[Molecular pathology of skin fragility].

Cristina Has, Meropi Karakioulaki
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引用次数: 0

Abstract

The skin's barrier function is primarily maintained by the cohesion of its layers and the specialized stratum corneum. Genetic and autoimmune disorders that result in skin fragility have significantly contributed to understanding the role of various molecular components in the skin. These conditions, characterized by blisters, erosions, wounds, and impaired wound healing, are rare but must be considered in clinical differential diagnoses. Key cutaneous adhesion structures include the epidermal basement membrane, anchoring fibrils, cell-matrix adhesions (e.g., hemidesmosomes and focal adhesions), and cell-cell adhesions (e.g., desmosomes and corneodesmosomes). These multiprotein suprastructures not only provide structural support but also participate in signaling processes and physiological or pathological conditions such as skin aging and wound healing. Additionally, dermal connective tissue plays a structural role and serves as a reservoir for proteases, growth factors, and cytokines. Modern techniques like single-cell and spatial transcriptomics, combined with artificial intelligence algorithms, are advancing the molecular mapping of human skin. Moreover, this review highlights the molecular composition of adhesion structures and the specific diseases associated with deficiencies in these components.

[皮肤脆弱的分子病理学]。
皮肤的屏障功能主要是通过其各层的凝聚力和特化的角质层来维持的。导致皮肤脆弱的遗传性和自身免疫性疾病极大地促进了人们对皮肤中各种分子成分作用的了解。这些疾病以水疱、糜烂、伤口和伤口愈合障碍为特征,虽然罕见,但必须在临床鉴别诊断中加以考虑。主要的皮肤粘附结构包括表皮基底膜、锚定纤维、细胞-基质粘附(如半球体和病灶粘附)以及细胞-细胞粘附(如脱屑体和角质层脱屑体)。这些多蛋白超基质不仅提供结构支持,还参与信号传递过程和生理或病理状态,如皮肤老化和伤口愈合。此外,真皮结缔组织还发挥着结构性作用,是蛋白酶、生长因子和细胞因子的储存库。单细胞和空间转录组学等现代技术与人工智能算法相结合,正在推动人类皮肤分子图谱的绘制。此外,本综述还强调了粘附结构的分子组成以及与这些成分缺陷相关的特定疾病。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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