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首页> 外文期刊>Endocrinology >Intersection of Chemokine and TSH Receptor Pathways in Human Fibrocytes: Emergence of CXCL-12/CXCR4 Cross Talk Potentially Relevant to Thyroid-Associated Ophthalmopathy
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Intersection of Chemokine and TSH Receptor Pathways in Human Fibrocytes: Emergence of CXCL-12/CXCR4 Cross Talk Potentially Relevant to Thyroid-Associated Ophthalmopathy

机译:趋化因子和TSH受体通路在人类纤维细胞的相交:可能与甲状腺相关性眼病相关的CXCL-12 / CXCR4串扰的出现。

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Fibrocytes are monocyte progenitor cells that have been implicated in normal and pathological tissue remodeling. Among the prominent chemokine receptors expressed by these cells is CXC motif receptor 4 (CXCR4), which, with its cognate ligand CXCL motif ligand 12 (CXCL-12), directs fibrocytes to sites of fibrosis. Fibrocytes have been implicated in the pathogenesis of thyroid-associated ophthalmopathy, the ocular manifestation of Graves' disease (GD), by virtue of their unique accumulation as CD34(+) orbital fibroblasts (OFs). Fibrocytes also express high levels of functional TSH receptor (TSHR). Here, we determined CXCL-12 and CXCR4 expression in fibrocytes and GD-OF and whether that pathway interacts with TSHR. CXCL-12 is highly expressed in GD-OF, whereas CXCR4 levels are dramatically higher in fibrocytes. Levels of these proteins are differentially regulated by TSH in a cell type-specific manner. Further, CXCL-12 enhances the induction by TSH of IL-6 in fibrocytes but attenuates this induction in GD-OF. In contrast, in pure CD34(+) OF, the interplay between TSH and CXCL-12 reverts to that observed in fibrocytes. Our results indicate that CXCL-12 enhances TSH actions in fibrocytes but inhibits them in GD-OF, a dichotomy imposed by factors emanating from CD34(-) OF. They also suggest a potentially important modulatory role for CD34(-) OF in determining the factors that influence pathological TSHR signaling in the TAO orbit.
机译:纤维细胞是单核细胞祖细胞,与正常和病理组织重塑有关。在这些细胞表达的主要趋化因子受体中,有CXC基序受体4(CXCR4),CXC基序受体4与它的同源配体CXCL基序配体12(CXCL-12)一起,将纤维细胞导向纤维化部位。纤维细胞由于其作为CD34(+)眼眶成纤维细胞(OFs)的独特积累,与甲状腺相关性眼病(Graves病(GD)的眼部表现)的发病机制有关。纤维细胞还表达高水平的功能性TSH受体(TSHR)。在这里,我们确定了纤维细胞和GD-OF中CXCL-12和CXCR4的表达以及该途径是否与TSHR相互作用。 CXCL-12在GD-OF中高度表达,而CXCR4在纤维细胞中的含量则高得多。 TSH以细胞类型特异性方式差异调节这些蛋白质的水平。此外,CXCL-12增强了TSH对纤维细胞中IL-6的诱导,但减弱了在GD-OF中的诱导。相反,在纯CD34(+)OF中,TSH和CXCL-12之间的相互作用恢复为在纤维细胞中观察到的相互作用。我们的结果表明,CXCL-12增强了纤维细胞中的TSH作用,但在GD-OF中抑制了它们的作用,这是由CD34(-)OF产生的因素造成的。他们还暗示了CD34(-)OF在确定影响TAO轨道中病理TSHR信号传导的因素方面可能具有重要的调节作用。

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