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基质结构:描绘健康与疾病状态下的细胞外基质结构

Matritecture: Mapping the extracellular matrix architecture during health and disease.

作者信息

Reuten Raphael, Mayorca-Guiliani Alejandro E, Erler Janine Terra

机构信息

Institute of Experimental and Clinical Pharmacology and Toxicology, Medical Faculty, University of Freiburg, Freiburg, Germany.

Biotech Research & Innovation Centre (BRIC), University of Copenhagen (UCPH), Copenhagen, Denmark.

出版信息

Matrix Biol Plus. 2022 Feb 3;14:100102. doi: 10.1016/j.mbplus.2022.100102. eCollection 2022 Jun.

Abstract

All cells in multicellular organisms are housed in the extracellular matrix (ECM), an acellular edifice built up by more than a thousand proteins and glycans. Cells engage in a reciprocal relationship with the ECM; they build, inhabit, maintain, and remodel the ECM, while, in turn, the ECM regulates their behavior. The homeostatic balance of cell-ECM interactions can be lost, due to ageing, irritants or diseases, which results in aberrant cell behavior. The ECM can suppress or promote disease progression, depending on the information relayed to cells. Instructions come in the form of biochemical (e.g., composition), biophysical (e.g., stiffness), and topographical (e.g., structure) cues. While advances have been made in many areas, we only have a very limited grasp of ECM topography. A detailed atlas deciphering the spatiotemporal arrangement of all ECM proteins is lacking. We feel that such an extracellular matrix architecture (matritecture) atlas should be a priority goal for ECM research. In this commentary, we will discuss the need to resolve the spatiotemporal matritecture to identify potential disease triggers and therapeutic targets and present strategies to address this goal. Such a detailed matritecture atlas will not only identify disease-specific ECM structures but may also guide future strategies to restructure disease-related ECM patterns reverting to a normal pattern.

摘要

多细胞生物中的所有细胞都存在于细胞外基质(ECM)中,这是一种由一千多种蛋白质和聚糖构成的无细胞结构。细胞与ECM相互作用;它们构建、居住、维持和重塑ECM,反过来,ECM也调节细胞行为。由于衰老、刺激物或疾病,细胞与ECM相互作用的稳态平衡可能会丧失,从而导致细胞行为异常。根据传递给细胞的信息,ECM可以抑制或促进疾病进展。这些信息以生化(如组成)、生物物理(如硬度)和拓扑(如结构)线索的形式呈现。虽然在许多领域都取得了进展,但我们对ECM拓扑的了解仍然非常有限。目前缺乏一份详细的图谱来解读所有ECM蛋白的时空排列。我们认为,这样一份细胞外基质结构(matritecture)图谱应该是ECM研究的首要目标。在这篇评论中,我们将讨论解析时空matritecture以识别潜在疾病触发因素和治疗靶点的必要性,并提出实现这一目标的策略。这样一份详细的matritecture图谱不仅可以识别疾病特异性的ECM结构,还可能指导未来的策略,以重组与疾病相关的ECM模式,使其恢复正常模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c73/8861423/9f64c898ab57/gr1.jpg

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