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用于金属基药物和光敏剂递送的聚合物纳米系统:现状与最新进展

Polymeric Nanosystems Applied for Metal-Based Drugs and Photosensitizers Delivery: The State of the Art and Recent Advancements.

作者信息

Dantas Kele Cristina Ferreira, Rosário Jânia Dos Santos, Silva-Caldeira Priscila Pereira

机构信息

Departamento de Química, Centro Federal de Educação Tecnológica de Minas Gerais, Avenida Amazonas 5253, Belo Horizonte 30421-169, MG, Brazil.

出版信息

Pharmaceutics. 2022 Jul 20;14(7):1506. doi: 10.3390/pharmaceutics14071506.

Abstract

Nanotechnology-based approaches for targeting the delivery and controlled release of metal-based therapeutic agents have revealed significant potential as tools for enhancing the therapeutic effect of metal-based agents and minimizing their systemic toxicities. In this context, a series of polymer-based nanosized systems designed to physically load or covalently conjugate metal-based therapeutic agents have been remarkably improving their bioavailability and anticancer efficacy. Initially, the polymeric nanocarriers were applied for platinum-based chemotherapeutic agents resulting in some nanoformulations currently in clinical tests and even in medical applications. At present, these nanoassemblies have been slowly expanding for nonplatinum-containing metal-based chemotherapeutic agents. Interestingly, for metal-based photosensitizers (PS) applied in photodynamic therapy (PDT), especially for cancer treatment, strategies employing polymeric nanocarriers have been investigated for almost 30 years. In this review, we address the polymeric nanocarrier-assisted metal-based therapeutics agent delivery systems with a specific focus on non-platinum systems; we explore some biological and physicochemical aspects of the polymer-metallodrug assembly. Finally, we summarize some recent advances in polymeric nanosystems coupled with metal-based compounds that present potential for successful clinical applications as chemotherapeutic or photosensitizing agents. We hope this review can provide a fertile ground for the innovative design of polymeric nanosystems for targeting the delivery and controlled release of metal-containing therapeutic agents.

摘要

基于纳米技术的方法用于靶向递送和控制释放金属基治疗剂,已显示出作为增强金属基药剂治疗效果并将其全身毒性降至最低的工具的巨大潜力。在这种情况下,一系列旨在物理负载或共价结合金属基治疗剂的基于聚合物的纳米系统显著提高了它们的生物利用度和抗癌功效。最初,聚合物纳米载体被应用于铂基化疗药物,导致一些纳米制剂目前正在进行临床试验甚至已应用于医学。目前,这些纳米组装体已逐渐扩展到不含铂的金属基化疗药物。有趣的是,对于应用于光动力疗法(PDT)(尤其是癌症治疗)的金属基光敏剂(PS),采用聚合物纳米载体的策略已经研究了近30年。在这篇综述中,我们阐述了聚合物纳米载体辅助的金属基治疗剂递送系统,特别关注非铂系统;我们探讨了聚合物-金属药物组装体的一些生物学和物理化学方面。最后,我们总结了聚合物纳米系统与金属基化合物结合的一些最新进展,这些进展显示出作为化疗或光敏剂成功临床应用的潜力。我们希望这篇综述能够为靶向递送和控制释放含金属治疗剂的聚合物纳米系统的创新设计提供丰富的思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1bb/9320085/e1e50734ec01/pharmaceutics-14-01506-g001.jpg

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