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β-环糊精偶联药物递药系统在癌症治疗中的新方法。

A New Approach for β-cyclodextrin Conjugated Drug Delivery System in Cancer Therapy.

机构信息

Department of Pharmaceutical Technology, Faculty of Pharmaceutical Sciences, UCSI University, No. 1, Jalan Menara Gading, Taman Connaught, Cheras, 56000 Kuala Lumpur, Malaysia.

出版信息

Curr Drug Deliv. 2022;19(3):266-300. doi: 10.2174/1567201818666211006103452.

Abstract

Natural cyclodextrins (CDs) are macrocyclic starch molecules discovered a decade ago, in which α-, β-, and γ-CD were commonly used. They originally acted as pharmaceutical excipients to enhance the aqueous solubility and alter the physicochemical properties of drugs that fall under class II and IV categories according to the Biopharmaceutics Classification System (BPS). The industrial significance of CDs became apparent during the 1970s as scientists started to discover more of CD's potential in chemical modifications and the formation of inclusion complexes. CDs can help in masking and prolonging the half-life of drugs used in cancer. Multiple optimization techniques were discovered to prepare the derivatives of CDs and increase their complexation and drug delivery efficiency. In recent years, due to the advancement of nanotechnology in pharmaceutical sectors, there has been growing interest in CDs. This review mainly focuses on the formulation of cyclodextrin conjugated nanocarriers using graphenes, carbon nanotubes, nanosponges, hydrogels, dendrimers, and polymers to achieve drug-release characteristics specific to cells. These approaches benefit the discovery of novel anti-cancer treatments, solubilization of new drug compounds, and cell specific drug delivery properties. Due to these unique properties of CDs, they are essential in achieving and enhancing tumor-specific cancer treatment.

摘要

天然环糊精(CDs)是 10 年前发现的一种大环淀粉分子,其中α-、β-和γ-CD 通常被使用。它们最初作为药物赋形剂,以提高根据生物药剂分类系统(BPS)属于 II 类和 IV 类的药物的水溶解度并改变其物理化学性质。20 世纪 70 年代,科学家开始在化学修饰和形成包合物方面发现更多 CD 的潜力,CD 的工业意义变得明显。CD 可以帮助掩盖和延长用于癌症的药物的半衰期。发现了多种优化技术来制备 CD 的衍生物,并提高其络合和药物输送效率。近年来,由于制药领域纳米技术的进步,人们对 CD 越来越感兴趣。这篇综述主要关注使用石墨烯、碳纳米管、纳米海绵、水凝胶、树枝状聚合物和聚合物制备环糊精缀合纳米载体,以实现针对细胞的特定药物释放特性。这些方法有助于发现新的抗癌治疗方法、新药物化合物的增溶以及细胞特异性药物输送特性。由于 CDs 的这些独特性质,它们对于实现和增强肿瘤特异性癌症治疗至关重要。

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