Sympathetic nervous system inhibition increases hepatic progenitors and reduces liver injury

祖细胞 内分泌学 内科学 生物 肝损伤 哌唑嗪 造血 肝星状细胞 干细胞 再生(生物学) 肝细胞学 肝再生 受体 细胞生物学 敌手 医学 肝脏代谢
作者
Jude A. Oben,Tania Roskams,Shiqi Yang,Huizhi Lin,Nicoletta Sinelli,Zhiping Li,Michael Torbenson,Jiawen Huang,Paul Guarino,Michel I. Kafrouni,Anna Mae Diehl
出处
期刊:Hepatology [Lippincott Williams & Wilkins]
卷期号:38 (3): 664-673 被引量:100
标识
DOI:10.1053/jhep.2003.50371
摘要

Recovery from liver damage might be enhanced by encouraging repopulation of the liver by endogenous hepatic progenitor cells. Oval cells are resident hepatic stem cells that promote liver regeneration and repair. Little is known about the mediators that regulate the accumulation of these cells in the liver. Parasympathetic nervous system inhibition reduces the number of oval cells in injured livers. The effect of sympathetic nervous system (SNS) inhibition on oval cell number is not known. Adrenergic inhibition mobilizes hematopoietic precursors into the circulation and has also been shown to promote liver regeneration. Thus, we hypothesized that SNS inhibition would promote hepatic accumulation of oval cells and reduce liver damage in mice fed antioxidant–depleted diets to induce liver injury. Our results confirm this hypothesis. Compared with control mice that were fed only the antioxidant–depleted diets, mice fed the same diets with prazosin (PRZ, an α–1 adrenoceptor antagonist) or 6–hydroxydopamine (6–OHDA, an agent that induces chemical sympathectomy) had significantly increased numbers of oval cells. Increased oval cell accumulation was accompanied by less hepatic necrosis and steatosis, lower serum aminotransferases, and greater liver and whole body weights. Neither PRZ nor 6–OHDA affected the expression of cytokines, growth factors, or growth factor receptors that are known to regulate progenitor cells. In conclusion, stress–related sympathetic activity modulates progenitor cell accumulation in damaged livers and SNS blockade with α–adrenoceptor antagonists enhances hepatic progenitor cell accumulation.
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