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壳聚糖及其衍生物的抗氧化特性与氧化还原调节活性:应用于癌症治疗的生物材料

Antioxidant Properties and Redox-Modulating Activity of Chitosan and Its Derivatives: Biomaterials with Application in Cancer Therapy.

作者信息

Ivanova Donika G, Yaneva Zvezdelina L

机构信息

Department of Pharmacology, Animal Physiology and Physiology Chemistry, Trakia University, Stara Zagora, Bulgaria.

出版信息

Biores Open Access. 2020 Mar 12;9(1):64-72. doi: 10.1089/biores.2019.0028. eCollection 2020.

Abstract

Many studies have shown that mitochondrial metabolism has a fundamental role in induction of carcinogenesis due to the influence of increased levels of reactive oxygen species (ROS) generation in all steps of oncogene transformation and cancer progression. It is widely accepted that the anticancer effect of conventional anticancer drugs is due to induction of oxidative stress and elevated intracellular levels of ROS, which alter the redox homeostasis of cancer cells. On the other hand, the harmful side effects of conventional anticancer chemotherapeutics are also due to increased production of ROS and disruption of redox homeostasis of normal cells and tissues. Therefore, there is a growing interest toward the development of natural antioxidant compounds from various sources, which could impact the redox state of cancer and normal cells by different pathways and could prevent damage from oxidant-mediated reactions. It is known that chitosan exhibits versatile biological properties, including biodegradability, biocompatibility, and a less toxic nature. Because of its antioxidant, antibacterial, anticancer, anti-inflammatory, and immunostimulatory activities, the biopolymer has been used in a wide variety of pharmaceutical, biomedical, food industry, health, and agricultural applications and has been classified as a new physiologically bioactive material.

摘要

许多研究表明,由于在癌基因转化和癌症进展的所有步骤中活性氧(ROS)生成水平增加的影响,线粒体代谢在致癌作用的诱导中具有重要作用。人们普遍认为,传统抗癌药物的抗癌作用是由于诱导氧化应激和细胞内ROS水平升高,从而改变癌细胞的氧化还原稳态。另一方面,传统抗癌化疗药物的有害副作用也是由于ROS产生增加以及正常细胞和组织的氧化还原稳态破坏。因此,人们对从各种来源开发天然抗氧化化合物的兴趣日益浓厚,这些化合物可以通过不同途径影响癌症和正常细胞的氧化还原状态,并可以防止氧化介导反应造成的损害。已知壳聚糖具有多种生物学特性,包括生物可降解性、生物相容性和低毒性。由于其抗氧化、抗菌、抗癌、抗炎和免疫刺激活性,这种生物聚合物已被广泛应用于各种制药、生物医学、食品工业、健康和农业领域,并被归类为一种新型生理活性材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6df/7097683/2448a76b7150/biores.2019.0028_figure1.jpg

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