HSP47在血栓形成和胶原蛋白动力学的十字路口:解锁治疗视野和争论。

TH open : companion journal to thrombosis and haemostasis Pub Date : 2025-06-05 eCollection Date: 2025-01-01 DOI:10.1055/a-2599-4925
David M Smadja, Alberto F Chocron, M Marc Abreu
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引用次数: 0

摘要

热休克蛋白47 (HSP47)是一种由SERPINH1基因编码的胶原特异性分子伴侣,已成为血栓形成研究的突破性焦点。最近发表在《科学》杂志上的研究结果彻底改变了我们对血栓形成的理解,确定了HSP47是治疗血栓形成新靶点的关键介质。这一发现不仅揭示了血栓形成的新途径,而且为治疗干预开辟了新的途径。HSP47的意义不仅限于血栓形成,还影响纤维化和癌变等病理过程。在纤维化中,它的上调促进胶原沉积,而在成骨不全症(OI) X型中,它的失调强调了该蛋白在胶原生物合成中不可或缺的作用。治疗的挑战在于平衡HSP47抑制,以减少纤维化负担而不损害其基本生理功能。在癌症中,HSP47起着双重作用。它通过稳定胶原蛋白和促进转移来支持肿瘤进展,同时有助于在高温治疗联合放疗或化疗下的组织修复。然而,它的过表达会通过血管生成和上皮间质转化等机制加剧肿瘤的侵袭性。这篇综述强调了HSP47的血栓形成作用的关键发现及其在疾病生物学中的广泛意义。这些发现标志着血栓研究的范式转变,并强调了HSP47作为多种病理背景(从血小板驱动疾病到纤维化和肿瘤疾病)的靶标的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
HSP47 at the Crossroads of Thrombosis and Collagen Dynamics: Unlocking Therapeutic Horizons and Debates.

Heat shock protein 47 (HSP47), a collagen-specific molecular chaperone encoded by the SERPINH1 gene, has emerged as a groundbreaking focus in thrombosis research. Recent findings published in "Science" have revolutionized our understanding of thrombosis, identifying HSP47 as a critical mediator in a new thrombosis target for treatment. This discovery not only unveils a novel pathway in thrombosis but also opens new avenues for therapeutic intervention. HSP47's significance extends beyond thrombosis, influencing pathological processes such as fibrosis and cancer. In fibrosis, its upregulation promotes collagen deposition, while its dysregulation in osteogenesis imperfecta (OI) Type X underscores the protein's indispensable role in collagen biosynthesis. The therapeutic challenge lies in balancing HSP47 inhibition to reduce fibrotic burden without impairing its essential physiological functions. In cancer, HSP47 plays dual roles. It supports tumor progression through collagen stabilization and metastasis facilitation while contributing to tissue repair under hyperthermia treatment combined with radiotherapy or chemotherapy. However, its overexpression can exacerbate tumor aggressiveness via mechanisms such as angiogenesis and epithelial-mesenchymal transition. This review emphasizes the pivotal discovery of HSP47's thrombogenic role and its broader implications in disease biology. These findings mark a paradigm shift in thrombosis research and underscore the potential of HSP47 as a target in diverse pathological contexts, from platelet-driven diseases to fibrotic and oncological disorders.

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