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人毛囊的体外器官培养:一种上皮-神经外胚层-间充质相互作用系统模型

Ex vivo organ culture of human hair follicles: a model epithelial-neuroectodermal-mesenchymal interaction system.

作者信息

Tobin Desmond J

机构信息

Centre for Skin Sciences, School of Life Sciences, University of Bradford, Bradford, UK.

出版信息

Methods Mol Biol. 2011;695:213-27. doi: 10.1007/978-1-60761-984-0_14.

Abstract

The development of hair follicle organ culture techniques is a significant milestone in cutaneous biology research. The hair follicle, or more accurately the "pilo-sebaceous unit", encapsulates all the important physiologic processes found in the human body; controlled cell growth/death, interactions between cells of different histologic type, cell differentiation and migration, and hormone responsitivity to name a few. Thus, the value of the hair follicle as a model for biological scientific research goes way beyond its scope for cutaneous biology or dermatology alone. Indeed, the recent and dramatic upturn in interest in hair follicle biology has focused principally on the pursuit of two of biology's holy grails; post-embryonic morphogenesis and control of cyclical tissue activity. The hair follicle organ culture model, pioneered by Philpott and colleagues, ushered in an exceptionally accessible way to assess how cells of epithelial (e.g., keratinocytes), mesenchymal (e.g., fibroblasts), and neuroectodermal (e.g., melanocytes) origin interact in a three-dimensional manner. Moreover, this assay system allows us to assess how various natural and pharmacologic agents affect complex tissues for growth modulation. In this article, I focus on the culture of the human hair follicle mini-organ, discussing both the practical issues involved and some possible research applications of this assay.

摘要

毛囊器官培养技术的发展是皮肤生物学研究中的一个重要里程碑。毛囊,或者更准确地说是“毛囊皮脂腺单位”,囊括了人体中所有重要的生理过程;如受控的细胞生长/死亡、不同组织学类型细胞之间的相互作用、细胞分化和迁移以及激素反应性等等。因此,毛囊作为生物学科学研究模型的价值远远超出了其在皮肤生物学或皮肤病学领域的范畴。事实上,最近对毛囊生物学兴趣的急剧上升主要集中在对生物学的两大圣杯的探索上;胚胎后形态发生和周期性组织活动的控制。由菲尔波特及其同事开创的毛囊器官培养模型,开创了一种极其便捷的方式来评估上皮细胞(如角质形成细胞)、间充质细胞(如成纤维细胞)和神经外胚层细胞(如黑素细胞)如何以三维方式相互作用。此外,这个检测系统使我们能够评估各种天然和药物制剂如何影响复杂组织的生长调节。在本文中,我将重点讨论人毛囊微型器官的培养,探讨其中涉及的实际问题以及该检测方法的一些可能的研究应用。

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