Hironaka K, Sakaida I, Matsumura Y, Kaino S, Miyamoto K, Okita K
School of Medicine, Yamaguchi University, Ube, Yamaguchi Prefecture, 755-8505, Japan.
Biochem Biophys Res Commun. 2000 Jan 7;267(1):290-5. doi: 10.1006/bbrc.1999.1910.
Hepatic fibrosis results from an imbalance between fibrogenesis and fibrolysis in the liver. It remains uninvestigated whether Kupffer cells produce matrix metalloproteinase-13 (MMP-13), which mainly hydrolyzes extracellular matrix (ECM). We sought to determine the role of Kupffer cells in fibrogenesis/fibrolysis. In vivo, we used the rat model of pig serum-induced liver fibrosis. A subset was treated with gadolinium chloride (GdCl(3)), which specifically acts on Kupffer cells. Administration of GdCl(3) remarkably decreased the hydroxyproline content of the liver and increased the expression of MMP-13 mRNA in the liver without a difference in procollagen type I and tissue inhibitors of metalloproteinase-1 (TIMP-1) mRNA expression on Northern blot analysis with the elimination of ED2-positive cells. In vitro, addition of GdCl(3) to isolated Kupffer cells showed increased type I collagen-degrading activity in a dose-dependent manner as well as MMP-13 mRNA expression on Northern blot analysis. It is concluded that Kupffer cells are a major source of MMP-13 and modulation of Kupffer cells by GdCl(3) prevents liver fibrosis with increased expression of MMP-13 mRNA and protein, whereas procollagen type I and TIMP-1 mRNA, which encode two major effectors of fibrogenesis, were unchanged. This is the first report showing that Kupffer cells produce interstitial collagenase (MMP-13) resulting in the reduction of ECM. This discovery may provide new insights into therapy for hepatic fibrosis.
肝纤维化是由肝脏中纤维生成与纤维溶解之间的失衡所致。库普弗细胞是否产生主要水解细胞外基质(ECM)的基质金属蛋白酶-13(MMP-13)仍未得到研究。我们试图确定库普弗细胞在纤维生成/纤维溶解中的作用。在体内,我们使用了猪血清诱导的肝纤维化大鼠模型。其中一部分用氯化钆(GdCl₃)处理,氯化钆特异性作用于库普弗细胞。给予GdCl₃可显著降低肝脏中羟脯氨酸含量,并增加肝脏中MMP-13 mRNA的表达,在Northern印迹分析中,I型前胶原和金属蛋白酶组织抑制剂-1(TIMP-1)mRNA表达无差异,同时ED2阳性细胞消失。在体外,向分离的库普弗细胞中添加GdCl₃,Northern印迹分析显示I型胶原降解活性呈剂量依赖性增加,且MMP-13 mRNA表达增加。结论是,库普弗细胞是MMP-13的主要来源,GdCl₃对库普弗细胞的调节可通过增加MMP-13 mRNA和蛋白的表达来预防肝纤维化,而编码纤维生成的两个主要效应因子的I型前胶原和TIMP-1 mRNA则未改变。这是首次报道库普弗细胞产生间质胶原酶(MMP-13)导致ECM减少。这一发现可能为肝纤维化的治疗提供新的见解。