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巨噬细胞衍生的 Hedgehog 配体促进人曼氏血吸虫病的纤维生成和血管生成反应。

Macrophage-derived Hedgehog ligands promotes fibrogenic and angiogenic responses in human schistosomiasis mansoni.

机构信息

Division of Gastroenterology, Department of Medicine, Duke University Medical Center, Durham, NC, USA.

出版信息

Liver Int. 2013 Jan;33(1):149-61. doi: 10.1111/liv.12016. Epub 2012 Nov 1.

Abstract

BACKGROUND

Schistosomiasis mansoni is a major cause of portal fibrosis and portal hypertension. The Hedgehog pathway regulates fibrogenic repair in some types of liver injury.

AIMS

Determine if Hedgehog pathway activation occurs during fibrosis progression in schistosomiasis and to determine if macrophage-related mechanisms are involved.

METHODS

Immunohistochemistry was used to characterize the cells that generate and respond to Hedgehog ligands in 28 liver biopsies from patients with different grades of schistosomiasis fibrosis staged by ultrasound. Cultured macrophages (RAW264.7 and primary rat Kupffer cells) and primary rat liver sinusoidal endothelial cells (LSEC) were treated with schistosome egg antigen (SEA) and evaluated using qRT-PCR. Inhibition of the Hedgehog pathway was used to investigate its role in alternative activation of macrophages (M2) and vascular tube formation.

RESULTS

Patients with schistosomiasis expressed more ligands (Shh and Ihh) and target genes (Patched and Gli2) than healthy individuals. Activated LSEC and myofibroblasts were Hedgehog responsive [Gli2(+)] and accumulated in parallel with fibrosis stage (P < 0.05). Double IHC for Ihh/CD68 showed that Ihh(+) cells were macrophages. In vitro studies demonstrated that SEA-stimulated macrophages to express Ihh and Shh mRNA (P < 0.05). Conditioned media from such macrophages induced luciferase production by Shh-LightII cells (P < 0.001) and Hedgehog inhibitors blocked this effect (P < 0.001). SEA-treated macrophages also up-regulated their own expression of M2 markers, and Hh pathway inhibitors abrogated this response (P < 0.01). Inhibition of the Hedgehog pathway in LSEC blocked SEA-induced migration and tube formation.

CONCLUSION

SEA stimulates liver macrophages to produce Hh ligands, which promote alternative activation of macrophages, fibrogenesis and vascular remodelling in schistosomiasis.

摘要

背景

曼氏血吸虫病是门静脉纤维化和门静脉高压的主要原因。Hedgehog 途径调节某些类型肝损伤中的纤维生成修复。

目的

确定 Hedgehog 途径在血吸虫病纤维化进展过程中是否被激活,并确定是否涉及巨噬细胞相关机制。

方法

使用免疫组织化学方法对 28 例不同血吸虫病纤维化分期的肝活检组织中的 Hedgehog 配体产生和反应细胞进行特征描述,这些患者的纤维化分期是通过超声检查确定的。用血吸虫卵抗原(SEA)处理培养的巨噬细胞(RAW264.7 和原代大鼠枯否细胞)和原代大鼠肝窦内皮细胞(LSEC),并通过 qRT-PCR 进行评估。抑制 Hedgehog 途径,以研究其在巨噬细胞(M2)和血管管腔形成的替代激活中的作用。

结果

与健康个体相比,患有血吸虫病的患者表达更多的配体(Shh 和 Ihh)和靶基因(Patched 和 Gli2)。活化的 LSEC 和肌成纤维细胞对 Hedgehog 有反应[Gli2(+)],并与纤维化分期平行积累(P < 0.05)。Ihh/CD68 的双重免疫组化显示 Ihh(+)细胞为巨噬细胞。体外研究表明,SEA 刺激巨噬细胞表达 Ihh 和 Shh mRNA(P < 0.05)。来自这些巨噬细胞的条件培养基诱导 Shh-LightII 细胞产生荧光素酶(P < 0.001),Hedgehog 抑制剂阻断了这种效应(P < 0.001)。SEA 处理的巨噬细胞也上调了自身 M2 标志物的表达,而 Hh 途径抑制剂阻断了这种反应(P < 0.01)。在 LSEC 中抑制 Hedgehog 途径阻断了 SEA 诱导的迁移和管腔形成。

结论

SEA 刺激肝巨噬细胞产生 Hh 配体,促进巨噬细胞的替代激活、血吸虫病中的纤维生成和血管重塑。

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