Department of Ophthalmology, University Hospital Erlangen, Friedrich-Alexander-University Erlangen-Nürnberg, Schwabachanlage 6, D-91054 Erlangen, Germany.
Int J Mol Sci. 2022 Mar 29;23(7):3756. doi: 10.3390/ijms23073756.
Given their vital role in the homeostasis of the limbal stem cell niche, limbal melanocytes have emerged as promising candidates for tissue engineering applications. This study aimed to isolate and characterize a population of melanocyte precursors in the limbal stroma, compared with melanocytes originating from the limbal epithelium, using magnetic-activated cell sorting (MACS) with positive (CD117/c-Kit microbeads) or negative (CD326/EpCAM or anti-fibroblast microbeads) selection approaches. Both approaches enabled fast and easy isolation and cultivation of pure limbal epithelial and stromal melanocyte populations, which differed in phenotype and gene expression, but exhibited similar functional properties regarding proliferative potential, pigmentation, and support of clonal growth of limbal epithelial stem/progenitor cells (LEPCs). In both melanocyte populations, limbus-specific matrix (laminin 511-E8) and soluble factors (LEPC-derived conditioned medium) stimulated melanocyte adhesion, dendrite formation, melanogenesis, and expression of genes involved in UV protection and immune regulation. The findings provided not only a novel protocol for the enrichment of pure melanocyte populations from limbal tissue applying easy-to-use MACS technology, but also identified a population of stromal melanocyte precursors, which may serve as a reservoir for the replacement of damaged epithelial melanocytes and an alternative resource for tissue engineering applications.
鉴于它们在角膜缘干细胞龛稳态中的重要作用,角膜缘黑素细胞已成为组织工程应用中很有前途的候选细胞。本研究旨在通过磁激活细胞分选(MACS),利用阳性(CD117/c-Kit 微珠)或阴性(CD326/EpCAM 或抗成纤维细胞微珠)选择方法,从角膜缘基质中分离和鉴定与来源于角膜缘上皮的黑素细胞不同的黑素细胞前体细胞群。这两种方法都能够快速、轻松地分离和培养纯角膜缘上皮和基质黑素细胞群体,这些群体在表型和基因表达上存在差异,但在增殖潜力、色素沉着和支持角膜缘上皮干细胞/祖细胞(LEPC)克隆生长方面表现出相似的功能特性。在这两种黑素细胞群体中,角膜缘特异性基质(层粘连蛋白 511-E8)和可溶性因子(LEPC 衍生的条件培养基)均可刺激黑素细胞黏附、树突形成、黑素生成以及与 UV 保护和免疫调节相关基因的表达。这些发现不仅提供了一种从角膜缘组织中富集纯黑素细胞群体的新方案,该方案应用了易于使用的 MACS 技术,还鉴定出了一群基质黑素细胞前体细胞,它们可能作为受损上皮黑素细胞替代物的储备,并为组织工程应用提供了另一种资源。