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基于胶束复合物的核酸疗法:从靶向刺激响应到纳米毒性与调控

Micelleplex-based nucleic acid therapeutics: From targeted stimuli-responsiveness to nanotoxicity and regulation.

作者信息

Pereira-Silva Miguel, Jarak Ivana, Santos Ana Cláudia, Veiga Francisco, Figueiras Ana

机构信息

Department of Pharmaceutical Technology, Faculty of Pharmacy, Univ. Coimbra, Azinhaga de Santa Comba, Pólo III - Pólo das Ciências da Saúde, 3000-548 Coimbra, Portugal.

Department of Pharmaceutical Technology, Faculty of Pharmacy, Univ. Coimbra, Azinhaga de Santa Comba, Pólo III - Pólo das Ciências da Saúde, 3000-548 Coimbra, Portugal; REQUIMTE/LAQV, Group of Pharmaceutical Technology, Faculty of Pharmacy, Univ. Coimbra, Azinhaga de Santa Comba, Pólo III - Pólo das Ciências da Saúde, 3000-548 Coimbra, Portugal.

出版信息

Eur J Pharm Sci. 2020 Oct 1;153:105461. doi: 10.1016/j.ejps.2020.105461. Epub 2020 Jul 9.

DOI:10.1016/j.ejps.2020.105461
PMID:32653564
Abstract

Cell-targeted nucleic acid (NA) therapeutics, either DNA- or RNA-based, have experienced considerable attention regarding their potential applications in gene expression modulation aiming at disease management. However, the therapeutic potential of NAs as selective, safe and multispecific biomolecules is principally hindered by their instability in biological fluids and deficient cellular uptake, urgently calling for intelligent design strategies such as NA loading in effective nanosystems. In this regard, NA delivery nanosystems which bypass biological hurdles and are capable of safeguarding the NA payload have been extensively explored so far. Micelleplexes consist of tailored and multifunctional micelle-like nanoassemblies of negatively-charged NAs complexed with cationic blocks, generally of polymeric nature, this way ensuring efficient NA protection and transportation, as well as enhanced cellular transfection and boosted intracellular trafficking. Herein, we review the biomedical applications of stable micelleplexes as robust and smart NA delivery nanosystems focusing on the fine-tuning of their properties toward stimuli-responsiveness and the nanosystem's versatility to accommodate distinct ligands for selective tissue-targeting purposes. Additionally, the nanosafety and regulatory considerations of micelleplexes will also be discussed toward the future clinical translation of micelleplexes for efficient NA delivery to cells, paving the way to next-generation micelleplex-based NA therapeutics.

摘要

基于DNA或RNA的细胞靶向核酸(NA)疗法,因其在旨在疾病管理的基因表达调控中的潜在应用而备受关注。然而,NA作为选择性、安全且多特异性生物分子的治疗潜力主要受到其在生物流体中的不稳定性以及细胞摄取不足的阻碍,迫切需要诸如将NA负载于有效的纳米系统等智能设计策略。在这方面,迄今为止,人们已经广泛探索了能够绕过生物障碍并保护NA有效载荷的NA递送纳米系统。胶束复合物由带负电荷的NA与阳离子嵌段(通常为聚合物性质)复合而成的定制多功能胶束状纳米组装体组成,通过这种方式确保了NA的有效保护和运输,以及增强的细胞转染和促进的细胞内运输。在此,我们综述了稳定胶束复合物作为强大且智能的NA递送纳米系统的生物医学应用,重点关注其性质向刺激响应性的微调以及纳米系统适应不同配体以实现选择性组织靶向目的的多功能性。此外,还将讨论胶束复合物的纳米安全性和监管考量,以推动胶束复合物在未来临床转化中实现向细胞高效递送NA,为下一代基于胶束复合物的NA疗法铺平道路。

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Engineering poly- and micelleplexes for nucleic acid delivery - A reflection on their endosomal escape.
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J Control Release. 2023 Jan;353:518-534. doi: 10.1016/j.jconrel.2022.12.008. Epub 2022 Dec 9.