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脂质纳米粒子和脂质体参考材料:大小均一性评估和长期 -70°C 和 4°C 储存稳定性。

Lipid Nanoparticle and Liposome Reference Materials: Assessment of Size Homogeneity and Long-Term -70 °C and 4 °C Storage Stability.

机构信息

Metrology Research Center, National Research Council Canada, Ottawa, Ontario K1A 0R6, Canada.

Integrated Nanotherapeutics Inc., 205-4475 Wayburne Drive, Burnaby, British Columbia V5G 4X4, Canada.

出版信息

Langmuir. 2023 Feb 21;39(7):2509-2519. doi: 10.1021/acs.langmuir.2c02657. Epub 2023 Feb 7.

Abstract

With recent advances and anticipated proliferation of lipid nanoparticle (LNP)-delivered vaccines and therapeutics, there is a need for the availability of internationally recognized reference materials of LNP systems. Accordingly, we developed six LNP and liposome (anionic, neutral, and cationic each) candidate reference material formulations and thoroughly characterized by dynamic light scattering their particle hydrodynamic size (Z-avr) and polydispersity. We also evaluated the particle size homogeneity and long-term -70 °C and 4 °C storage stability using multiple large sets of randomly selected vials for each formulation. The formulations stored at -70 °C remained stable and homogeneous for a minimum of 9 months. The Z-avr relative combined uncertainty and the long-term variability were both <1.3% for liposome formulations and anionic LNPs, (3.9% and 1.7%) for neutral LNPs, and (6.7% and 4.4%) for cationic LNPs. An inadvertent few-hour-long storage temperature increase to -35 °C due to a freezer malfunction resulted in a small change of the size and size distribution of anionic liposomes and LNPs but, unexpectedly, a larger size increase of the neutral and cationic liposomes (≤5%) and LNPs (≤25%). The mean Z-avr values of the LNPs stored at 4 °C appeared to slowly increase with , where is the storage time, and the Z-avr between-vial heterogeneity and mean polydispersity index values appeared to decrease; no change was observed for liposomes. The size and size distribution evolution of LNPs stored at 4 °C was attributed to an incomplete equilibration of the formulations following the addition of sucrose prior to the initial freezing. Such a process of size increase and size distribution narrowing has not been previously discussed nor observed in the context of LNPs.

摘要

随着脂质纳米颗粒 (LNP) 递送疫苗和疗法的最新进展和预期普及,人们需要获得国际认可的 LNP 系统参考物质。因此,我们开发了六种 LNP 和脂质体(阴离子型、中性和阳离子型各两种)候选参考物质配方,并通过动态光散射彻底表征了它们的颗粒水动力粒径(Z-avr)和多分散性。我们还使用每个配方的多组随机选择的小瓶评估了粒径均匀性和长期 -70°C 和 4°C 储存稳定性。-70°C 储存的配方至少稳定且均匀 9 个月。对于脂质体配方,Z-avr 相对总不确定度和长期可变性均 <1.3%,对于阴离子 LNP(3.9%和 1.7%)、中性 LNP(3.9%和 1.7%)和阳离子 LNP(6.7%和 4.4%)。由于冷冻机故障,阴离子脂质体和 LNP 的储存温度意外升高数小时至-35°C,导致其粒径和粒径分布略有变化,但出乎意料的是,中性和阳离子脂质体(≤5%)和 LNP(≤25%)的粒径增加较大。4°C 储存的 LNP 的平均 Z-avr 值似乎随着 的增加而缓慢增加,其中 是储存时间,小瓶之间的 Z-avr 异质性和平均多分散指数值似乎降低;脂质体没有观察到变化。4°C 储存的 LNP 的粒径和粒径分布演变归因于在初始冷冻之前添加蔗糖后配方不完全平衡。在 LNP 的背景下,这种粒径增加和粒径分布变窄的过程尚未被讨论或观察到。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d50/9948293/0e142cf7b8cb/la2c02657_0002.jpg

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