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维替泊芬对Hippo信号通路的抑制作用可降低缺氧条件下大鼠毛囊神经嵴干细胞的增殖能力和干性。

Inhibition of the Hippo pathway by verteporfin reduces the proliferation and stemness of rat hair follicle neural crest stem cells under hypoxia.

作者信息

Liu Weihai, Chen Suhua, Chen Xin, Xue Lixiang, Wang Yan, Yang Jun

机构信息

Department of Neurosurgery Peking University Third Hospital Beijing China.

Center for Precision Neurosurgery and Oncology of Peking University Health Science Centre Beijing China.

出版信息

FASEB Bioadv. 2025 Feb 11;7(3):e70000. doi: 10.1096/fba.2025-00025. eCollection 2025 Mar.

Abstract

Hair follicle neural crest stem cells reside in the bulge region of the outer root sheath of hair follicles, originate from the ectoderm, and have multidirectional differentiation potential, making them ideal candidates for tissue engineering applications. These cells mainly reside in a hypoxic microenvironment that favors the maintenance of stemness. Recently, many studies have elucidated the involvement of the Hippo pathway in the regulation of stem cell fate. However, few studies have investigated whether the Hippo signaling pathway regulates the growth of hair follicle neural crest stem cells in hypoxic environments. In the present study, we investigated the role of the Hippo pathway in the regulation of hair follicle neural crest stem cells under hypoxic conditions. We identified neural crest-derived stem cells from single-cell RNA-seq data of skin organoids in a public database, and reported that the Hippo pathway was activated in the cell population. Hair follicle neural crest stem cells were isolated from rat hair follicles and cultured under hypoxic (3% oxygen) and normoxic (20% oxygen) conditions. Cell viability was assessed via the CCK8 assay. The expression levels of several key genes, including , , , , , , and , were evaluated via quantitative real-time PCR, after which we treated the cells with verteporfin, a small molecule inhibitor of the Hippo pathway. Changes in the subcellular localization of the hair follicle neural crest stem cell-specific marker SOX10 were assessed via immunofluorescence. Western blotting was used to analyze the expression levels of proteins associated with stemness and hypoxia responses, including HIF2α, SOX10, OCT4, NANOG, SOX2, and KLF4. The results showed that hypoxic conditions facilitated the maintenance of stemness in hair follicle neural crest stem cells, including the promotion of proliferation and the expression of multipotential markers. Inhibition of the Hippo pathway results in a significant decrease in cell proliferation. The protein expression of HIF2α, SOX10, OCT4, NANOG, SOX2, and KLF4 was also reduced under hypoxic conditions.

摘要

毛囊神经嵴干细胞位于毛囊外根鞘的隆突区,起源于外胚层,具有多向分化潜能,使其成为组织工程应用的理想候选细胞。这些细胞主要存在于有利于维持干性的低氧微环境中。最近,许多研究阐明了Hippo信号通路参与干细胞命运的调控。然而,很少有研究探讨Hippo信号通路是否在低氧环境中调节毛囊神经嵴干细胞的生长。在本研究中,我们研究了Hippo信号通路在低氧条件下对毛囊神经嵴干细胞的调控作用。我们从一个公共数据库中的皮肤类器官单细胞RNA测序数据中鉴定出神经嵴来源的干细胞,并报告Hippo信号通路在该细胞群体中被激活。从大鼠毛囊中分离出毛囊神经嵴干细胞,并在低氧(3%氧气)和常氧(20%氧气)条件下培养。通过CCK8法评估细胞活力。通过定量实时PCR评估包括、、、、、和在内的几个关键基因的表达水平,然后用Hippo信号通路的小分子抑制剂维替泊芬处理细胞。通过免疫荧光评估毛囊神经嵴干细胞特异性标志物SOX10的亚细胞定位变化。蛋白质印迹法用于分析与干性和低氧反应相关的蛋白质表达水平,包括HIF2α、SOX10、OCT4、NANOG、SOX2和KLF4。结果表明,低氧条件有助于维持毛囊神经嵴干细胞的干性,包括促进增殖和多能性标志物的表达。抑制Hippo信号通路导致细胞增殖显著降低。在低氧条件下,HIF2α、SOX10、OCT4、NANOG、SOX2和KLF4的蛋白质表达也降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d011/11886604/fabe43ba9691/FBA2-7-e70000-g001.jpg

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