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增强α-硫辛酸临床应用潜力的纳米技术方法。

Nanotechnological Approaches to Enhance the Potential of α-Lipoic Acid for Application in the Clinic.

作者信息

Bellini Chiara, Mancin Fabrizio, Papini Emanuele, Tavano Regina

机构信息

Department of Biomedical Sciences, University of Padova, Via U. Bassi 58/b, 35121 Padova, Italy.

Department of Chemical Sciences, University of Padova, Via F. Marzolo 1, 35121 Padova, Italy.

出版信息

Antioxidants (Basel). 2024 Jun 9;13(6):706. doi: 10.3390/antiox13060706.

Abstract

α-lipoic acid is a naturally occurring compound with potent antioxidant properties that helps protect cells and tissues from oxidative stress. Its incorporation into nanoplatforms can affect factors like bioavailability, stability, reactivity, and targeted delivery. Nanoformulations of α-lipoic acid can significantly enhance its solubility and absorption, making it more bioavailable. While α-lipoic acid can be prone to degradation in its free form, encapsulation within nanoparticles ensures its stability over time, and its release in a controlled and sustained manner to the targeted tissues and cells. In addition, α-lipoic acid can be combined with other compounds, such as other antioxidants, drugs, or nanomaterials, to create synergistic effects that enhance their overall therapeutic benefits or hinder their potential cytotoxicity. This review outlines the advantages and drawbacks associated with the use of α-lipoic acid, as well as various nanotechnological approaches employed to enhance its therapeutic effectiveness, whether alone or in combination with other bioactive agents. Furthermore, it describes the engineering of α-lipoic acid to produce poly(α-lipoic acid) nanoparticles, which hold promise as an effective drug delivery system.

摘要

α-硫辛酸是一种天然存在的具有强大抗氧化特性的化合物,有助于保护细胞和组织免受氧化应激的影响。将其纳入纳米平台会影响生物利用度、稳定性、反应性和靶向递送等因素。α-硫辛酸的纳米制剂可显著提高其溶解度和吸收率,使其更具生物利用度。虽然α-硫辛酸以游离形式时容易降解,但封装在纳米颗粒中可确保其随时间保持稳定,并以可控和持续的方式释放到靶向组织和细胞中。此外,α-硫辛酸可与其他化合物(如其他抗氧化剂、药物或纳米材料)结合,产生协同效应,增强其整体治疗效果或阻碍其潜在的细胞毒性。本综述概述了使用α-硫辛酸的优缺点,以及用于提高其治疗效果的各种纳米技术方法,无论其单独使用还是与其他生物活性剂联合使用。此外,它还描述了α-硫辛酸的工程化,以生产聚(α-硫辛酸)纳米颗粒,有望成为一种有效的药物递送系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c92f/11201002/ddddae3ca067/antioxidants-13-00706-g001.jpg

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