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聚乙二醇化“点击化学”核酸寡聚物的细胞相容性和细胞内化。

Cytocompatibility and Cellular Internalization of PEGylated "Clickable" Nucleic Acid Oligomers.

出版信息

Biomacromolecules. 2018 Jul 9;19(7):2535-2541. doi: 10.1021/acs.biomac.8b00162. Epub 2018 May 4.

Abstract

The recently developed synthetic oligonucleotides referred to as "click" nucleic acids (CNAs) are promising due to their relatively simple synthesis based on thiol-X reactions with numerous potential applications in biotechnology, biodetection, gene silencing, and drug delivery. Here, the cytocompatibility and cellular uptake of rhodamine tagged, PEGylated CNA copolymers (PEG-CNA-RHO) were evaluated. NIH 3T3 fibroblast cells treated for 1 h with 1, 10, or 100 μg/mL PEG-CNA-RHO maintained an average cell viability of 86%, which was not significantly different from the untreated control. Cellular uptake of PEG-CNA-RHO was detected within 30 s, and the amount internalized increased over the course of 1 h. Moreover, these copolymers were internalized within cells to a higher degree than controls consisting of either rhodamine tagged PEG or the rhodamine alone. Uptake was not affected by temperature (i.e., 4 or 37 °C), suggesting a passive uptake mechanism. Subcellular colocalization analysis failed to indicate significant correlations between the internalized PEG-CNA-RHO and the organelles examined (mitochondria, endoplasmic reticulum, endosomes and lysosomes). These results indicate that CNA copolymers are cytocompatible and are readily internalized by cells, supporting the idea that CNAs are a promising alternative to DNA in antisense therapy applications.

摘要

最近开发的合成寡核苷酸被称为“点击”核酸(CNAs),由于其基于硫醇-X 反应的相对简单的合成,具有生物技术、生物检测、基因沉默和药物传递等诸多潜在应用,因此具有很大的应用前景。在这里,评估了带罗丹明标记的聚乙二醇化 CNA 共聚物(PEG-CNA-RHO)的细胞相容性和细胞摄取。用 1、10 或 100μg/mL 的 PEG-CNA-RHO 处理 1h 的 NIH 3T3 成纤维细胞的平均细胞活力保持在 86%,与未处理的对照组没有显著差异。在 30s 内检测到 PEG-CNA-RHO 的细胞摄取,并且在 1h 的过程中内化的量增加。此外,与由罗丹明标记的 PEG 或罗丹明本身组成的对照相比,这些共聚物在细胞内被内化到更高的程度。摄取不受温度(即 4 或 37°C)的影响,这表明摄取机制是被动的。亚细胞共定位分析未能表明内化的 PEG-CNA-RHO 与所检查的细胞器(线粒体、内质网、内体和溶酶体)之间存在显著相关性。这些结果表明 CNA 共聚物具有细胞相容性,并且很容易被细胞内化,支持了 CNA 是反义治疗应用中 DNA 的有前途替代品的观点。

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