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季铵化驱动载 mRNA 脂质样纳米组装体向脾向肺的转移。

Quaternization drives spleen-to-lung tropism conversion for mRNA-loaded lipid-like nanoassemblies.

机构信息

Department of Infectious Disease, Shenzhen People's Hospital, The First Affiliated Hospital of Southern University of Science and Technology & The Second Clinical Medical College of Jinan University, Shenzhen 518020, China.

School of Medicine, Southern University of Science and Technology, Shenzhen, 518055, China.

出版信息

Theranostics. 2024 Jan 1;14(2):830-842. doi: 10.7150/thno.90071. eCollection 2024.

Abstract

As the overwhelming majority of advanced mRNA delivery systems are preferentially accumulated in the liver, there is an accelerating growth in the demand for the development of non-liver mRNA delivery platforms. In this study, we prepared cationic lipid-like nanoassemblies through a N-quaternizing strategy. Their physicochemical properties, in vitro mRNA delivery efficiency, and organ tropism in mice were investigated. Introduction of quaternary ammonium groups onto lipid-like nanoassemblies not only enhances their mRNA delivery performance in vitro, but also completely alters their tropism from the spleen to the lung after intravenous administration in mice. Quaternized lipid-like nanoassemblies exhibit ultra-high specificity to the lung and are predominantly taken up by pulmonary immune cells, leading to over 95% of exogenous mRNA translation in the lungs. Such mRNA delivery carriers are stable even after more than one-year storage at ambient temperature. Quaternization provides an alternative method for design of new lung-targeted mRNA delivery systems without incorporation of targeting ligands, which should extend the therapeutic applicability of mRNA to lung diseases.

摘要

由于绝大多数先进的 mRNA 递药系统优先在肝脏中蓄积,因此人们对开发非肝脏 mRNA 递药平台的需求正在迅速增长。在这项研究中,我们通过季铵化策略制备了阳离子脂质样纳米组装体。研究了它们的理化性质、体外 mRNA 递药效率以及在小鼠体内的器官趋向性。将季铵基团引入脂质样纳米组装体不仅增强了它们在体外的 mRNA 递药性能,而且完全改变了它们在小鼠静脉给药后的脾脏趋向性为肺部趋向性。季铵化脂质样纳米组装体对肺部具有超高的特异性,主要被肺部免疫细胞摄取,导致超过 95%的外源 mRNA 在肺部翻译。即使在室温下储存一年以上,这些 mRNA 递药载体也很稳定。季铵化提供了一种替代方法,用于设计不包含靶向配体的新型肺部靶向 mRNA 递药系统,这将扩大 mRNA 在肺部疾病治疗中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fa5/10758058/cc7aaffa2ab4/thnov14p0830g001.jpg

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