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干眼症中黏蛋白和糖蛋白表达的改变

Altered Mucin and Glycoprotein Expression in Dry Eye Disease.

作者信息

Stephens Denise N, McNamara Nancy A

机构信息

*PhD †OD, PhD Francis I. Proctor Foundation, University of California, San Francisco, San Francisco, California (both authors); Departments of Anatomy and Ophthalmology, University of California, San Francisco, San Francisco, California (NAMc); and School of Optometry and Vision Science Graduate Group, University of California, Berkeley, California (NAMc).

出版信息

Optom Vis Sci. 2015 Sep;92(9):931-8. doi: 10.1097/OPX.0000000000000664.

Abstract

PURPOSE

Mucins are among the many important constituents of a healthy tear film. Mucins secreted and/or associated with conjunctival goblet cells, ocular mucosal epithelial cells, and the lacrimal gland must work together to create a stable tear film. Although many studies have explored the mechanism(s) whereby mucins maintain and protect the ocular surface, the effects of dry eye on the structure and function of ocular mucins are unclear. Here, we summarize current findings regarding ocular mucins and how they are altered in dry eye.

METHODS

We performed a literature review of studies exploring the expression of mucins produced and/or associated with tissues that comprise the lacrimal functional unit and how they are altered in dry eye. We also summarize new insights on the immune-mediated effects of aqueous tear deficiency on ocular surface mucins that we discovered using a mouse model of dry eye.

RESULTS

Although consistent decreases in MUC5AC and altered expression of membrane-bound mucins have been noted in both Sjögren and non-Sjögren dry eye, many reports of altered mucins in dry eye are contradictory. Mechanistic studies, including our own, suggest that changes in the glycosylation of mucins rather than the proteins themselves may occur as the direct result of local inflammation induced by proinflammatory mediators, such as interleukin-1.

CONCLUSIONS

Altered expression of ocular mucins in dry eye varies considerably from study to study, likely attributed to inherent difficulties in analyzing small-volume tear samples, as well as differences in tear collection methods and disease severity in dry eye cohorts. To better define the functional role of ocular mucin glycosylation in the pathogenesis of dry eye disease, we propose genomic and proteomic studies along with biological pathway analysis to reveal novel avenues for exploration.

摘要

目的

粘蛋白是健康泪膜的众多重要组成成分之一。由结膜杯状细胞、眼黏膜上皮细胞和泪腺分泌和/或与之相关的粘蛋白必须协同作用以形成稳定的泪膜。尽管许多研究探讨了粘蛋白维持和保护眼表的机制,但干眼对眼内粘蛋白结构和功能的影响尚不清楚。在此,我们总结了关于眼内粘蛋白及其在干眼中如何变化的当前研究结果。

方法

我们对探索由泪液功能单位组成的组织产生和/或与之相关的粘蛋白的表达及其在干眼中如何变化的研究进行了文献综述。我们还总结了我们使用干眼小鼠模型发现的关于水样泪液缺乏对眼表粘蛋白的免疫介导作用的新见解。

结果

尽管在干燥综合征和非干燥综合征干眼中均已注意到MUC5AC持续减少以及膜结合粘蛋白表达改变,但许多关于干眼中粘蛋白改变的报道相互矛盾。包括我们自己的研究在内的机制研究表明,粘蛋白糖基化的变化而非蛋白质本身的变化可能是由促炎介质(如白细胞介素 - 1)诱导的局部炎症的直接结果。

结论

干眼中眼内粘蛋白表达的改变在不同研究中差异很大,这可能归因于分析小体积泪液样本存在固有困难,以及干眼队列中泪液收集方法和疾病严重程度的差异。为了更好地确定眼内粘蛋白糖基化在干眼病发病机制中的功能作用,我们建议进行基因组和蛋白质组学研究以及生物途径分析,以揭示新的探索途径。

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