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利用巨胞饮作用将治疗性核酸递送至肿瘤细胞内。

Using macropinocytosis for intracellular delivery of therapeutic nucleic acids to tumour cells.

机构信息

AstraZeneca, IMED Biotech Unit, Pharmaceutical Sciences , Aaron Klug Building, Granta Park, Cambridge CB21 6GH , UK.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2019 Feb 4;374(1765):20180156. doi: 10.1098/rstb.2018.0156.

Abstract

Nucleic acids are a rapidly emerging therapeutic modality with the potential to become the third major drug modality alongside antibodies and small molecules. Owing to the unfavourable physico-chemical characteristics of nucleic acids, such as large size and negative charge, intracellular delivery remains a fundamental challenge to realizing this potential. Delivery technologies such as lipids, polymers and peptides have been used to facilitate delivery, with many of the most successful technologies using macropinocytosis to gain cellular entry; mostly by default rather than design. Fundamental knowledge of macropinocytosis is rapidly growing, presenting opportunities to better tailor design strategies to target this pathway. Furthermore, certain types of tumour cells have been observed to have high levels of macropinocytic activity and traffic cargo to favourable destinations within the cell for endosomal release, providing unique opportunities to further use this entry route for drug delivery. In this article, we review the delivery systems reported to be taken up by macropinocytosis and what is known about the mechanisms for regulating macropinocytosis in tumour cells. From this analysis, we identify new opportunities for exploiting this pathway for the intracellular delivery of nucleic acids to tumour cells. This article is part of the Theo Murphy meeting issue 'Macropinocytosis'.

摘要

核酸是一种迅速崛起的治疗模式,有可能成为继抗体和小分子之后的第三大药物模式。由于核酸具有体积大、带负电荷等不良理化特性,细胞内递送达仍然是实现这一潜力的一个基本挑战。脂质、聚合物和肽等递送技术已被用于促进递送,许多最成功的技术利用巨胞饮作用来获得细胞进入;主要是默认的,而不是设计的。巨胞饮作用的基本知识正在迅速发展,为更好地调整设计策略以针对该途径提供了机会。此外,某些类型的肿瘤细胞被观察到具有高水平的巨胞饮活性,并将货物运送到细胞内有利于内体释放的位置,为进一步利用这种进入途径进行药物递送提供了独特的机会。在本文中,我们综述了被巨胞饮作用摄取的递送系统,以及已知的肿瘤细胞中调节巨胞饮作用的机制。从这一分析中,我们确定了利用这一途径将核酸递送到肿瘤细胞内的新机会。本文是主题为“巨胞饮作用”的 Theo Murphy 会议专刊的一部分。

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