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在大鼠触须毛囊毛发生长周期中,纤连蛋白、层粘连蛋白和IV型胶原蛋白分布的变化与基底膜重构有关。

Changes in fibronectin, laminin and type IV collagen distribution relate to basement membrane restructuring during the rat vibrissa follicle hair growth cycle.

作者信息

Jahoda C A, Mauger A, Bard S, Sengel P

机构信息

Département de Biologie, Université Joseph Fourier, Grenoble, France.

出版信息

J Anat. 1992 Aug;181 ( Pt 1)(Pt 1):47-60.

Abstract

Hair growth in adult mammals involves continuous dermal-epidermal interaction across the follicular basement membrane, and repeated reorganisation of lower follicle structure during the hair growth cycle. The immunolocalisation of 3 extracellular matrix components, fibronectin, laminin and type IV collagen was investigated during the course of the rat vibrissa follicle growth cycle, and their distribution correlated with changes in cellular and extracellular ultrastructure, particularly around the basement membrane zone. Laminin and type IV collagen were omnipresent at the follicular dermal-epidermal junction, but were also seen in granular extracellular form within the inner dermal component of the follicle, the dermal papilla. Both the inner papilla-epidermal junction and the thick specialised outer basement membrane (the glassy membrane) revealed labelling by these 2 antibodies around telogen (the period of nonfibre production). By contrast, fibronectin was abundant within the anagen dermal papilla but at telogen stained the dermal-epidermal junction heterogeneously, when it disappeared from the inner papilla-epidermal interface but intensified externally. These changes to extracellular matrix distribution coincided with a modification of basement membrane ultrastructure from a relatively uniform line at anagen, to one which became much broader and multilayered at telogen with a loss of definite structure within the papilla. This shows that the lower part of the vibrissa follicle retains the capacity for very rapid basement membrane modification and remodelling, and implies that it is part of the biological process which enables dermal-epidermal signalling, rather than a secondary product of physical changes to the appendage. The work supports the idea that dermal papilla cells could contribute to basement membrane formation, and also that fibronectin may be involved in regulating cellular activities within the follicle. In the vibrissa follicle, dynamic cellular activity clearly takes place throughout the duration of the hair cycle.

摘要

成年哺乳动物的毛发生长涉及毛囊基底膜两侧持续的真皮 - 表皮相互作用,以及在毛发生长周期中毛囊下部结构的反复重组。在大鼠触须毛囊生长周期过程中,研究了3种细胞外基质成分(纤连蛋白、层粘连蛋白和IV型胶原蛋白)的免疫定位,它们的分布与细胞和细胞外超微结构的变化相关,特别是在基底膜区域周围。层粘连蛋白和IV型胶原蛋白在毛囊真皮 - 表皮交界处普遍存在,但也以颗粒状细胞外形式出现在毛囊的真皮内成分即真皮乳头中。在休止期(非纤维生成期),内乳头 - 表皮交界处和厚厚的特殊外基底膜(玻璃膜)都显示出这两种抗体的标记。相比之下,纤连蛋白在生长期的真皮乳头内丰富,但在休止期时,它对真皮 - 表皮交界处的染色不均匀,此时它从内乳头 - 表皮界面消失,但在外部增强。细胞外基质分布的这些变化与基底膜超微结构的改变相吻合,从生长期相对均匀的线条,变为休止期时更宽且多层的结构,乳头内失去明确的结构。这表明触须毛囊下部保留了非常快速的基底膜修饰和重塑能力,意味着它是真皮 - 表皮信号传导生物学过程的一部分,而不是附属器物理变化的次要产物。这项工作支持了真皮乳头细胞可能有助于基底膜形成的观点,也支持纤连蛋白可能参与调节毛囊内细胞活动这一观点。在触须毛囊中,整个毛发周期中显然都发生着动态的细胞活动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5749/1259751/8e3be5c8a95b/janat00147-0051-a.jpg

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