Magnetic Nanoparticles In Hyperthermia Therapy: A Mini-Review

Mostafa Yusefi, K. Shameli, S. N. A. Sukri
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引用次数: 2

Abstract

The activation of MNPs for hyperthermia therapy via an external alternating magnetic field is an interesting method in targeted cancer therapy. This mini-review explains new developments and implications of magnetic nanofluids mediated magnetic hyperthermia for their potential use in future clinical settings. The external alternating magnetic field generates heat in the tumor area to eliminate cancer cells. Depending on the tumor type and targeted area, several kinds of MNPs with different coating agents of various morphology and surface charge have been developed. The tunable physiochemical characteristics of MNPs enhance their heating capability. In addition, heating efficiency is strongly associated with the amount of the applied magnetic field and frequency. The great efforts have offered promising preclinical trials of magnetic hyperthermia via MNPs as a smart nanoagent. MNPs are very appropriate to be considered as a heating source in MHT and prospective research in this field will lead to tackle the problems from chemotherapy and introduce promising therapeutic techniques and nanodrug formulations for remotely controlled drug release and anticancer effects. This mini-review aims to pinpoint synthesis and structural analysis of various magnetic nanoparticles examined for magnetic hyperthermia therapy and controlled drug release in cancer treatment.
通过外部交变磁场激活MNPs进行热疗是一种有趣的靶向癌症治疗方法。这篇小型综述解释了磁性纳米流体介导的磁热疗的新发展及其在未来临床应用的潜在意义。外部交变磁场在肿瘤区域产生热量以消灭癌细胞。根据肿瘤类型和靶向区域的不同,已经开发出几种具有不同形态和表面电荷的不同涂层剂的MNPs。MNPs的可调理化特性增强了其加热能力。此外,加热效率与外加磁场的大小和频率密切相关。这些巨大的努力为通过MNPs作为智能纳米剂的磁热疗提供了有希望的临床前试验。MNPs非常适合作为MHT的热源,该领域的前瞻性研究将解决化疗中的问题,并引入有前途的治疗技术和纳米药物配方,以实现远程控制药物释放和抗癌效果。这篇小型综述旨在精确地合成和结构分析各种磁性纳米颗粒,用于磁热疗法和癌症治疗中的药物释放控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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