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基于二硫键的聚合物药物载体用于癌症化疗及哺乳动物中的相关氧化还原环境。

Disulfide bond based polymeric drug carriers for cancer chemotherapy and relevant redox environments in mammals.

机构信息

School of Pharmaceutical Science, Shandong University, Jinan, P. R. China.

Binzhou Tuberculosis Prevention and Treatment Hospital, Binzhou, P. R. China.

出版信息

Med Res Rev. 2018 Sep;38(5):1485-1510. doi: 10.1002/med.21485. Epub 2018 Jan 17.

Abstract

Increasing numbers of disulfide linkage-employing polymeric drug carriers that utilize the reversible peculiarity of this unique covalent bond have been reported. The reduction-sensitive disulfide bond is usually employed as a linkage between hydrophilic and hydrophobic polymers, polymers and drugs, or as cross-linkers in polymeric drug carriers. These polymeric drug carriers are designed to exploit the significant redox potential difference between the reducing intracellular environments and relatively oxidizing extracellular spaces. In addition, these drug carriers can release a considerable amount of anticancer drug in response to the reducing environment when they reach tumor tissues, effectively improving antitumor efficacy. This review focuses on various disulfide linkage-employing polymeric drug carriers. Important redox thiol pools, including GSH/GSSG, Cys/CySS, and Trx1, as well as redox environments in mammals, will be introduced.

摘要

越来越多的采用二硫键的聚合药物载体被报道,这些载体利用了这种独特的共价键的可逆特性。还原敏感的二硫键通常被用作亲水性和疏水性聚合物、聚合物和药物之间的连接,或作为聚合药物载体中的交联剂。这些聚合药物载体旨在利用还原细胞内环境和相对氧化细胞外空间之间的显著氧化还原电位差。此外,当这些药物载体到达肿瘤组织时,它们可以在还原环境下释放相当数量的抗癌药物,从而有效提高抗肿瘤疗效。本综述重点介绍了各种采用二硫键的聚合药物载体。将介绍重要的氧化还原巯基池,包括 GSH/GSSG、Cys/CySS 和 Trx1,以及哺乳动物中的氧化还原环境。

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