角膜缘干细胞:身份、发育起源和治疗潜力。

Q1 Biochemistry, Genetics and Molecular Biology
Gabriel Gonzalez, Yuzuru Sasamoto, Bruce R Ksander, Markus H Frank, Natasha Y Frank
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引用次数: 80

摘要

角膜是我们观察世界的窗口,我们的视力很大程度上依赖于角膜的清晰度和完整性。它的上皮是再生最快的哺乳动物组织之一,在大约1-2周的时间内进行完全的更新。这种强大而有效的再生能力依赖于位于角膜缘的干细胞的功能,角膜缘是角膜和结膜之间的边界。角膜缘干细胞(LSC)是一种具有增殖能力的静止细胞群,位于角膜缘基底上皮内的细胞生态位内。除了LSC,这个生态位还包括各种细胞群,如角膜缘间质成纤维细胞、黑素细胞和免疫细胞以及基底膜,所有这些都是LSC维持和LSC驱动再生所必需的。LSC生态位的组成部分具有不同的发育起源,直到最近,这一事实还阻碍了分子定义LSC的精确鉴定。最近基于ABCB5表达的LSC分离的成功,以及LSC群体在LSC缺乏的临床前体内模型移植后长期角膜修复的能力,强调了纯LSC配方用于临床治疗的巨大潜力。进一步的研究,包括LSC发育起源的遗传谱系追踪,将进一步提高我们对这一关键细胞群及其生态位的理解,对再生医学具有重要意义。生物工程学报,2018,33(4):693 - 693。doi: 10.1002 / wdev.303本文分类如下:成体干细胞,组织更新和再生>干细胞和疾病成体干细胞,组织更新和再生>组织干细胞和壁龛成体干细胞,组织更新和再生>再生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Limbal stem cells: identity, developmental origin, and therapeutic potential.

Limbal stem cells: identity, developmental origin, and therapeutic potential.

Limbal stem cells: identity, developmental origin, and therapeutic potential.

The cornea is our window to the world and our vision is critically dependent on corneal clarity and integrity. Its epithelium represents one of the most rapidly regenerating mammalian tissues, undergoing full-turnover over the course of approximately 1-2 weeks. This robust and efficient regenerative capacity is dependent on the function of stem cells residing in the limbus, a structure marking the border between the cornea and the conjunctiva. Limbal stem cells (LSC) represent a quiescent cell population with proliferative capacity residing in the basal epithelial layer of the limbus within a cellular niche. In addition to LSC, this niche consists of various cell populations such as limbal stromal fibroblasts, melanocytes and immune cells as well as a basement membrane, all of which are essential for LSC maintenance and LSC-driven regeneration. The LSC niche's components are of diverse developmental origin, a fact that had, until recently, prevented precise identification of molecularly defined LSC. The recent success in prospective LSC isolation based on ABCB5 expression and the capacity of this LSC population for long-term corneal restoration following transplantation in preclinical in vivo models of LSC deficiency underline the considerable potential of pure LSC formulations for clinical therapy. Additional studies, including genetic lineage tracing of the developmental origin of LSC will further improve our understanding of this critical cell population and its niche, with important implications for regenerative medicine. WIREs Dev Biol 2018, 7:e303. doi: 10.1002/wdev.303 This article is categorized under: Adult Stem Cells, Tissue Renewal, and Regeneration > Stem Cells and Disease Adult Stem Cells, Tissue Renewal, and Regeneration > Tissue Stem Cells and Niches Adult Stem Cells, Tissue Renewal, and Regeneration > Regeneration.

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期刊介绍: Developmental biology is concerned with the fundamental question of how a single cell, the fertilized egg, ultimately produces a complex, fully patterned adult organism. This problem is studied on many different biological levels, from the molecular to the organismal. Developed in association with the Society for Developmental Biology, WIREs Developmental Biology will provide a unique interdisciplinary forum dedicated to fostering excellence in research and education and communicating key advances in this important field. The collaborative and integrative ethos of the WIREs model will facilitate connections to related disciplines such as genetics, systems biology, bioengineering, and psychology. The topical coverage of WIREs Developmental Biology includes: Establishment of Spatial and Temporal Patterns; Gene Expression and Transcriptional Hierarchies; Signaling Pathways; Early Embryonic Development; Invertebrate Organogenesis; Vertebrate Organogenesis; Nervous System Development; Birth Defects; Adult Stem Cells, Tissue Renewal and Regeneration; Cell Types and Issues Specific to Plants; Comparative Development and Evolution; and Technologies.
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