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用于胶原蛋白疾病的基因编辑:当前进展与未来展望。

Gene editing for collagen disorders: current advances and future perspectives.

作者信息

Kocsy Klaudia, Wilkinson Harry, Felix-Ilemhenbhio Favour, Bax Benjamin, Van Agtmael Tom, Azzouz Mimoun, Majid Arshad

机构信息

School of Medicine and Population Health, Sheffield Institute for Translational Neuroscience (SITraN), University of Sheffield, Sheffield, UK.

Medicines Discovery Institute, Cardiff University, Cardiff, UK.

出版信息

Gene Ther. 2025 Aug 11. doi: 10.1038/s41434-025-00560-7.

Abstract

Collagen disorders encompass a wide range of genetic conditions caused by pathogenic variants in collagen genes for which there is an unmet need for treatments. They present various clinical features, ranging from localised tissue abnormalities to severe systemic complications. Symptoms differ significantly and depend on the pathogenic variant, which can affect various systems, including the musculoskeletal, cardiovascular, and respiratory systems, highlighting the complex implications of collagen gene pathogenic variants and the wide range of expression patterns among different collagen types. Gene-editing technologies, particularly Clustered Regularly Interspaced Palindromic Repeats (CRISPR)-Cas systems, have emerged as promising therapeutic options for these disorders, representing a putative one-for-all treatment strategy. This review provides an overview of current gene-editing strategies aimed at collagen-related diseases, including osteogenesis imperfecta, Alport syndrome, and dystrophic epidermolysis bullosa. We explore the application of CRISPR-Cas9, which facilitates targeted DNA modifications, base editing (BE), and prime editing (PE), enabling precise single-nucleotide alterations without double-strand breaks (DSB). Preclinical and clinical studies have shown the potential of gene therapy to enhance collagen production, restore tissue integrity, and alleviate symptoms. However, challenges persist, including the lack of recurring mutations, the need for improved delivery methods, the reduction of off-target effects, and the development of novel therapies. Despite these challenges, advancements in gene editing techniques appear promising in enhancing editing efficiency while minimising unintended mutations, paving the way for more precise and safer genetic interventions for collagen disorders. Gene editing is fundamentally transforming medicine and biotechnology. Its applications encompass advanced diagnostics, tailored therapeutic strategies, and solutions for rare genetic disorders. By enabling precise genetic modifications, gene editing is paving the way for treatments of previously untreatable diseases, including those linked to collagen pathogenic variants. This review discusses the latest advancements in gene therapy techniques targeting collagen-related disorders. It explores innovative approaches like CRISPR-Cas9-mediated gene editing and highlights emerging strategies, such as allele-specific inactivation and base editing (BE). By examining these cutting-edge therapies and their potential clinical applications, this review highlights the transformative impact of gene editing in treating collagen-related conditions, while also identifying critical challenges and future directions for research.

摘要

胶原蛋白紊乱症涵盖了一系列由胶原蛋白基因中的致病变异引起的遗传疾病,目前对这些疾病的治疗仍存在未满足的需求。它们呈现出各种临床特征,从局部组织异常到严重的全身并发症不等。症状差异很大,取决于致病变异,这些变异可影响包括肌肉骨骼、心血管和呼吸系统在内的各种系统,凸显了胶原蛋白基因致病变异的复杂影响以及不同胶原蛋白类型之间广泛的表达模式。基因编辑技术,特别是成簇规律间隔短回文重复序列(CRISPR)-Cas系统,已成为治疗这些疾病的有前景的选择,代表了一种假定的通用治疗策略。本综述概述了目前针对与胶原蛋白相关疾病的基因编辑策略,包括成骨不全症、阿尔波特综合征和营养不良性大疱性表皮松解症。我们探讨了CRISPR-Cas9的应用,它有助于进行靶向DNA修饰、碱基编辑(BE)和引导编辑(PE),能够在不产生双链断裂(DSB)的情况下实现精确的单核苷酸改变。临床前和临床研究表明基因治疗具有增强胶原蛋白生成、恢复组织完整性和缓解症状的潜力。然而,挑战依然存在,包括缺乏复发性突变、需要改进递送方法、减少脱靶效应以及开发新疗法。尽管存在这些挑战,但基因编辑技术的进步在提高编辑效率同时最小化意外突变方面似乎很有前景,为胶原蛋白紊乱症的更精确、更安全的基因干预铺平了道路。基因编辑正在从根本上改变医学和生物技术。其应用包括先进的诊断、量身定制的治疗策略以及针对罕见遗传疾病的解决方案。通过实现精确的基因修饰,基因编辑正在为治疗以前无法治疗的疾病铺平道路,包括那些与胶原蛋白致病变异相关的疾病。本综述讨论了针对与胶原蛋白相关疾病的基因治疗技术的最新进展。它探讨了如CRISPR-Cas9介导的基因编辑等创新方法,并强调了新兴策略,如等位基因特异性失活和碱基编辑(BE)。通过研究这些前沿疗法及其潜在的临床应用,本综述突出了基因编辑在治疗与胶原蛋白相关疾病方面的变革性影响,同时也确定了关键挑战和未来研究方向。

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