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聚合物胶束铺平道路:喜树碱递送的最新突破增强化疗效果。

Polymeric micelles paving the Way: Recent breakthroughs in camptothecin delivery for enhanced chemotherapy.

机构信息

Nanotechnology Research Center, Pharmaceutical Technology Institute, Mashhad University of Medical Sciences, Mashhad, Iran.

Department of Medical Biotechnology and Nanotechnology, School of Medicine, Mashhad University of Medical Sciences, Mashhad, Iran.

出版信息

Int J Pharm. 2024 Jun 25;659:124292. doi: 10.1016/j.ijpharm.2024.124292. Epub 2024 May 30.

Abstract

Camptothecin, a natural alkaloid, was first isolated from the bark and stem of the Camptotheca acuminate tree in China. It, along with its analogs, has demonstrated potent anti-cancer activity in preclinical studies, particularly against solid tumors such as lung, breast, ovarian, and colon cancer. Despite its promising anti-cancer activity, the application of camptothecin is limited due to its poor solubility, toxicity, and limited biodistribution. Nanotechnology-based drug delivery systems have been used to overcome limited bioavailability and ensure greater biodistribution after administration. Additionally, various drug delivery systems, particularly polymeric micelles, have been investigated to enhance the solubility, stability, and efficacy of camptothecin. Polymeric micelles offer a promising approach for the delivery of camptothecin. Polymeric micelles possess a core-shell structure, with a typical hydrophobic core, which exhibits a high capacity to incorporate hydrophobic drugs. The structure of polymeric micelles can be engineered to have a high drug loading capacity, thereby enabling them to carry a large amount of hydrophobic drug within their core. The shell portion of polymeric micelles is composed of hydrophilic polymers Furthermore, the hydrophilic segment of polymeric micelles plays an important role in protecting against the reticuloendothelial system (RES). This review provides a discussion on recent research and developments in the delivery of camptothecin using polymeric micelles for the treatment of cancers.

摘要

喜树碱是一种天然生物碱,最初从中国喜树的树皮和茎中分离出来。在临床前研究中,它及其类似物表现出了强大的抗癌活性,特别是对肺癌、乳腺癌、卵巢癌和结肠癌等实体瘤。尽管喜树碱具有良好的抗癌活性,但由于其溶解度差、毒性大、生物分布有限,其应用受到限制。基于纳米技术的药物传递系统已被用于克服生物利用度有限的问题,并确保给药后有更大的生物分布。此外,各种药物传递系统,特别是聚合物胶束,已被用于提高喜树碱的溶解度、稳定性和疗效。聚合物胶束为喜树碱的传递提供了一种有前途的方法。聚合物胶束具有核壳结构,典型的疏水核,具有高的能力纳入疏水性药物。聚合物胶束的结构可以被设计为具有高的载药能力,从而能够在其核心内携带大量的疏水性药物。聚合物胶束的壳部分由亲水聚合物组成。此外,聚合物胶束的亲水段在防止网状内皮系统(RES)方面起着重要作用。本综述讨论了使用聚合物胶束传递喜树碱治疗癌症的最新研究和进展。

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