Lyophilized monkeypox mRNA lipid nanoparticle vaccines with long-term stability and robust immune responses in mice.

IF 4.2 4区 医学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Human Vaccines & Immunotherapeutics Pub Date : 2025-12-01 Epub Date: 2025-03-11 DOI:10.1080/21645515.2025.2477384
Bin Wang, Quanyi Yin, Li Yi, Caixia Su, Yang Wen, Man Qiao, Yingchen Ju, Zhihua Liu, Yelin Xiong, Zhilei Liu
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Abstract

The World Health Organization (WHO) has recently declared another global health emergency due to the rapidly spreading monkeypox (Mpox) outbreak in numerous African countries. To address the unmet need to contain the outbreak using the existing vaccines, this study developed a lyophilization process for an effective, scalable and affordable Mpox mRNA-LNP vaccine candidate to address the global health crisis. A comprehensive evaluation and optimization of the vaccine formulation (the type/concentration of cryoprotectants, the type/concentration of buffer system, as well as the mRNA concentration and reconstitution solvent) and the freeze-drying process parameters (freezing method, temperature, cooling rate and primary/secondary drying conditions) were conducted. The freeze-dried product exhibits a uniform appearance and a moisture content of less than 1%. Reconstitution of the lyophilized mRNA-LNP resulted in equivalent particle size/polydispersity index, encapsulation efficiency and mRNA integrity compared to that of freshly prepared mRNA-LNP. Furthermore, the lyophilization process can be scaled up 100-fold to 2000 vials/batch. Notably, the lyophilized mRNA-LNP demonstrated a storage stability of at least 12 months at 4°C, and at ambient temperature for a minimum of 8 h post-reconstitution, exhibiting minimal deterioration in product quality. The in vitro biological activity and in vivo immunogenicity of the lyophilized mRNA-LNP was comparable to that of the freshly prepared mRNA-LNP. These results provide a compelling rationale for the utilization of lyophilization technology in enhancing the accessibility of the Mpox mRNA vaccine in developing countries, a strategy that is crucial for containing the global epidemic of Mpox infection.

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冻干猴痘mRNA脂质纳米颗粒疫苗在小鼠中具有长期稳定性和强大的免疫应答。
由于在许多非洲国家迅速蔓延的猴痘疫情,世界卫生组织(世卫组织)最近宣布了另一项全球卫生紧急情况。为了解决使用现有疫苗控制疫情的未满足需求,本研究开发了一种有效、可扩展和负担得起的m痘mRNA-LNP候选疫苗的冻干工艺,以应对全球卫生危机。对疫苗配方(冷冻保护剂种类/浓度、缓冲体系种类/浓度、mRNA浓度和重组溶剂)和冷冻干燥工艺参数(冷冻方法、温度、冷却速度和一次/二次干燥条件)进行了综合评价和优化。冻干产品具有均匀的外观和小于1%的水分含量。与新鲜制备的mRNA- lnp相比,重组的冻干mRNA- lnp具有相同的粒径/多分散性指数、包封效率和mRNA完整性。此外,冻干过程可以扩大100倍,达到2000瓶/批。值得注意的是,冻干的mRNA-LNP在4°C下的储存稳定性至少为12个月,重组后在室温下的储存稳定性至少为8小时,产品质量几乎没有下降。冻干mRNA-LNP的体外生物活性和体内免疫原性与新鲜制备的mRNA-LNP相当。这些结果为利用冻干技术提高发展中国家m痘mRNA疫苗的可及性提供了令人信服的理由,这一策略对于遏制全球m痘感染的流行至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Human Vaccines & Immunotherapeutics
Human Vaccines & Immunotherapeutics BIOTECHNOLOGY & APPLIED MICROBIOLOGY-IMMUNOLOGY
CiteScore
7.90
自引率
8.30%
发文量
489
审稿时长
3-6 weeks
期刊介绍: (formerly Human Vaccines; issn 1554-8619) Vaccine research and development is extending its reach beyond the prevention of bacterial or viral diseases. There are experimental vaccines for immunotherapeutic purposes and for applications outside of infectious diseases, in diverse fields such as cancer, autoimmunity, allergy, Alzheimer’s and addiction. Many of these vaccines and immunotherapeutics should become available in the next two decades, with consequent benefit for human health. Continued advancement in this field will benefit from a forum that can (A) help to promote interest by keeping investigators updated, and (B) enable an exchange of ideas regarding the latest progress in the many topics pertaining to vaccines and immunotherapeutics. Human Vaccines & Immunotherapeutics provides such a forum. It is published monthly in a format that is accessible to a wide international audience in the academic, industrial and public sectors.
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