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多功能的基于新霉素-三嗪的阳离子脂质体用于具有抗菌性能的基因传递。

Multifunctional Neomycin-Triazine-Based Cationic Lipids for Gene Delivery with Antibacterial Properties.

机构信息

Department of Chemistry, Materials, and Chemical Engineering "G. Natta", Politecnico di Milano, Via Mancinelli 7, Milan 20131, Italy.

Laboratory for Biomaterials and Bioengineering, Canada Research Chair I in Biomaterials and Bioengineering for the Innovation in Surgery, Department of Min-Met-Materials Engineering & Research Center of CHU de Quebec, Division of Regenerative Medicine, Laval University, Quebec City, Quebec G1 V 0A6, Canada.

出版信息

Bioconjug Chem. 2021 Apr 21;32(4):690-701. doi: 10.1021/acs.bioconjchem.0c00616. Epub 2021 Jan 20.

Abstract

Cationic lipids (CLs) have gained significant attention among nonviral gene delivery vectors due to their ease of synthesis and functionalization with multivalent moieties. In particular, there is an increasing request for multifunctional CLs having gene delivery capacity and antibacterial activity. Herein, we describe the design and synthesis of a novel class of aminoglycoside (AG)-based multifunctional vectors with high transfection efficiency and noticeable antibacterial properties. Specifically, cationic amphiphiles were built on a triazine scaffold, allowing for an easy derivatization with up to three potentially different substituents, such as neomycin (Neo) that serves as the polar head and one or two lipophilic tails, namely stearyl (ST) and oleyl (OL) alkyl chains and cholesteryl (Chol) tail. With the aim to shed more light on the effect of different types and numbers of lipophilic moieties on the ability of CLs to condense and transfect cells, the performance of Neo-triazine-based derivatives as gene delivery vectors was evaluated and compared. The ability of Neo-triazine-based derivatives to act as antimicrobial agents was evaluated as well. Neo-triazine-based CLs invariably exhibited excellent DNA condensation ability, even at a low charge ratio (CR, +/-). Besides, each derivative showed very good transfection performance at its optimal CR on two different cell lines, along with negligible cytotoxicity. CLs bearing symmetric two-tailed OL proved to be the most effective in transfection. Interestingly, Neo-triazine-based derivatives, used as either free lipids or lipoplexes, exhibited strong antibacterial activity against Gram-negative bacteria, especially in the case of CLs bearing one or two aliphatic chains. Altogether, these results highlight the potential of Neo-triazine-based derivatives as effective multifunctional nonviral gene delivery vectors.

摘要

阳离子脂质(CLs)由于其易于合成和多功能化,已经成为非病毒基因传递载体的研究热点。特别是,人们对具有基因传递能力和抗菌活性的多功能 CL 的需求日益增加。本文描述了一类新型基于氨基糖苷(AG)的多功能载体的设计和合成,该载体具有高转染效率和显著的抗菌性能。具体而言,阳离子两亲物构建在三嗪骨架上,允许轻松衍生至多三个潜在不同的取代基,如用作极性头的新霉素(Neo)和一个或两个亲脂性尾巴,即硬脂基(ST)和油基(OL)烷基链和胆固醇基(Chol)尾巴。为了更深入地了解不同类型和数量的亲脂性基团对 CL 凝聚和转染细胞能力的影响,评估并比较了基于 Neo-三嗪的衍生物作为基因传递载体的性能。还评估了基于 Neo-三嗪的衍生物作为抗菌剂的能力。基于 Neo-三嗪的 CL 始终表现出出色的 DNA 凝聚能力,即使在低电荷比(CR, +/-)下也是如此。此外,每种衍生物在两种不同细胞系的最佳 CR 下均表现出非常好的转染性能,同时细胞毒性可忽略不计。带有对称双尾 OL 的 CL 被证明在转染方面最有效。有趣的是,无论是游离脂质还是脂质体,基于 Neo-三嗪的衍生物都表现出对革兰氏阴性菌的强大抗菌活性,尤其是带有一个或两个脂肪链的 CL。总之,这些结果突出了基于 Neo-三嗪的衍生物作为有效多功能非病毒基因传递载体的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50b0/8154203/bbe2ceb5ae08/bc0c00616_0005.jpg

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