首页> 外文期刊>International journal of hyperthermia: The official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group >In vivo magnetic nanoparticle hyperthermia: a review on preclinical studies, low-field nano-heaters, noninvasive thermometry and computer simulations for treatment planning
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In vivo magnetic nanoparticle hyperthermia: a review on preclinical studies, low-field nano-heaters, noninvasive thermometry and computer simulations for treatment planning

机译:体内磁性纳米粒子热疗:治疗计划的临床前研究,低领域纳米加热器,非侵入性温度和计算机模拟综述

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Magnetic nanoparticle hyperthermia (MNH) is a promising nanotechnology-based cancer thermal therapy that has been approved for clinical use, together with radiation therapy, for treating brain tumors. Almost ten years after approval, few new clinical applications had appeared, perhaps because it cannot benefit from the gold standard noninvasive MRI thermometry technique, since static magnetic fields inhibit heat generation. This might limit its clinical use, in particular as a single therapeutic modality. In this article, we review the in?vivo MNH preclinical studies, discussing results of the last two decades with emphasis on safety as a clinical criteria, the need for low-field nano-heaters and noninvasive thermal dosimetry, and the state of the art of computational modeling for treatment planning using MNH. Limitations to more effective clinical use are discussed, together with suggestions for future directions, such as the development of ultrasound-based, computed tomography-based or magnetic nanoparticle-based thermometry to achieve greater impact on clinical translation of MNH.
机译:磁性纳米粒子热疗(MnH)是一种有前途的纳米技术的癌症热疗,已被批准用于临床用途,以及放射治疗治疗脑肿瘤。批准近十年,很少有新的临床应用,也许是因为它不能受益于金标准的非侵入式MRI温度技术,因为静态磁场抑制了发热。这可能会限制其临床用途,特别是作为单一治疗方式。在本文中,我们审查了in?vivo mnh临床前研究,讨论了过去二十年的结果,重点是安全作为临床标准,需要对低领域纳米加热器和非侵入性热量剂量的需求,以及现有技术用MnH治疗规划计算建模。讨论了更有效的临床用途的限制,以及对未来方向的建议,例如基于超声基,基于计算的基于扫描的或磁性纳米粒子基的高温测量的发展,从而对MnH的临床翻译产生了更大的影响。

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