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毛发形态发生的分子生物学:发育与循环

Molecular biology of hair morphogenesis: development and cycling.

作者信息

Botchkarev Vladimir A, Paus Ralf

机构信息

Department of Dermatology, Boston University School of Medicine, Boston, MA, USA.

出版信息

J Exp Zool B Mol Dev Evol. 2003 Aug 15;298(1):164-80. doi: 10.1002/jez.b.33.

Abstract

In mammals, hair follicles produce hairs that fulfill a number of functions including thermoregulation, collecting sensory information, protection against environmental trauma, social communication, and mimicry. Hair follicles develop as a result of epithelial-mesenchymal interactions between epidermal keratinocytes committed to hair-specific differentiation and cluster of dermal fibroblasts that form follicular papilla. During postnatal life, hair follicles show patterns of cyclic activity with periods of active growth and hair production (anagen), apoptosis-driven involution (catagen), and relative resting (telogen). During last decade, substantial progress has been achieved in delineating molecular mechanisms that control hair follicle development and cyclic activity. In this review, we summarize the data demonstrating that regulation of hair follicle development in the embryo and control of hair follicle growth during postnatal life are highly conserved and both require involvement of similar molecular mechanisms. Since many of the molecules that control hair follicle development and cycling are also involved in regulating morphogenesis and postnatal biology of other ectodermal derivatives, such as teeth, feathers, and mammary glands, basic principles and molecular mechanisms that govern hair follicle development and growth may also be applicable for other developmental systems.

摘要

在哺乳动物中,毛囊产生的毛发具有多种功能,包括体温调节、收集感官信息、抵御环境创伤、社交交流以及伪装。毛囊的发育是由于致力于毛发特异性分化的表皮角质形成细胞与形成毛囊乳头的真皮成纤维细胞簇之间发生上皮-间充质相互作用的结果。在出生后的生命过程中,毛囊呈现出周期性活动模式,包括活跃生长和毛发产生期(生长期)、凋亡驱动的退化期(退行期)以及相对静止期(休止期)。在过去十年中,在阐明控制毛囊发育和周期性活动的分子机制方面取得了重大进展。在本综述中,我们总结了相关数据,这些数据表明胚胎期毛囊发育的调控以及出生后毛囊生长的控制具有高度保守性,并且都需要相似分子机制的参与。由于许多控制毛囊发育和循环的分子也参与调节其他外胚层衍生物(如牙齿、羽毛和乳腺)的形态发生和出生后生物学过程,因此支配毛囊发育和生长的基本原理和分子机制可能也适用于其他发育系统。

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