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不同种族人群皮肤中提取的富含原纤维蛋白的微纤维的异质性。

Heterogeneity of fibrillin-rich microfibrils extracted from human skin of diverse ethnicity.

机构信息

Centre for Dermatology Research, The University of Manchester & Salford Royal NHS Foundation Trust, Manchester Academic Health Science Centre, Manchester, UK.

NIHR Manchester Biomedical Research Centre, Manchester University NHS Foundation Trust, Manchester Academic Health Science Centre, Manchester, UK.

出版信息

J Anat. 2020 Sep;237(3):478-486. doi: 10.1111/joa.13217. Epub 2020 May 25.

Abstract

The dermal elastic fibre network is the primary effector of skin elasticity, enabling it to extend and recoil many times over the lifetime of the individual. Fibrillin-rich microfibrils (FRMs) constitute integral components of the elastic fibre network, with their distribution showing differential deposition in the papillary dermis across individuals of diverse skin ethnicity. Despite these differential findings in histological presentation, it is not known if skin ethnicity influences FRM ultrastructure. FRMs are evolutionarily highly conserved from jellyfish to man and, regardless of tissue type or species, isolated FRMs have a characteristic 'beads-on-a-string' ultrastructural appearance, with an average inter-bead distance (or periodicity) of 56 nm. Here, skin biopsies were obtained from the photoprotected buttock of healthy volunteers (18-27 years; African: n = 5; European: n = 5), and FRMs were isolated from the superficial papillary dermis and deeper reticular dermis and imaged by atomic force microscopy. In the reticular dermis, there was no significant difference in FRM ultrastructure between European and African participants. In contrast, in the more superficial papillary dermis, inter-bead periodicity was significantly larger for FRMs extracted from European participants than from African participants by 2.20 nm (p < .001). We next assessed whether these differences in FRM ultrastructure were present during early postnatal development by characterizing FRMs from full-thickness neonatal foreskin. Analysis of FRM periodicity identified no significant difference between neonatal cohorts (p = .865). These data suggest that at birth, FRMs are developmentally invariant. However, in adults of diverse skin ethnicity, there is a deviation in ultrastructure for the papillary dermal FRMs that may be acquired during the passage of time from child to adulthood. Understanding the mechanism by which this difference in papillary dermal FRMs arises warrants further study.

摘要

皮肤弹性纤维网络是皮肤弹性的主要效应器,使皮肤能够在个体的一生中多次伸展和回弹。富含原纤维蛋白的微纤维(FRMs)是弹性纤维网络的组成部分,其分布在不同种族的个体的乳头真皮中呈现出不同的沉积。尽管在组织学表现上存在这些差异,但目前尚不清楚皮肤种族是否会影响 FRM 的超微结构。FRMs 在从水母到人之间具有高度进化上的保守性,无论组织类型或物种如何,分离的 FRMs 都具有特征性的“串珠”超微结构外观,平均珠间距离(或周期性)为 56nm。在这里,从健康志愿者的光保护臀部获得皮肤活检(18-27 岁;非洲人:n=5;欧洲人:n=5),并从浅层乳头真皮和深层网状真皮中分离 FRMs,并用原子力显微镜成像。在网状真皮中,欧洲和非洲参与者的 FRM 超微结构没有显著差异。相比之下,在更浅层的乳头真皮中,从欧洲参与者中提取的 FRM 的珠间周期性比从非洲参与者中提取的 FRM 大 2.20nm(p<0.001)。我们接下来通过表征全层新生儿包皮中的 FRMs 来评估 FRM 超微结构是否存在于早期的产后发育过程中。FRM 周期性分析未发现新生儿队列之间存在显著差异(p=0.865)。这些数据表明,在出生时,FRMs 在发育上是不变的。然而,在不同种族的成年人群中,乳头真皮 FRMs 的超微结构存在偏差,这种偏差可能是在从儿童到成年的时间流逝中获得的。了解这种乳头真皮 FRMs 差异产生的机制需要进一步研究。

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