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四氯化碳诱导的肝硬化中单核吞噬细胞系统的反应性

Mononuclear phagocyte system responsiveness in CCl4-induced liver cirrhosis.

作者信息

Mayanski D N, Schwartz Y S, Kutina S N, Zubakhin A A, Mayanskaya N N, Tsyrendorjiev D D

机构信息

Institute for Clinical and Experimental Medicine, Academy of Medical Sciences, Novosibirsk, Russia.

出版信息

Int J Exp Pathol. 1993 Jun;74(3):229-36.

Abstract

In rats with CCl4-induced liver cirrhosis, a twofold decrease of blood clearance rate and a fourfold reduction in number of Kupffer cells taking up colloidal carbon particles has been demonstrated. Zymosan stimulation does not lead to granuloma-like structures in the liver of CCl4-cirrhotic rats. In cirrhotic rats, unlike controls, the cathepsin D activity of liver tissue is very little increased by zymosan treatment and there is virtually no increase in collagenolytic activity. The increase in PGE content in cirrhotic rat liver after prodigiosan stimulation was 2.5 times less than in stimulated control animals. In cirrhotic rats, the IL-1 producing capacity of blood monocytes in vitro in response to lipopolysaccharide drops almost fivefold. The total count of bone marrow-derived myeloid colonies in cirrhotic zymosan-stimulated animals was reduced by 1.5-fold whereas in control animals zymosan induced a 1.8-fold increase in the number of myeloid colonies. The number, uptake and nitroblue tetrazolium-reducing capacities of lung, spleen, peritoneal and bone marrow macrophages in animals with liver cirrhosis were only slightly increased in response to zymosan as compared to control animals. The low response of extrahepatic macrophages to stimuli in cirrhotic animals is thought to be due to their premobilization during the development of cirrhosis.

摘要

在四氯化碳诱导的肝硬化大鼠中,已证实其血液清除率降低了两倍,摄取胶体碳颗粒的库普弗细胞数量减少了四倍。酵母聚糖刺激不会在四氯化碳肝硬化大鼠的肝脏中导致肉芽肿样结构。在肝硬化大鼠中,与对照组不同,酵母聚糖处理后肝组织的组织蛋白酶D活性几乎没有增加,并且胶原olytic活性几乎没有增加。灵菌红素刺激后,肝硬化大鼠肝脏中前列腺素E含量的增加比受刺激的对照动物少2.5倍。在肝硬化大鼠中,体外血液单核细胞对脂多糖反应产生白细胞介素-1的能力下降了近五倍。肝硬化酵母聚糖刺激动物的骨髓来源的髓样集落总数减少了1.5倍,而在对照动物中,酵母聚糖诱导髓样集落数量增加了1.8倍。与对照动物相比,肝硬化动物的肺、脾、腹膜和骨髓巨噬细胞的数量、摄取能力和硝基蓝四唑还原能力仅因酵母聚糖刺激而略有增加。肝硬化动物肝外巨噬细胞对刺激的低反应被认为是由于它们在肝硬化发展过程中预先动员所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3076/2002164/3aaf93a7e82b/ijexpath00015-0012-a.jpg

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