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聚丙烯酸纳米平台:抗菌、组织工程及癌症诊疗应用

Polyacrylic Acid Nanoplatforms: Antimicrobial, Tissue Engineering, and Cancer Theranostic Applications.

作者信息

Arkaban Hassan, Barani Mahmood, Akbarizadeh Majid Reza, Pal Singh Chauhan Narendra, Jadoun Sapana, Dehghani Soltani Maryam, Zarrintaj Payam

机构信息

Department of Chemistry, University of Isfahan, Isfahan 8174673441, Iran.

Medical Mycology and Bacteriology Research Center, Kerman University of Medical Sciences, Kerman 7616913555, Iran.

出版信息

Polymers (Basel). 2022 Mar 21;14(6):1259. doi: 10.3390/polym14061259.

Abstract

Polyacrylic acid (PAA) is a non-toxic, biocompatible, and biodegradable polymer that gained lots of interest in recent years. PAA nano-derivatives can be obtained by chemical modification of carboxyl groups with superior chemical properties in comparison to unmodified PAA. For example, nano-particles produced from PAA derivatives can be used to deliver drugs due to their stability and biocompatibility. PAA and its nanoconjugates could also be regarded as stimuli-responsive platforms that make them ideal for drug delivery and antimicrobial applications. These properties make PAA a good candidate for conventional and novel drug carrier systems. Here, we started with synthesis approaches, structure characteristics, and other architectures of PAA nanoplatforms. Then, different conjugations of PAA/nanostructures and their potential in various fields of nanomedicine such as antimicrobial, anticancer, imaging, biosensor, and tissue engineering were discussed. Finally, biocompatibility and challenges of PAA nanoplatforms were highlighted. This review will provide fundamental knowledge and current information connected to the PAA nanoplatforms and their applications in biological fields for a broad audience of researchers, engineers, and newcomers. In this light, PAA nanoplatforms could have great potential for the research and development of new nano vaccines and nano drugs in the future.

摘要

聚丙烯酸(PAA)是一种无毒、生物相容且可生物降解的聚合物,近年来备受关注。通过对羧基进行化学修饰可获得PAA纳米衍生物,与未修饰的PAA相比,其具有更优异的化学性质。例如,由PAA衍生物制备的纳米颗粒因其稳定性和生物相容性可用于药物递送。PAA及其纳米缀合物也可被视为刺激响应平台,这使其在药物递送和抗菌应用方面具有理想的特性。这些特性使PAA成为传统和新型药物载体系统的良好候选者。在此,我们首先介绍了PAA纳米平台的合成方法、结构特征和其他架构。然后,讨论了PAA/纳米结构的不同缀合方式及其在纳米医学各个领域(如抗菌、抗癌、成像、生物传感器和组织工程)中的潜力。最后,强调了PAA纳米平台的生物相容性和面临的挑战。本综述将为广大研究人员、工程师和新手提供与PAA纳米平台及其在生物领域应用相关的基础知识和最新信息。鉴于此,PAA纳米平台未来在新型纳米疫苗和纳米药物的研发方面可能具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d5a/8948866/27dfa493089b/polymers-14-01259-g001.jpg

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