从球形到发芽:微环境调节促进毛囊类器官形态发生在三维培养。

IF 3.3 3区 生物学 Q3 CELL BIOLOGY
Ling Xiao, Yunfang Tang, Feifei Zhang, Jiaping Zhang
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引用次数: 0

摘要

秃发是一个全球性的治疗挑战,挑战是在秃发区域实现毛囊新生,而不是重新激活休止期毛囊来增强头发密度。成功的体外培养毛囊类器官(HFOs)和有效提高HFOs的出芽率是解决这一问题的关键进展。虽然R-spondin1 (RSPO1)在体内具有激活静止毛囊干细胞和增强毛发密度的功效,但其提高HFOs发芽效率的能力仍有待阐明。本研究利用RSPO1调控HFOs生长微环境,提高HFOs的出芽率,并探讨其作用机制。采用碱性磷酸酶(ALP)法检测hfo诱导的真皮乳头细胞(DPCs)的诱导情况,采用qPCR/WB/IF法分析rspo1介导的毛发再生基因/蛋白调控。测序描绘了受rspo1影响的分子途径。我们的研究表明,RSPO1显著促进HFOs的出芽率,并上调DPCs的基因/蛋白表达。此外,RSPO1不仅增强Wnt/β-catenin介导的类器官模式,而且还协调包括PI3K-Akt、Rap1和NF-κB在内的信号三联体,以驱动同步毛囊发芽和分层毛源分化。我们的3D类器官扩张策略可以通过体外毛囊扩张来明确治疗脱发,实现秃顶患者的功能性头发新生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From Spheroid to Sprouting: Microenvironmental Modulation Boosts Hair Follicle Organoid Morphogenesis in 3D Culture.

Alopecia represents a global therapeutic challenge, with the challenge of achieving de novo folliculogenesis in alopecic regions rather than reactivating telogen-phase hair follicles to enhance hair density. The successful in vitro cultivation of hair follicle organoids (HFOs) and the effective enhancement of HFOs sprouting rates are critical advancements in addressing this problem. While R-spondin1 (RSPO1) demonstrates in vivo efficacy in activating quiescent follicular stem cells and enhancing hair density, its capacity to augment HFOs sprouting efficiency remains to be elucidated. In this study, we regulate the growth microenvironment of HFOs using RSPO1, enhancing the HFOs sprouting rate and exploring its mechanism. HFO-induced dermal papilla cells (DPCs) induction was quantified via alkaline phosphatase (ALP) assay, with RSPO1-mediated hair-regenerative gene/protein modulation assessed through triple-method analysis (qPCR/WB/IF). Sequencing delineated RSPO1-affected molecular pathways. Our study demonstrates that RSPO1 significantly promotes HFOs sprouting rate and upregulates the gene/protein expression of DPCs. Furthermore, RSPO1 not only potentiates Wnt/β-catenin-mediated organoid patterning but also coordinates a signaling triad involving PI3K-Akt, Rap1 and NF-κB to drive synchronized hair follicle sprouting and stratified pilogenic differentiation. Our 3D organoid-based expansion strategy enables definitive treatment of alopecia through in vitro hair follicle expansion, achieving functional hair neogenesis in patients with baldness.

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来源期刊
Cell Biology International
Cell Biology International 生物-细胞生物学
CiteScore
7.60
自引率
0.00%
发文量
208
审稿时长
1 months
期刊介绍: Each month, the journal publishes easy-to-assimilate, up-to-the minute reports of experimental findings by researchers using a wide range of the latest techniques. Promoting the aims of cell biologists worldwide, papers reporting on structure and function - especially where they relate to the physiology of the whole cell - are strongly encouraged. Molecular biology is welcome, as long as articles report findings that are seen in the wider context of cell biology. In covering all areas of the cell, the journal is both appealing and accessible to a broad audience. Authors whose papers do not appeal to cell biologists in general because their topic is too specialized (e.g. infectious microbes, protozoology) are recommended to send them to more relevant journals. Papers reporting whole animal studies or work more suited to a medical journal, e.g. histopathological studies or clinical immunology, are unlikely to be accepted, unless they are fully focused on some important cellular aspect. These last remarks extend particularly to papers on cancer. Unless firmly based on some deeper cellular or molecular biological principle, papers that are highly specialized in this field, with limited appeal to cell biologists at large, should be directed towards journals devoted to cancer, there being very many from which to choose.
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