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磁性纳米催化剂作为多功能平台,通过合成抗癌药物和促进芬顿反应,在癌症治疗中发挥作用。

Magnetic nanocatalysts as multifunctional platforms in cancer therapy through the synthesis of anticancer drugs and facilitated Fenton reaction.

机构信息

Department of Cerebrovascular Diseases, The Second Affiliated Hospital of Zhengzhou University, Zhengzhou, PR China.

Department of Nanotechnology, Faculty of Advanced Sciences and Technology, Tehran Medical Sciences, Islamic Azad University, Tehran, Iran.

出版信息

J Adv Res. 2020 Dec 5;30:171-184. doi: 10.1016/j.jare.2020.12.001. eCollection 2021 May.

Abstract

BACKGROUND

Heterocyclic compounds have always been used as a core portion in the development of anticancer drugs. However, there is a pressing need for developing inexpensive and simple alternatives to high-cost and complex chemical agents-based catalysts for large-scale production of heterocyclic compounds. Also, development of some smart platforms for cancer treatment based on nanoparticles (NPs) which facilitate Fenton reaction have been widely explored by different scientists. Magnetic NPs not only can serve as catalysts in the synthesis of heterocyclic compounds with potential anticancer properties, but also are widely used as smart agents in targeting cancer cells and inducing Fenton reactions.

AIM OF REVIEW

Therefore, in this review we aim to present an updated summary of the reports related to the main clinical or basic application and research progress of magnetic NPs in cancer as well as their application in the synthesis of heterocyclic compounds as potential anticancer drugs. Afterwards, specific tumor microenvironment (TME)-responsive magnetic nanocatalysts for cancer treatment through triggering Fenton-like reactions were surveyed. Finally, some ignored factors in the design of magnetic nanocatalysts- triggered Fenton-like reaction, challenges and future perspective of magnetic nanocatalysts-assisted synthesis of heterocyclic compounds and selective cancer therapy were discussed.This review may pave the way for well-organized translation of magnetic nanocatalysts in cancer therapy from the bench to the bedside.

摘要

背景

杂环化合物一直被用作抗癌药物开发的核心部分。然而,迫切需要开发廉价且简单的替代品,以替代基于高成本和复杂化学试剂的催化剂,用于大规模生产杂环化合物。此外,不同的科学家已经广泛探索了基于纳米粒子(NPs)的一些用于癌症治疗的智能平台,这些平台促进了芬顿反应。磁性 NPs 不仅可以作为具有潜在抗癌特性的杂环化合物合成中的催化剂,而且还广泛用作靶向癌细胞和诱导芬顿反应的智能试剂。

综述目的

因此,在本次综述中,我们旨在总结与磁性 NPs 在癌症中的主要临床或基础应用和研究进展相关的报告,并概述其在作为潜在抗癌药物的杂环化合物合成中的应用。随后,调查了通过触发类芬顿反应用于癌症治疗的特定肿瘤微环境(TME)响应性磁性纳米催化剂。最后,讨论了磁性纳米催化剂触发类芬顿反应设计中被忽视的一些因素、磁性纳米催化剂辅助杂环化合物合成和选择性癌症治疗的挑战和未来展望。本综述可能为将磁性纳米催化剂在癌症治疗中的应用从实验室转化为临床铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d20a/8132204/ee5e728eb55e/ga1.jpg

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