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CD133阳性的真皮乳头细胞是促进毛囊形成的主要驱动因素。

CD133-positive dermal papilla cells are a major driver in promoting hair follicle formation.

作者信息

Zhao Huangying, Zhou Linli, Siegfried Lindsey, Supp Dorothy, Boyce Steven, Andl Thomas, Zhang Yuhang

机构信息

University of Cincinnati College of Pharmacy.

University of Cincinnati Medical Center.

出版信息

Res Sq. 2025 Apr 23:rs.3.rs-5054470. doi: 10.21203/rs.3.rs-5054470/v1.

Abstract

A major contributing factor to the failure of cell-based human hair follicle (HF) engineering is our inability to cultivate highly specialized, inductive mesenchymal fibroblasts, which reside in a unique niche at the HF base, called the dermal papilla (DP). We and other groups have discovered a unique DP fibroblast subpopulation that can be identified by the cell surface marker CD133. However, the biological difference between CD133-positive (CD133+) and CD133-negative (CD133-) DP cells remains unknown. Using a newly developed double fluorescent transgenic mouse strain, we isolated CD133 + and CD133- DP cells from mouse anagen HFs. In monolayer culture, both DP populations gradually lost expression of the anagen DP signature gene, versican. When maintained in three-dimensional spheroid culture, versican expression was restored in both CD133 + and CD133- DP cells. Importantly, CD133 + DP spheroids appeared more compact, showed stronger alkaline phosphatase staining (AP), and expressed higher levels of DP signature genes. In skin reconstitution assays, mice grafted with CD133 + DP spheroids grew more hairs in healed wounds than those grafted with CD133- DP spheroids. The data underscore the importance of CD133 + DP cells as a driver of HF formation, which may present a unique opportunity to improve the use of human DP cells in tissue-engineered skin substitutes (TESS).

摘要

基于细胞的人毛囊(HF)工程失败的一个主要促成因素是我们无法培养高度专业化的、具有诱导性的间充质成纤维细胞,这些细胞位于HF底部一个独特的微环境中,称为真皮乳头(DP)。我们和其他研究小组发现了一种独特的DP成纤维细胞亚群,可通过细胞表面标志物CD133进行识别。然而,CD133阳性(CD133+)和CD133阴性(CD133-)DP细胞之间的生物学差异仍然未知。利用新开发的双荧光转基因小鼠品系,我们从小鼠生长期HF中分离出CD133+和CD133-DP细胞。在单层培养中,两个DP群体逐渐失去生长期DP标志性基因versican的表达。当维持在三维球体培养中时,versican表达在CD133+和CD133-DP细胞中均得以恢复。重要的是,CD133+DP球体显得更紧凑,碱性磷酸酶染色(AP)更强,并且表达更高水平的DP标志性基因。在皮肤重建试验中,移植CD133+DP球体的小鼠在愈合伤口处生长的毛发比移植CD133-DP球体的小鼠更多。这些数据强调了CD133+DP细胞作为HF形成驱动因素的重要性,这可能为改善人DP细胞在组织工程皮肤替代物(TESS)中的应用提供独特机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1da/12045375/53b6b1fad07a/nihpp-rs5054470v1-f0001.jpg

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