Markiewski Maciej M, Mastellos Dimitrios, Tudoran Ruxandra, DeAngelis Robert A, Strey Christoph W, Franchini Silvia, Wetsel Rick A, Erdei Anna, Lambris John D
Department of Pathology and Laboratory Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
J Immunol. 2004 Jul 15;173(2):747-54. doi: 10.4049/jimmunol.173.2.747.
Although the complement system has been implicated in liver regeneration after toxic injury and partial hepatectomy, the mechanism or mechanisms through which it participates in these processes remains ill-defined. In this study, we demonstrate that complement activation products (C3a, C3b/iC3b) are generated in the serum of experimental mice after CCl(4) injection and that complement activation is required for normal liver regeneration. Decomplementation by cobra venom factor resulted in impaired entry of hepatocytes into S phase of the cell cycle. In addition, livers from C3-deficient (C3(-/-)) mice showed similarly impaired proliferation of hepatocytes, along with delayed kinetics of both hepatocyte hyperplasia and removal of injured liver parenchyma. Restoration of hepatocyte proliferative capabilities of C3(-/-) mice through C3a reconstitution, as well as the impaired regeneration of C3a receptor-deficient mice, demonstrated that C3a promotes liver cell proliferation via the C3a receptor. These findings, together with data showing two waves of complement activation, indicate that C3 activation is a pivotal mechanism for liver regeneration after CCl(4) injury, which fulfills multiple roles; C3a generated early after toxin injection is relevant during the priming of hepatocytes, whereas C3 activation at later times after CCl(4) treatment contributes to the clearance of injured tissue.
尽管补体系统已被认为参与了毒性损伤和部分肝切除术后的肝脏再生过程,但其参与这些过程的具体机制仍不明确。在本研究中,我们证明在四氯化碳注射后的实验小鼠血清中会产生补体激活产物(C3a、C3b/iC3b),并且正常肝脏再生需要补体激活。用眼镜蛇毒因子进行去补体作用导致肝细胞进入细胞周期S期受损。此外,C3缺陷(C3(-/-))小鼠的肝脏显示出类似的肝细胞增殖受损,同时肝细胞增生和受损肝实质清除的动力学延迟。通过C3a重建恢复C3(-/-)小鼠的肝细胞增殖能力,以及C3a受体缺陷小鼠的再生受损,表明C3a通过C3a受体促进肝细胞增殖。这些发现,连同显示补体激活有两个波峰的数据,表明C3激活是四氯化碳损伤后肝脏再生的关键机制,它发挥多种作用;毒素注射后早期产生的C3a在肝细胞启动过程中起作用,而四氯化碳处理后后期的C3激活有助于清除受损组织。