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壳聚糖纳米颗粒基因治疗:增强癌细胞转染的现代制剂策略

Gene Therapy with Chitosan Nanoparticles: Modern Formulation Strategies for Enhancing Cancer Cell Transfection.

作者信息

Antoniou Varvara, Mourelatou Elena A, Galatou Eleftheria, Avgoustakis Konstantinos, Hatziantoniou Sophia

机构信息

Pharmacy Program, Department of Health Sciences, School of Life and Health Sciences, University of Nicosia, Nicosia 2417, Cyprus.

Bioactive Molecules Research Center, School of Life and Health Sciences, University of Nicosia, Nicosia 2417, Cyprus.

出版信息

Pharmaceutics. 2024 Jun 27;16(7):868. doi: 10.3390/pharmaceutics16070868.

Abstract

Gene therapy involves the introduction of exogenous genetic material into host tissues to modify gene expression or cellular properties for therapeutic purposes. Initially developed to address genetic disorders, gene therapy has expanded to encompass a wide range of conditions, notably cancer. Effective delivery of nucleic acids into target cells relies on carriers, with non-viral systems gaining prominence due to their enhanced safety profile compared to viral vectors. Chitosan, a biopolymer, is frequently utilized to fabricate nanoparticles for various biomedical applications, particularly nucleic acid delivery, with recent emphasis on targeting cancer cells. Chitosan's positively charged amino groups enable the formation of stable nanocomplexes with nucleic acids and facilitate interaction with cell membranes, thereby promoting cellular uptake. Despite these advantages, chitosan-based nanoparticles face challenges such as poor solubility at physiological pH, non-specificity for cancer cells, and inefficient endosomal escape, limiting their transfection efficiency. To address these limitations, researchers have focused on enhancing the functionality of chitosan nanoparticles. Strategies include improving stability, enhancing targeting specificity, increasing cellular uptake efficiency, and promoting endosomal escape. This review critically evaluates recent formulation approaches within these categories, aiming to provide insights into advancing chitosan-based gene delivery systems for improved efficacy, particularly in cancer therapy.

摘要

基因治疗是指将外源性遗传物质导入宿主组织,以改变基因表达或细胞特性,从而实现治疗目的。基因治疗最初是为解决遗传疾病而开发的,如今已扩展到涵盖多种病症,尤其是癌症。将核酸有效递送至靶细胞依赖于载体,与病毒载体相比,非病毒系统因其更高的安全性而备受关注。壳聚糖作为一种生物聚合物,常用于制备用于各种生物医学应用的纳米颗粒,特别是核酸递送,近期重点在于靶向癌细胞。壳聚糖带正电荷的氨基能够与核酸形成稳定的纳米复合物,并促进与细胞膜的相互作用,从而促进细胞摄取。尽管具有这些优势,但基于壳聚糖的纳米颗粒仍面临挑战,如在生理pH值下溶解度差、对癌细胞缺乏特异性以及内体逃逸效率低等,这些都限制了它们的转染效率。为解决这些局限性,研究人员专注于增强壳聚糖纳米颗粒的功能。策略包括提高稳定性、增强靶向特异性、提高细胞摄取效率以及促进内体逃逸。本综述批判性地评估了这些类别中近期的制剂方法,旨在为推进基于壳聚糖的基因递送系统以提高疗效,特别是在癌症治疗方面提供见解。

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