重建的人类色素皮肤/表皮模型通过黑色素核转移实现表皮色素沉着

IF 3.9 3区 医学 Q2 CELL BIOLOGY Pigment Cell & Melanoma Research Pub Date : 2022-03-24 DOI:10.1111/pcmr.13039
Michael J. Hall, Sara Lopes-Ventura, Matilde V. Neto, Jo?o Charneca, Patricia Zoio, Miguel C. Seabra, Abel Oliva, Duarte C. Barral
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引用次数: 0

摘要

皮肤是环境侵害的屏障,并提供许多重要功能。其中之一是保护DNA免受有害的紫外线辐射,这是通过皮肤色素沉着实现的,因为黑色素在表皮层内产生和分散。这是防止DNA损伤、光老化和皮肤癌的关键防线。黑色素形成和黑色素转移的机制和调控涉及表皮黑色素细胞和角质形成细胞以及真皮层成纤维细胞之间的广泛串扰。尽管黑色素转移的主要机制仍在争论中,并且已经提出了几个似是而非的模型,但我们和其他人先前提供了一个外显/吞噬耦合模型的证据。在此,我们进行了组织学和免疫组织化学分析,并证明了新开发的全层三维重建人类色素皮肤模型和表皮模型在表皮的角化细胞中显示出分散的色素。透射电镜显示黑素细胞和角化细胞之间存在黑素核,这表明黑色素是通过黑素小体核心或黑素核的胞外/吞噬作用偶联转移的,这与我们之前在人类皮肤活检中的观察结果相似。因此,我们提供的证据表明,我们的体外着色人类皮肤模型显示出与人类皮肤相当的表皮色素沉着。这些发现对皮肤色素沉着机制和色素紊乱的研究具有很高的价值,同时减少了对动物模型和人体皮肤活检的依赖。
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Reconstructed human pigmented skin/epidermis models achieve epidermal pigmentation through melanocore transfer

The skin acts as a barrier to environmental insults and provides many vital functions. One of these is to shield DNA from harmful ultraviolet radiation, which is achieved by skin pigmentation arising as melanin is produced and dispersed within the epidermal layer. This is a crucial defence against DNA damage, photo-ageing and skin cancer. The mechanisms and regulation of melanogenesis and melanin transfer involve extensive crosstalk between melanocytes and keratinocytes in the epidermis, as well as fibroblasts in the dermal layer. Although the predominant mechanism of melanin transfer continues to be debated and several plausible models have been proposed, we and others previously provided evidence for a coupled exo/phagocytosis model. Herein, we performed histology and immunohistochemistry analyses and demonstrated that a newly developed full-thickness three-dimensional reconstructed human pigmented skin model and an epidermis-only model exhibit dispersed pigment throughout keratinocytes in the epidermis. Transmission electron microscopy revealed melanocores between melanocytes and keratinocytes, suggesting that melanin is transferred through coupled exocytosis/phagocytosis of the melanosome core, or melanocore, similar to our previous observations in human skin biopsies. We, therefore, present evidence that our in vitro models of pigmented human skin show epidermal pigmentation comparable to human skin. These findings have a high value for studies of skin pigmentation mechanisms and pigmentary disorders, whilst reducing the reliance on animal models and human skin biopsies.

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来源期刊
Pigment Cell & Melanoma Research
Pigment Cell & Melanoma Research 医学-皮肤病学
CiteScore
8.90
自引率
2.30%
发文量
54
审稿时长
6-12 weeks
期刊介绍: Pigment Cell & Melanoma Researchpublishes manuscripts on all aspects of pigment cells including development, cell and molecular biology, genetics, diseases of pigment cells including melanoma. Papers that provide insights into the causes and progression of melanoma including the process of metastasis and invasion, proliferation, senescence, apoptosis or gene regulation are especially welcome, as are papers that use the melanocyte system to answer questions of general biological relevance. Papers that are purely descriptive or make only minor advances to our knowledge of pigment cells or melanoma in particular are not suitable for this journal. Keywords Pigment Cell & Melanoma Research, cell biology, melatonin, biochemistry, chemistry, comparative biology, dermatology, developmental biology, genetics, hormones, intracellular signalling, melanoma, molecular biology, ocular and extracutaneous melanin, pharmacology, photobiology, physics, pigmentary disorders
期刊最新文献
The Lipid Droplet Protein DHRS3 Is a Regulator of Melanoma Cell State. UVA Irradiation Promotes Melanoma Cell Proliferation Mediated by OPN3 Independently of ROS Production. Issue Information Bay 11-7082, an NF-κB Inhibitor, Prevents Post-Inflammatory Hyperpigmentation Through Inhibition of Inflammation and Melanogenesis. Low-Dose Baricitinib Plus Narrow-Band Ultraviolet B for the Treatment of Progressive Non-Segmental Vitiligo: A Prospective, Controlled, Open-Label Study.
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