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人角质形成细胞与神经皮肤单元神经纤维终末的相互作用。

Interaction of human keratinocytes and nerve fiber terminals at the neuro-cutaneous unit.

机构信息

Department of Neurology, University Hospital of Würzburg, Würzburg, Germany.

Imaging Core Facility, Biocenter, University of Würzburg, Würzburg, Germany.

出版信息

Elife. 2024 Jan 16;13:e77761. doi: 10.7554/eLife.77761.

Abstract

Traditionally, peripheral sensory neurons are assumed as the exclusive transducers of external stimuli. Current research moves epidermal keratinocytes into focus as sensors and transmitters of nociceptive and non-nociceptive sensations, tightly interacting with intraepidermal nerve fibers at the neuro-cutaneous unit. In animal models, epidermal cells establish close contacts and ensheath sensory neurites. However, ultrastructural morphological and mechanistic data examining the human keratinocyte-nerve fiber interface are sparse. We investigated this exact interface in human skin applying super-resolution array tomography, expansion microscopy, and structured illumination microscopy. We show keratinocyte ensheathment of afferents and adjacent connexin 43 contacts in native skin and have applied a pipeline based on expansion microscopy to quantify these parameter in skin sections of healthy participants versus patients with small fiber neuropathy. We further derived a fully human co-culture system, visualizing ensheathment and connexin 43 plaques in vitro. Unraveling human intraepidermal nerve fiber ensheathment and potential interaction sites advances research at the neuro-cutaneous unit. These findings are crucial on the way to decipher the mechanisms of cutaneous nociception.

摘要

传统上,周围感觉神经元被认为是外部刺激的唯一传感器。目前的研究将表皮角质形成细胞作为伤害性和非伤害性感觉的传感器和传递器,与神经皮肤单元中的表皮内神经纤维紧密相互作用。在动物模型中,表皮细胞建立紧密的接触并包裹感觉神经纤维。然而,检查人类角质形成细胞-神经纤维界面的超微结构形态和机制数据仍然很少。我们应用超分辨率阵列断层扫描、扩展显微镜和结构光照明显微镜研究了这个确切的界面。我们显示了在天然皮肤中传入神经纤维和相邻的连接蛋白 43 接触的角质形成细胞包裹,并应用了基于扩展显微镜的管道来量化健康参与者和小纤维神经病患者皮肤切片中的这些参数。我们进一步衍生出一个完全的人类共培养系统,在体外可视化包裹和连接蛋白 43 斑块。揭示表皮内神经纤维的包裹和潜在的相互作用位点,推进了神经皮肤单元的研究。这些发现对于解析皮肤伤害感受的机制至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f59c/10791129/32244ac3ef89/elife-77761-fig1.jpg

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