Zhao Huangying, Zhou Linli, Siegfried Lindsey, Supp Dorothy, Boyce Steven, Andl Thomas, Zhang Yuhang
University of Cincinnati College of Pharmacy.
University of Cincinnati Medical Center.
Res Sq. 2025 Apr 23:rs.3.rs-5054470. doi: 10.21203/rs.3.rs-5054470/v1.
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).
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。