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冷冻保护剂和储存条件对用于 mRNA 和 DNA 递送的脂质纳米颗粒的转染效率、稳定性和安全性的影响。

The Effect of Cryoprotectants and Storage Conditions on the Transfection Efficiency, Stability, and Safety of Lipid-Based Nanoparticles for mRNA and DNA Delivery.

机构信息

Department of Biology, Edge Hill University, Ormskirk, L39 4QP, UK.

Faculty of Life Sciences & Medicine, King's College London, London, SE1 7EH, UK.

出版信息

Adv Healthc Mater. 2023 Jul;12(18):e2203022. doi: 10.1002/adhm.202203022. Epub 2023 Mar 21.

Abstract

Lipid-based nanoparticles have recently shown great promise, establishing themselves as the gold standard in delivering novel RNA therapeutics. However, research on the effects of storage on their efficacy, safety, and stability is still lacking. Herein, the impact of storage temperature on two types of lipid-based nanocarriers, lipid nanoparticles (LNPs) and receptor-targeted nanoparticles (RTNs), loaded with either DNA or messenger RNA (mRNA), is explored and the effects of different cryoprotectants on the stability and efficacy of the formulations are investigated. The medium-term stability of the nanoparticles was evaluated by monitoring their physicochemical characteristics, entrapment and transfection efficiency, every two weeks over one month. It is demonstrated, that the use of cryoprotectants protects nanoparticles against loss of function and degradation in all storage conditions. Moreover, it is shown that the addition of sucrose enables all nanoparticles to remain stable and maintain their efficacy for up to a month when stored at -80 °C, regardless of cargo or type of nanoparticle. DNA-loaded nanoparticles also remain stable in a wider variety of storage conditions than mRNA-loaded ones. Importantly, these novel LNPs show increased GFP expression that can signify their future use in gene therapies, beyond the established role of LNPs in RNA therapeutics.

摘要

脂质纳米粒最近表现出巨大的潜力,成为递送新型 RNA 治疗药物的金标准。然而,关于储存对其疗效、安全性和稳定性影响的研究仍然缺乏。本文探讨了储存温度对两种脂质纳米载体(脂质纳米粒(LNPs)和受体靶向纳米粒(RTNs))的影响,这两种载体负载 DNA 或信使 RNA(mRNA)。还研究了不同冷冻保护剂对制剂稳定性和疗效的影响。通过每两周监测一次纳米粒的物理化学特性、包封率和转染效率,评估了纳米粒的中期稳定性。结果表明,使用冷冻保护剂可以防止纳米粒在所有储存条件下功能丧失和降解。此外,结果表明,添加蔗糖可使所有纳米粒在 -80°C 下储存长达一个月时保持稳定并保持其疗效,无论货物或纳米粒类型如何。负载 DNA 的纳米粒在比负载 mRNA 的纳米粒更广泛的储存条件下也保持稳定。重要的是,这些新型 LNPs 显示出增强的 GFP 表达,这可能表明它们在基因治疗中的未来用途,超出了 LNPs 在 RNA 治疗中的既定作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fa4/11468535/31c851cb1a44/ADHM-12-2203022-g006.jpg

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