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用于磁热疗诱导癌症治疗的工程化氧化铁纳米平台的最新进展及临床应用

Recent advancements and clinical aspects of engineered iron oxide nanoplatforms for magnetic hyperthermia-induced cancer therapy.

作者信息

Rajan Arunima, Laha Suvra S, Sahu Niroj Kumar, Thorat Nanasaheb D, Shankar Balakrishnan

机构信息

Centre for Flexible Electronics and Advanced Materials, Amrita Vishwa Vidyapeetham, Amritapuri, 690525, India.

Centre for Nano Science and Engineering (CeNSE), Indian Institute of Science, Bangalore, 560012, India.

出版信息

Mater Today Bio. 2024 Nov 28;29:101348. doi: 10.1016/j.mtbio.2024.101348. eCollection 2024 Dec.

Abstract

The pervasiveness of cancer is a global health concern posing a major threat in terms of mortality and incidence rates. Magnetic hyperthermia (MHT) employing biocompatible magnetic nanoparticles (MNPs) ensuring selective attachment to target sites, better colloidal stability and conserving nearby healthy tissues has garnered widespread acceptance as a promising clinical treatment for cancer cell death. In this direction, multifunctional iron oxide nanoparticles (IONPs) are of significant interest for improved cancer care due to finite size effect associated with inherent magnetic properties. This review offers a comprehensive perception of IONPs-mediated MHT from fundamentals to clinical translation, by elucidating the underlying mechanism of heat generation and the related influential factors. Biological mechanisms underlying MHT-mediated cancer cell death such as reactive oxygen species generation and lysosomal membrane permeabilization have been discussed in this review. Recent advances in biological interactions (in vitro and in vivo) of IONPs and their translation to clinical MHT applications are briefed. New frontiers and prospects of promising combination cancer therapies such as MHT with photothermal therapy, cancer starvation therapy and sonodynamic therapy are presented in detail. Finally, this review concludes by addressing current crucial challenges and proposing possible solutions to achieve clinical success.

摘要

癌症的普遍性是一个全球健康问题,在死亡率和发病率方面构成重大威胁。利用生物相容性磁性纳米颗粒(MNPs)的磁热疗(MHT)可确保选择性附着于靶位点、具有更好的胶体稳定性并保护附近的健康组织,作为一种有前景的癌细胞死亡临床治疗方法已获得广泛认可。在这方面,由于与固有磁性相关的有限尺寸效应,多功能氧化铁纳米颗粒(IONPs)对于改善癌症治疗具有重要意义。本综述通过阐明产热的潜在机制和相关影响因素,提供了从基础到临床转化的IONPs介导的MHT的全面认识。本综述讨论了MHT介导的癌细胞死亡的生物学机制,如活性氧的产生和溶酶体膜通透性。简要介绍了IONPs生物相互作用(体外和体内)的最新进展及其向临床MHT应用的转化。详细介绍了有前景的联合癌症治疗的新前沿和前景,如MHT与光热疗法、癌症饥饿疗法和声动力疗法。最后,本综述通过解决当前的关键挑战并提出实现临床成功的可能解决方案来得出结论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86ca/11636219/b53ea1561a18/ga1.jpg

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