Endocytic Profiling of Cancer Cell Models Reveals Critical Factors Influencing LNP-Mediated mRNA Delivery and Protein Expression.

Edward J Sayers, Samantha E Peel, Anna Schantz, Richard M England, Maya Beano, Stephanie M Bates, Arpan S Desai, Sanyogitta Puri, Marianne B Ashford, Arwyn T Jones
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Abstract

Lipid nanoparticles have great potential for delivering nucleic-acid-based therapeutics, but low efficiency limits their broad clinical translation. Differences in transfection capacity between in vitro models used for nanoparticle pre-clinical testing are poorly understood. To address this, using a clinically relevant lipid nanoparticle (LNP) delivering mRNA, we highlight specific endosomal characteristics in in vitro tumor models that impact protein expression. A 30-cell line LNP-mRNA transfection screen identified three cell lines having low, medium, and high transfection that correlated with protein expression when they were analyzed in tumor models. Endocytic profiling of these cell lines identified major differences in endolysosomal morphology, localization, endocytic uptake, trafficking, recycling, and endolysosomal pH, identified using a novel pH probe. High-transfecting cells showed rapid LNP uptake and trafficking through an organized endocytic pathway to lysosomes or rapid exocytosis. Low-transfecting cells demonstrated slower endosomal LNP trafficking to lysosomes and defective endocytic organization and acidification. Our data establish that efficient LNP-mRNA transfection relies on an early and narrow endosomal escape window prior to lysosomal sequestration and/or exocytosis. Endocytic profiling should form an important pre-clinical evaluation step for nucleic acid delivery systems to inform model selection and guide delivery-system design for improved clinical translation.

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癌细胞模型的内吞分析揭示了影响lnp介导的mRNA传递和蛋白质表达的关键因素。
脂质纳米颗粒在提供基于核酸的治疗方面具有巨大的潜力,但低效率限制了其广泛的临床应用。用于纳米颗粒临床前试验的体外模型之间转染能力的差异尚不清楚。为了解决这个问题,我们使用临床相关的脂质纳米颗粒(LNP)递送mRNA,在体外肿瘤模型中强调影响蛋白质表达的特定内体特征。通过30个细胞系LNP-mRNA转染筛选,在肿瘤模型中分析了三种与蛋白表达相关的低、中、高转染细胞系。这些细胞系的内吞分析鉴定了内溶酶体形态、定位、内吞摄取、运输、再循环和内溶酶体pH值的主要差异,使用一种新的pH探针鉴定。高转染的细胞表现出LNP的快速摄取和运输,通过有组织的内吞途径到达溶酶体或快速胞吐。低转染的细胞表现出较慢的内体LNP转运到溶酶体和缺陷的内吞组织和酸化。我们的数据表明,高效的LNP-mRNA转染依赖于溶酶体隔离和/或胞吐之前的早期和狭窄的内体逃逸窗口。内吞分析应成为核酸递送系统的重要临床前评估步骤,为模型选择提供信息,指导递送系统设计,以改善临床翻译。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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