Department of Bioengineering, McGill University, Montreal, QC H3A 0G4, Canada.
Biomolecules. 2023 Oct 9;13(10):1497. doi: 10.3390/biom13101497.
Recent advances and discoveries in the structure and role of mRNA as well as novel lipid-based delivery modalities have enabled the advancement of mRNA therapeutics into the clinical trial space. The manufacturing of these products is relatively simple and eliminates many of the challenges associated with cell culture production of viral delivery systems for gene and cell therapy applications, allowing rapid production of mRNA for personalized treatments, cancer therapies, protein replacement and gene editing. The success of mRNA vaccines during the COVID-19 pandemic highlighted the immense potential of this technology as a vaccination platform, but there are still particular challenges to establish mRNA as a widespread therapeutic tool. Immunostimulatory byproducts can pose a barrier for chronic treatments and different production scales may need to be considered for these applications. Moreover, long-term storage of mRNA products is notoriously difficult. This review provides a detailed overview of the manufacturing steps for mRNA therapeutics, including sequence design, DNA template preparation, mRNA production and formulation, while identifying the challenges remaining in the dose requirements, long-term storage and immunotolerance of the product.
mRNA 的结构和作用方面的最新进展和发现,以及新型基于脂质的递药方式,使 mRNA 疗法得以进入临床试验阶段。这些产品的制造相对简单,消除了与病毒载体生产相关的许多挑战,用于基因和细胞治疗应用,可快速生产用于个性化治疗、癌症治疗、蛋白质替代和基因编辑的 mRNA。在 COVID-19 大流行期间,mRNA 疫苗的成功突出了这项技术作为疫苗平台的巨大潜力,但要将 mRNA 确立为广泛应用的治疗工具,仍存在一些特殊挑战。免疫刺激性副产物可能成为慢性治疗的障碍,对于这些应用可能需要考虑不同的生产规模。此外,mRNA 产品的长期储存一直是一个难题。本文详细概述了 mRNA 疗法的制造步骤,包括序列设计、DNA 模板制备、mRNA 生产和制剂,同时确定了产品在剂量需求、长期储存和免疫耐受方面仍存在的挑战。