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体内肝血窦细胞功能的定量分析。

Quantification of sinusoidal cell function in vivo.

作者信息

Shiratori Y, Tananka M, Kawase T, Shiina S, Komatsu Y, Omata M

机构信息

Department of Internal Medicine (II), Faculty of Medicine, University of Tokyo, Japan.

出版信息

Semin Liver Dis. 1993 Feb;13(1):39-49. doi: 10.1055/s-2007-1007336.

Abstract

Although the clearance and distribution of ligand molecules in circulation represent the function of hepatic sinusoidal cells, these mechanisms revealed a network that is more intricate than would at first seem, since several receptors are common to not only one type of cell, but also to two or three types of cells in the liver. In the case of latex particles in which their uptake by a particular cell type seems to be determined by their size, sinusoidal endothelial cells are able to internalize particles up to 0.23 microns under physiologic conditions, in vivo, and larger particles are taken up by Kupffer cells. However, when the phagocytic function of Kupffer cells is impaired by frog virus 3 or alcohol, endothelial cells have been found to take up particles larger than 1 micron in diameter after the injection of an excess amount of latex particles. Endothelial cells would thus constitute a second line of defense in the liver in that they remove foreign materials from the blood when Kupffer cell phagocytic function is totally disturbed. This potential role may not, however, be fully expressed under physiologic conditions when Kupffer cells are active in clearing foreign substance from the circulation. The functions of liver sinusoidal cells are varied and complex and these cells can be regarded as "a sinusoidal cell unit." This cellular interaction must be taken into account for any quantitative analysis.

摘要

尽管配体分子在循环中的清除和分布体现了肝窦状细胞的功能,但这些机制所揭示的网络比初看起来更为复杂,因为几种受体不仅为一种细胞类型所共有,也为肝脏中的两种或三种细胞类型所共有。就乳胶颗粒而言,其被特定细胞类型摄取似乎取决于颗粒大小,在生理条件下的体内实验中,肝窦内皮细胞能够内化直径达0.23微米的颗粒,而较大颗粒则被库普弗细胞摄取。然而,当库普弗细胞的吞噬功能因蛙病毒3或酒精而受损时,在注射过量乳胶颗粒后,已发现内皮细胞能够摄取直径大于1微米的颗粒。因此,内皮细胞在肝脏中构成了第二道防线,即当库普弗细胞的吞噬功能完全受到干扰时,它们从血液中清除异物。然而,在生理条件下,当库普弗细胞积极从循环中清除异物时,这种潜在作用可能无法充分发挥。肝窦状细胞的功能多样且复杂,这些细胞可被视为“一个窦状细胞单元”。在进行任何定量分析时都必须考虑这种细胞间的相互作用。

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