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细胞外囊泡介导反义肽核酸的胞吐作用。

Extracellular vesicles mediated exocytosis of antisense peptide nucleic acids.

作者信息

Malik Shipra, Saltzman W Mark, Bahal Raman

机构信息

Department of Pharmaceutical Sciences, University of Connecticut, Storrs, CT 06269, USA.

Department of Biomedical Engineering, Yale University, New Haven, CT 06510, USA.

出版信息

Mol Ther Nucleic Acids. 2021 Aug 8;25:302-315. doi: 10.1016/j.omtn.2021.07.018. eCollection 2021 Sep 3.

Abstract

Peptide nucleic acids (PNAs), a synthetic DNA mimic, have been extensively utilized for antisense- and antigene-based biomedical applications. Significant efforts have been made to increase the cellular uptake of PNAs, but here we examined relatively unexplored aspects of intracellular trafficking and endocytic recycling of PNAs. For proof-of-concept, we used anti-microRNA (miR) PNA targeting miR-155. The sub-cellular localization of PNA was studied via confocal and flow-cytometry-based assays in HeLa cells. A comprehensive characterization of PNA-containing extracellular vesicles revealed spherical morphology, negative surface charge density, and the presence of tetraspanin markers. Most importantly, we investigated rab11a and rab27b GTPases' role in regulating the exocytosis of PNAs. Organelle staining, followed by confocal imaging, showed higher localization of PNA in lysosomes. Gene-expression analysis established the enhanced functional activity of PNA after inhibition of endocytic recycling. Multiple studies report the exocytosis of single-stranded oligonucleotides, short interfering RNAs (siRNAs), and nanocarriers. To our knowledge, this is the first mechanistic study to establish that PNA undergoes endocytic recycling and exocytosis out of tumor cells. The results presented here can serve as a platform to develop and optimize strategies for improving the therapeutic efficacy of PNAs by avoiding the recycling pathways.

摘要

肽核酸(PNA)是一种合成的DNA模拟物,已被广泛应用于基于反义及反基因的生物医学应用中。人们已做出大量努力来提高PNA的细胞摄取,但在此我们研究了PNA在细胞内运输和内吞再循环方面相对未被探索的内容。为了进行概念验证,我们使用了靶向miR-155的抗微小RNA(miR)PNA。通过共聚焦和基于流式细胞术的分析方法在HeLa细胞中研究了PNA的亚细胞定位。对含PNA的细胞外囊泡的全面表征揭示了其球形形态、负表面电荷密度以及四跨膜蛋白标志物的存在。最重要的是,我们研究了rab11a和rab27b GTP酶在调节PNA胞吐作用中的作用。细胞器染色后进行共聚焦成像显示,PNA在溶酶体中的定位更高。基因表达分析证实了内吞再循环受到抑制后PNA的功能活性增强。多项研究报道了单链寡核苷酸、小干扰RNA(siRNA)和纳米载体的胞吐作用。据我们所知,这是第一项确定PNA在肿瘤细胞中经历内吞再循环和胞吐作用的机制研究。本文给出的结果可作为一个平台,用于开发和优化策略,通过避开再循环途径来提高PNA的治疗效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac02/8379631/db3b3ad1c716/fx1.jpg

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