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Wnt信号通路的小分子抑制作用可消除地塞米松诱导的原代人小梁网细胞表型。

Small-molecule inhibition of Wnt signaling abrogates dexamethasone-induced phenotype of primary human trabecular meshwork cells.

作者信息

Ahadome Sarah D, Zhang Chi, Tannous Elizabeth, Shen James, Zheng Jie J

机构信息

Stein Eye Institute, Department of Ophthalmology, David Geffen School of Medicine and Molecular Biology Institute, University of California, Los Angeles, Los Angeles, CA 90095, USA.

ScienCell Research Laboratories, Carlsbad, CA 92011, USA.

出版信息

Exp Cell Res. 2017 Aug 1;357(1):116-123. doi: 10.1016/j.yexcr.2017.05.009. Epub 2017 May 17.

Abstract

Trabecular meshwork (TM) cells are the governing regulators of the TM structure. When the functionality of these cells is impaired, the structure of the TM is perturbed which often results in increased ocular hypertension. High intraocular pressure is the most significant risk factor for steroid-induced glaucoma. Dexamethasone (Dex)-induced phenotype of TM cells is widely utilized as a model system to gain insight into mechanisms underlying damaged TM in glaucoma. In this study, to assess the possible role of abnormal Wnt signaling in steroid-induced glaucoma, we analyzed the effects of small-molecule Wnt signaling modulators on Dex-induced expression extracellular matrix proteins of primary human TM cells. While Dex-treated TM cells exhibited increased collagen and fibronectin expression, we found that Wnt signaling inhibitor 3235-0367 suppressed these Dex-induced effects. We therefore propose that Wnt signaling plays an important role in Dex-mediated impairment of TM cell functions. Moreover, the use of small-molecule Wnt signaling inhibitors to treat TM cells may provide an opportunity of restoring TM tissue in steroid-induced glaucoma.

摘要

小梁网(TM)细胞是TM结构的主要调节因子。当这些细胞的功能受损时,TM的结构会受到干扰,这通常会导致眼压升高。高眼压是类固醇性青光眼最重要的危险因素。地塞米松(Dex)诱导的TM细胞表型被广泛用作模型系统,以深入了解青光眼患者TM受损的潜在机制。在本研究中,为了评估异常Wnt信号通路在类固醇性青光眼中的可能作用,我们分析了小分子Wnt信号调节剂对Dex诱导的原代人TM细胞细胞外基质蛋白表达的影响。虽然Dex处理的TM细胞中胶原蛋白和纤连蛋白表达增加,但我们发现Wnt信号抑制剂3235-0367可抑制这些Dex诱导的效应。因此,我们认为Wnt信号通路在Dex介导的TM细胞功能损害中起重要作用。此外,使用小分子Wnt信号抑制剂治疗TM细胞可能为恢复类固醇性青光眼中的TM组织提供机会。

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本文引用的文献

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