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An Overview of the Antioxidant Effects of Ascorbic Acid and Alpha Lipoic Acid (in Liposomal Forms) as Adjuvant in Cancer Treatment

机译:抗坏血酸和α-硫辛酸(脂质体形式)作为癌症治疗佐剂的抗氧化作用概述

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摘要

Antioxidants are known to minimize oxidative stress by interacting with free radicals produced as a result of cell aerobic reactions. Oxidative stress has long been linked to many diseases, especially tumours. Therefore, antioxidants play a crucial role in the prevention or management of free radical-related diseases. However, most of these antioxidants have anticancer effects only if taken in large doses. Others show inadequate bioavailability due to their instability in the blood or having a hydrophilic nature that limits their permeation through the cell membrane. Therefore, entrapping antioxidants in liposomes may overcome these drawbacks as liposomes have the capability to accommodate both hydrophilic and hydrophobic compounds with a considerable stability. Additionally, liposomes have the capability to accumulate at the cancer tissue passively, due to their small sizes, with enhanced drug delivery. Additionally, liposomes can be engineered with targeting moieties to increase the delivery of chemotherapeutic agents to specific tumour cells with decreased accumulation in healthy tissues. Therefore, combined use of liposomes and antioxidants, with or without chemotherapeutic agents, is an attractive strategy to combat varies tumours. This mini review focuses on the liposomal delivery of selected antioxidants, namely ascorbic acid (AA) and alpha-lipoic acid (ALA). The contribution of these nanocarriers in enhancing the antioxidant effect of AA and ALA and consequently their anticancer potentials will be demonstrated.
机译:已知抗氧化剂通过与细胞需氧反应产生的自由基相互作用而使氧化应激最小化。长期以来,氧化应激与许多疾病特别是肿瘤有关。因此,抗氧化剂在预防或管理自由基相关疾病中起着至关重要的作用。但是,这些抗氧化剂中的大多数只有大剂量服用才具有抗癌作用。其他人则由于其在血液中的不稳定性或具有限制其透过细胞膜渗透的亲水性而显示出不足的生物利用度。因此,在脂质体中捕获抗氧化剂可以克服这些缺点,因为脂质体具有以相当大的稳定性容纳亲水和疏水化合物的能力。另外,脂质体由于体积小而具有被动地积聚在癌组织中的能力,并具有增强的药物递送。另外,可以用靶向部分改造脂质体,以增加化学治疗剂向特定肿瘤细胞的递送,同时减少在健康组织中的积累。因此,脂质体和抗氧化剂的联合使用,无论是否使用化学治疗剂,都是对抗各种肿瘤的有吸引力的策略。这篇简短的综述重点介绍了所选抗氧化剂(抗坏血酸(AA)和α-硫辛酸(ALA))的脂质体递送。这些纳米载体在增强AA和ALA的抗氧化作用以及因此其抗癌潜力中的作用将得到证明。

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