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角膜干细胞综述。

Corneal stem cells in review.

作者信息

Daniels J T, Dart J K, Tuft S J, Khaw P T

机构信息

Epithelial Repair and Regeneration Group, Wound Healing Research Unit, Department of Pathology, Institute of Ophthalmology; and Moorfields Eye Hospital NHS Trust, London, United Kingdom.

出版信息

Wound Repair Regen. 2001 Nov-Dec;9(6):483-94. doi: 10.1046/j.1524-475x.2001.00483.x.

Abstract

The cornea provides the eye with protection and the refractive properties essential for visual acuity. The transparent epithelium is highly specialized with basal and stratified squamous cells that are renewed throughout life from a stem cell population. The stem cells are thought to reside at the corneal limbus and may be maintained by a variety of intrinsic and extrinsic factors such as the local environment, survival factors, and cytokines. A number of markers have been localized to the limbus in an attempt to identify stem cells; however, definite stem cell identification remains elusive. During homeostasis and following injury to the corneal epithelium, the limbal stem cells divide to produce daughter transient amplifying cells that proliferate, migrate, and differentiate to replace lost cells. However, this cannot occur if the stem cell population is depleted. Limbal stem cell deficiency then results in corneal re-epithelialization by the neighboring conjunctiva, causing pain, poor vision, and even blindness. This review will focus on corneal epithelial stem cells in ocular surface repair and regeneration. The current knowledge of stem cell biology in the corneal epithelium, clinical consequences of stem cell deficiency, and therapeutic strategies aimed at reversing stem cell deficiency will be discussed.

摘要

角膜为眼睛提供保护以及对视力至关重要的屈光特性。透明的上皮组织高度特化,由基底细胞和复层鳞状细胞组成,这些细胞终生通过干细胞群体进行更新。干细胞被认为存在于角膜缘,并且可能由多种内在和外在因素维持,如局部环境、存活因子和细胞因子。为了识别干细胞,已经在角膜缘定位了许多标志物;然而,明确的干细胞识别仍然难以实现。在角膜上皮处于稳态以及受到损伤时,角膜缘干细胞分裂产生子代短暂增殖细胞,这些细胞增殖、迁移并分化以替代丢失的细胞。然而,如果干细胞群体耗尽,这一过程就无法发生。角膜缘干细胞缺乏会导致邻近结膜对角膜进行重新上皮化,从而引起疼痛、视力不佳甚至失明。本综述将聚焦于眼表修复和再生中的角膜上皮干细胞。将讨论角膜上皮干细胞生物学的当前知识、干细胞缺乏的临床后果以及旨在逆转干细胞缺乏的治疗策略。

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