusoidal cells in regeneration from CDE induced liver damage and call for utmost caution in using traditional marker for identifying specific cell types. Thus, M2-pyruvate kinase should no longer be used for estimating the oval cell response in mouse liver. CDE diet leads to activation of GFAP positive HSCs in the pericentral zone of liver lobulus. In the periportal zone the detection of GFAP in biliary cells and oval cells, calls other cell types as progenitors of hepatocytes into question under CDE diet conditions.

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肝窦型小鼠肝细胞对胆碱缺乏的蛋氨酸补充饮食的反应。
背景:卵形细胞是肝脏的双能前体细胞,其增殖需要肝细胞的增殖和损失受到阻碍,也需要肝窦细胞提供特定的微环境。尽管肝窦细胞在引发卵圆细胞反应方面具有重要意义,但它们很少被研究。为了阐明窦型肝细胞的反应,我们采用了缺乏胆碱、补充乙硫氨酸(CDE)的饮食,这是一种在啮齿动物肝脏中诱导卵形细胞反应的常用方法。我们选择了过去常用的用于卵形细胞和正弦细胞表型区分的表达标记:卵形细胞的细胞角蛋白、e -钙粘蛋白和m2 -丙酮酸激酶;肝星状细胞(hsc)采用胶质原纤维酸性蛋白(GFAP)。结果:CDE饮食导致小鼠肝脏所有肝窦细胞的活化。除卵形细胞外,造血干细胞和库普弗细胞也有增殖。小鼠肝脏增殖细胞的全部部分以及内皮细胞和胆管细胞均表达m2 -丙酮酸激酶。与此同时,长期以来被认为是静止hsc的独特标记物的GFAP在活化的hsc中上调,并在胆管细胞和卵圆细胞中表达。结论:我们的研究结果表明,所有类型的正弦细胞在CDE诱导的肝损伤再生中发挥重要作用,并呼吁在使用传统标记物识别特定细胞类型时要格外谨慎。因此,m2 -丙酮酸激酶不应再用于估计小鼠肝脏卵圆细胞的反应。CDE饮食导致肝小叶中心周围区GFAP阳性hsc活化。在门静脉周围区胆道细胞和卵形细胞中检测到GFAP,使得在CDE饮食条件下作为肝细胞祖细胞的其他细胞类型受到质疑。
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