储存操作的Ca2+进入纤维化和组织重塑。

Contact (Thousand Oaks (Ventura County, Calif.)) Pub Date : 2024-12-09 eCollection Date: 2024-01-01 DOI:10.1177/25152564241291374
Ahmed Emam Abdelnaby, Mohamed Trebak
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引用次数: 0

摘要

纤维化是一种病理状态,其特征是细胞外基质(ECM)成分的过度组织沉积,导致多器官系统的瘢痕形成和功能受损。这个复杂的过程是由细胞类型之间的动态相互作用介导的,包括肌成纤维细胞、成纤维细胞、免疫细胞、上皮细胞和内皮细胞,每一种细胞都通过不同的信号通路做出独特的贡献。存储操作钙进入(SOCE)是参与纤维化的调控机制的关键,这是一种钙进入细胞质的途径,活跃于内质网-质膜接触部位,对所有细胞都是常见的。本文综述了纤维化的多因子性质,重点讨论了不同细胞类型的关键作用。我们强调了肌成纤维细胞在ECM产生、成纤维细胞转化和免疫细胞参与纤维化景观调节中的基本功能。通过探索SOCE在细胞功能(如增殖、迁移、分泌和炎症反应)中的作用,我们强调了SOCE在这些不同细胞类型中对纤维化的贡献。对纤维化的细胞和分子机制以及SOCE在这些机制中的作用的研究,为靶向SOCE作为减轻或逆转纤维化的治疗策略提供了潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Store-Operated Ca<sup>2+</sup> Entry in Fibrosis and Tissue Remodeling.

Store-Operated Ca<sup>2+</sup> Entry in Fibrosis and Tissue Remodeling.

Store-Operated Ca2+ Entry in Fibrosis and Tissue Remodeling.

Fibrosis is a pathological condition characterized by excessive tissue deposition of extracellular matrix (ECM) components, leading to scarring and impaired function across multiple organ systems. This complex process is mediated by a dynamic interplay between cell types, including myofibroblasts, fibroblasts, immune cells, epithelial cells, and endothelial cells, each contributing distinctively through various signaling pathways. Critical to the regulatory mechanisms involved in fibrosis is store-operated calcium entry (SOCE), a calcium entry pathway into the cytosol active at the endoplasmic reticulum-plasma membrane contact sites and common to all cells. This review addresses the multifactorial nature of fibrosis with a focus on the pivotal roles of different cell types. We highlight the essential functions of myofibroblasts in ECM production, the transformation of fibroblasts, and the participation of immune cells in modulating the fibrotic landscape. We emphasize the contributions of SOCE in these different cell types to fibrosis, by exploring the involvement of SOCE in cellular functions such as proliferation, migration, secretion, and inflammatory responses. The examination of the cellular and molecular mechanisms of fibrosis and the role of SOCE in these mechanisms offers the potential of targeting SOCE as a therapeutic strategy for mitigating or reversing fibrosis.

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