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吸入型 mRNA 纳米颗粒,具有增强的雾化稳定性和肺部微环境渗透能力。

Inhalable mRNA Nanoparticle with Enhanced Nebulization Stability and Pulmonary Microenvironment Infiltration.

机构信息

Department of Bio and Brain Engineering and KAIST Institute for Health Science and Technology, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Republic of Korea.

出版信息

ACS Nano. 2024 Sep 3;18(35):24204-24218. doi: 10.1021/acsnano.4c05653. Epub 2024 Aug 22.

Abstract

The delivery of mRNA into the lungs is the key to solving infectious and intractable diseases that frequently occur in the lungs. Since inhalation using a nebulizer is the most promising method for mRNA delivery into the lungs, there have been many attempts toward adapting lipid nanoparticles for mRNA inhalation. However, conventional lipid nanoparticles, which have shown great effectiveness for systemic delivery of mRNA and intramuscular vaccination, are not effective for pulmonary delivery due to their structural instability during nebulization and their inability to adapt to the pulmonary microenvironment. To address these issues, we developed an ionizable liposome-mRNA lipocomplex (iLPX). iLPX has a highly ordered lipid bilayer structure, which increases stability during nebulization, and its poly(ethylene glycol)-free composition allows it to infiltrate the low serum environment and the pulmonary surfactant layer in the lungs. We selected an inhalation-optimized iLPX (IH-iLPX) using a multistep screening procedure that mimics the pulmonary delivery process of inhaled nanoparticles. The IH-iLPX showed a higher transfection efficiency in the lungs compared to conventional lipid nanoparticles after inhalation with no observed toxicity . Furthermore, analysis of lung distribution revealed even protein expression in the deep lungs, with effective delivery to epithelial cells. This study provides insights into the challenges and solutions related to the development of inhaled mRNA pulmonary therapeutics.

摘要

将 mRNA 递送到肺部是解决肺部常见的传染病和难治性疾病的关键。由于使用雾化器吸入是将 mRNA 递送到肺部最有前途的方法,因此已经有许多尝试将脂质纳米粒用于 mRNA 吸入。然而,由于在雾化过程中结构不稳定以及无法适应肺部微环境,对于全身递送 mRNA 和肌肉内接种已显示出巨大效果的传统脂质纳米粒,对于肺部递送并不有效。为了解决这些问题,我们开发了一种可离子化的脂质体-mRNA 脂复合物(iLPX)。iLPX 具有高度有序的脂质双层结构,在雾化过程中增加了稳定性,并且其无聚乙二醇组成使其能够渗透到低血清环境和肺部的肺表面活性剂层中。我们使用模拟吸入纳米颗粒肺部递药过程的多步筛选程序选择了一种吸入优化的 iLPX(IH-iLPX)。与传统脂质纳米粒相比,吸入 IH-iLPX 后在肺部的转染效率更高,且没有观察到毒性。此外,肺部分布分析显示,即使在深部肺部也有均匀的蛋白表达,并且能够有效地递送到上皮细胞。本研究为吸入型 mRNA 肺部治疗药物的开发提供了有关挑战和解决方案的见解。

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