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Hair follicle and interfollicular epidermal stem cells make varying contributions to wound regeneration

机译:毛囊和小泡间表皮干细胞对伤口再生有不同的作用

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Upon wounding, multiple stem cell populations in the hair follicle (HF) and interfollicular epidermis (IFE) converge at the site of injury. Although these cells can contribute permanently to the regenerating epithelium, it remains unclear whether these contributions vary among cells originating from diverse compartments in the skin. By comparing the fates of several keratinocyte lineages, we observed here an initial decrease in both HF- and IFE-derived cells within the transient acanthotic layers of the regenerating epithelium. At the same time, the relative abundance of early-arriving IFE-derived cells specifically in the wound basal layer declined as later-arriving HF-derived cells entered the site of injury. Although laggard bulge-derived cells were typically constrained at the regenerative periphery, these cells persisted in the wound basal layer. Finally, suppressing Notch enabled IFE-derived cells to out-compete HF-derived cells. Taken together, these findings indicate that IFE-, HF- and bulge-derived cells make distinct contributions to regeneration over time. Furthermore, we speculate that extrinsic, non-genetic factors such as spatial constraint, distance from the wound, and basal versus suprabasal position may largely determine whether a cell ultimately persists.
机译:受伤后,毛囊(HF)和小泡间表皮(IFE)中的多个干细胞聚集在受伤部位。尽管这些细胞可以永久地促进再生上皮,但是尚不清楚这些贡献是否在源自皮肤不同隔室的细胞之间有所不同。通过比较几种角质形成细胞谱系的命运,我们在这里观察到再生上皮的瞬时棘突层内HF和IFE衍生细胞的初始减少。同时,早期到达IFE的细胞在伤口基底层中的相对丰度下降,因为后来到达HF的细胞进入损伤部位。尽管落后的凸起来源的细胞通常被限制在再生边缘,但这些细胞仍保留在伤口基底层。最后,抑制Notch使IFE衍生的细胞能够胜过HF衍生的细胞。综上所述,这些发现表明,随着时间的流逝,IFE,HF和凸起的细胞对再生做出了独特的贡献。此外,我们推测外在的非遗传因素,例如空间限制,距伤口的距离以及基底与基底上位置之间的关系,可能在很大程度上决定了细胞是否最终持续存在。

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