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信使核糖核酸在遗传性疾病中的治疗应用。

Therapeutic Application of mRNA for Genetic Diseases.

作者信息

Schürmann Paul J L, van Breda Vriesman Stijn P E, Castro-Alpízar Jose A, Kooijmans Sander A A, Nieuwenhuis Edward E S, Schiffelers Raymond M, Fuchs Sabine A

机构信息

Division of Metabolic Diseases, Wilhelmina Children's Hospital, University Medical Center Utrecht, Utrecht, the Netherlands.

Regenerative Medicine Center Utrecht, Utrecht, the Netherlands.

出版信息

Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2025 May-Jun;17(3):e70019. doi: 10.1002/wnan.70019.

Abstract

While gene therapy has been at the center of an active research field for decades, messenger RNA (mRNA) has long been considered unsuited for therapeutic application due to challenges with stability, immunogenicity, and delivery. Where gene therapy focuses on providing the desired genetic code, mRNA can directly provide the instructions encoded in the corresponding gene. This review aims to explore recent advances in mRNA therapies, building on the success of mRNA COVID-19 vaccines, and extend these insights to the potential treatment of rare genetic diseases. We follow the "outside-in" trajectory of mRNA therapies from administration to intracellular function, focusing on carrier systems such as lipid nanoparticles and virus-like particles, mRNA modifications, and the potential and challenges for clinical applications. To treat rare diseases, different approaches can be envisioned, including chronic or acute delivery of mRNAs encoding functional enzymes for enzyme deficiencies and delivery of CRISPR/Cas9-based gene-editing tools for gene correction. These different approaches determine safety and immunological considerations. By exploring genetic, technical, and therapeutic aspects, this review highlights the potential and current challenges of mRNA therapies to address the large unmet needs in rare genetic disorders.

摘要

尽管几十年来基因治疗一直是一个活跃的研究领域的核心,但由于稳定性、免疫原性和递送方面的挑战,信使核糖核酸(mRNA)长期以来一直被认为不适合用于治疗应用。基因治疗专注于提供所需的遗传密码,而mRNA可以直接提供相应基因中编码的指令。本综述旨在基于mRNA新冠疫苗的成功,探索mRNA疗法的最新进展,并将这些见解扩展到罕见遗传病的潜在治疗中。我们遵循mRNA疗法从给药到细胞内功能的“由外而内”轨迹,重点关注脂质纳米颗粒和病毒样颗粒等载体系统、mRNA修饰以及临床应用的潜力和挑战。为了治疗罕见病,可以设想不同的方法,包括长期或短期递送编码功能性酶以治疗酶缺陷的mRNA,以及递送基于CRISPR/Cas9的基因编辑工具以进行基因校正。这些不同的方法决定了安全性和免疫学方面的考量。通过探索遗传学、技术和治疗方面,本综述强调了mRNA疗法在满足罕见遗传病中大量未满足需求方面的潜力和当前面临的挑战。

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