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Stem Cells from Human Exfoliated Deciduous teeth Promote Hair Regeneration in Mouse

机译:来自人类脱落乳牙的干细胞促进小鼠毛发再生

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摘要

Stem cells in different types may interact with each other to maintain homeostasis or growth and the interactions are complicated and extensive. There is increasing evidence that mesenchymal-epithelial interactions in early morphogenesis stages of both tooth and hair follicles show many similarities. In order to explore whether stem cells from one tissue could interact with cells from another tissue, a series of experiments were carried out. Here we successfully extracted and identified stem cells from human exfoliated deciduous teeth (SHED) of 8–12 years old kids, and then found that SHED could promote hair regeneration in a mouse model. In vitro, SHED shortened the hair regeneration cycle and promoted the proliferation and aggregation of dermal cells. In vivo, when SHED and skin cells of C57 mice were subcutaneously co-transplanted to nude mice, more hair was formed than skin cells without SHED. To further explore the molecular mechanism, epidermal and dermal cells were freshly extracted and co-cultured with SHED. Then several signaling molecules in hair follicle regeneration were detected and we found that the expression of Sonic Hedgehog (Shh) and Glioma-associated oncogene 1 (Gli1) was up-regulated. It seems that SHED may boost the prosperity of hairs by increase Shh/Gli1 pathway, which brings new perspectives in tissue engineering and damaged tissue repairing.
机译:不同类型的干细胞可能会相互相互作用以维持体内平衡或生长,并且相互作用复杂而广泛。越来越多的证据表明,牙齿和毛囊的早期形态发生阶段的间充质-上皮相互作用显示出许多相似之处。为了探索来自一个组织的干细胞是否可以与来自另一个组织的细胞相互作用,进行了一系列实验。在这里,我们成功地从 8-12 岁儿童的人类剥落乳牙 (SHED) 中提取和鉴定了干细胞,然后发现 SHED 可以促进小鼠模型中的头发再生。在体外,SHED 缩短了头发再生周期,促进了真皮细胞的增殖和聚集。在体内,当 SHED 和 C57 小鼠的皮肤细胞皮下共移植到裸鼠身上时,形成的毛发比没有 SHED 的皮肤细胞多。为进一步探究其分子机制,新鲜提取表皮细胞和真皮细胞,并与 SHED 共培养。然后检测毛囊再生中的几个信号分子,我们发现 Sonic Hedgehog (Shh) 和胶质瘤相关癌基因 1 (Gli1) 的表达上调。似乎 SHED 可能通过增加 Shh/Gli1 通路来促进头发的繁荣,这为组织工程和受损组织修复带来了新的视角。

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