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比较用于脂质纳米颗粒介导的 DNA 递送的可离子化脂质。

Comparison of ionizable lipids for lipid nanoparticle mediated DNA delivery.

机构信息

Pharmazentrum, Division of Pharmaceutical Technology, University of Basel, CH-4056 Basel, Switzerland.

Pharmazentrum, Division of Pharmaceutical Technology, University of Basel, CH-4056 Basel, Switzerland; Swiss Nanoscience Institute, University of Basel, CH-4056 Basel, Switzerland.

出版信息

Eur J Pharm Sci. 2024 Dec 1;203:106898. doi: 10.1016/j.ejps.2024.106898. Epub 2024 Sep 10.

Abstract

Lipid nanoparticles (LNPs) are successfully used for RNA-based gene delivery. In the context of gene replacement therapies, however, delivery of DNA expression plasmids using LNPs as a non-viral vector could be a promising strategy for the induction of longer-lasting effects. Therefore, DNA expression plasmids (3 to 4 kbp) coding for fluorescent markers or luciferase were combined with LNPs. Different clinically used ionizable lipids (DLin-MC3-DMA, SM-102, and ALC-0315) were tested to compare their influence on DNA plasmid delivery. DNA-LNPs were characterized with respect to their colloidal properties (size, polydispersity, ζ-potential, morphology), in vitro performance (cellular uptake, DNA delivery, and gene expression), and in vivo characteristics (biodistribution and luciferase gene expression). At an optimized N/P ratio of 6, spherical, small and monodisperse particles with anionic ζ-potential were obtained. Efficient transgene expression was achieved with a minimum amount of 1 pg DNA per initially plated cells. Zebrafish studies allowed selection of DNA-LNPs, which demonstrated prolonged blood circulation, avoidance of macrophage clearance, and vascular extravasation. Our comparative study demonstrates a high impact of the ionizable lipid type on DNA-LNP performance. Superior transfection efficiency of DNA-LNPs containing the ionizable lipid ALC-0315 was confirmed in wildtype mice.

摘要

脂质纳米颗粒(LNPs)已成功用于 RNA 为基础的基因传递。然而,在基因替代疗法的背景下,使用 LNPs 作为非病毒载体传递 DNA 表达质粒可能是一种很有前途的策略,可以诱导更持久的效果。因此,将编码荧光标记物或荧光素酶的 DNA 表达质粒(3 到 4 kbp)与 LNPs 结合。测试了不同临床应用的可离子化脂质(DLin-MC3-DMA、SM-102 和 ALC-0315),以比较它们对 DNA 质粒传递的影响。对 DNA-LNPs 的胶体性质(粒径、多分散性、ζ-电位、形态)、体外性能(细胞摄取、DNA 传递和基因表达)和体内特性(体内分布和荧光素酶基因表达)进行了表征。在优化的 N/P 比为 6 时,得到了具有负 ζ-电位的球形、小而单分散的颗粒。通过使用最初接种的细胞每 pg 至少 1 pg DNA 即可实现高效的转基因表达。斑马鱼研究允许选择 DNA-LNPs,这些 DNA-LNPs 表现出延长的血液循环、避免巨噬细胞清除和血管外渗。我们的比较研究表明,可离子化脂质的类型对 DNA-LNP 的性能有很大的影响。含有可离子化脂质 ALC-0315 的 DNA-LNP 的转染效率在野生型小鼠中得到了证实。

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