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在小鼠年龄相关性睑板腺功能障碍(ARMGD)中不存在导管过度角化。

Absence of ductal hyper-keratinization in mouse age-related meibomian gland dysfunction (ARMGD).

作者信息

Parfitt Geraint J, Xie Yilu, Geyfman Mikhail, Brown Donald J, Jester James V

机构信息

Gavin Herbert Eye Institute, University of California, Irvine, Irvine, CA 92697-4390, USA.

出版信息

Aging (Albany NY). 2013 Nov;5(11):825-34. doi: 10.18632/aging.100615.

Abstract

Meibomian gland dysfunction (MGD) is frequent with aging and is the primary cause of dry eye disease, the most prevalent ocular complaint. We used a novel 3-D reconstruction technique, immunofluorescent computed tomography (ICT), to characterize meibomian gland keratinization and cell proliferation in a mouse model of age-related meibomian gland dysfunction (ARMGD). To visualize the changes associated with ARMGD, 5-month and 2-year old mouse eyelids were 3-D reconstructed by ICT using antibodies to cytokeratin (CK) 1, 5 and 6 and the proliferation marker Ki67. We quantified total gland, ductal and lipid volume from the reconstructions, observing a dramatic decrease in old glands. In young glands, proliferative ductules suggest a potential site of acinar progenitors that were found to be largely absent in aged, atrophic glands. In the aged mouse, we observed an anterior migration of the mucocutaneous junction (MCJ) and an absence of hyper-keratinization with meibomian gland atrophy. Thus, we propose that changes in the MCJ and glandular atrophy through a loss of meibocyte progenitors are most likely responsible for ARMGD and not ductal hyper-keratinization and gland obstruction.

摘要

睑板腺功能障碍(MGD)随着年龄增长而常见,是干眼疾病的主要原因,干眼疾病是最普遍的眼部疾病。我们使用一种新型的三维重建技术,免疫荧光计算机断层扫描(ICT),来表征在与年龄相关的睑板腺功能障碍(ARMGD)小鼠模型中的睑板腺角质化和细胞增殖。为了可视化与ARMGD相关的变化,使用针对细胞角蛋白(CK)1、5和6以及增殖标志物Ki67的抗体,通过ICT对5个月和2岁小鼠的眼睑进行三维重建。我们从重建中量化了总腺体、导管和脂质体积,观察到老年腺体显著减少。在年轻腺体中,增殖性小导管提示腺泡祖细胞的一个潜在部位,而在老年萎缩性腺体中发现该部位基本不存在。在老年小鼠中,我们观察到黏膜皮肤交界处(MCJ)向前迁移,且睑板腺萎缩时无过度角化。因此,我们提出MCJ的变化和通过睑板腺细胞祖细胞丧失导致的腺体萎缩最有可能是ARMGD的原因,而非导管过度角化和腺体阻塞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1d2/3868725/d0375a0d051b/aging-05-825-g001.jpg

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