探索和验证基于射频电磁场的谐振腔中的加热动力学,用于小鼠热疗研究。

IF 1.6 4区 生物学 Q3 BIOLOGY
Electromagnetic Biology and Medicine Pub Date : 2024-07-02 Epub Date: 2024-06-10 DOI:10.1080/15368378.2024.2361873
Lijiao Jiao, Tao Zhang, Peng Gao, Chao Zhou, Xiang Mei, Wenjuan Zhang, Yonghui Lu, Lei Zhang, Zhou Zhou, Zhengping Yu, Mindi He
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引用次数: 0

摘要

研究表明,轻度全身热疗可通过免疫调节机制发挥抗肿瘤作用。在广泛应用于临床之前,有必要在动物身上进行大量的机理研究,以坚持循证原则。基于射频电磁场(RF-EMF)的加热设备可能是热疗的一个不错选择,但设备的加热特性,包括结构设计、电磁和热剂量测定以及热疗的生物效应都需要很好地阐明。在此,我们报告了由 1800 MHz 固体源激发的谐振腔(RC)的加热特性研究。RC 中的电磁场由 24 个静态反射器搅拌,这使得电磁均匀性评估中的电场强度标准偏差低于 3 dB。在暴露场景中,六只自由移动的小鼠被分别装入不同的箱子,同时暴露在遥控中。采用 12 平面波数值模拟法计算了暴露小鼠的电磁场能量吸收和分布情况。通过调节辐射源的输出功率,实现了暴露小鼠不同程度的核心体温升高。在暴露小鼠的肝、肺和肌肉中检测到热休克蛋白(HSPs)的过度表达,但在大脑中没有检测到。暴露于 RC 后,血清中具有代表性的炎症细胞因子、TNF-α 和 IL-10 水平升高。根据加热特性研究和验证,所应用的 RC 将是用于小鼠全身温和热疗效应研究的合格加热系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring and validating heating dynamics in a radio-frequency electromagnetic field-based resonant chamber for mouse hyperthermia research.

Mild whole-body hyperthermia has been shown to have anti-tumor effects through an immune-modulating mechanism. Before it is widely applied in the clinic, tremendous mechanistic research in animals is necessary to adhere to evidence-based principles. The radio frequency electromagnetic field (RF-EMF) based heating facility could be a good choice for hyperthermia treatment, but the heating characteristics of a facility, including structure design, electromagnetic and thermal dosimetry, and the biologic effects of hyperthermia, need to be well elucidated. Here, we reported the heating characteristic study on a resonant chamber (RC) excited by a 1800 MHz solid source. The EMF in the RC was stirred by 24 static reflectors, which resulted in the standard deviation of electric field intensity being below 3 dB in the EM homogeneity evaluation. For the exposure scenario, six free-moving mice were loaded into separate cases and exposed simultaneously in the RC. The EMF energy absorption and distribution in exposed mice were calculated with the 12-plane-waves method of numerical simulation. Different levels of core body temperature increment in exposed mice were achieved through regulation of the source output power. Overexpression of heat shock proteins (HSPs) was detected in the liver, lung and muscle, but not in the brain of the exposed mice. The levels of representative inflammatory cytokines in the serum, TNF-α and IL-10 increased post RC exposure. Based on the heating characteristic study and validation, the applied RC would be a qualified heating system for mild whole-body hyperthermia effect research in mice.

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来源期刊
CiteScore
3.60
自引率
11.80%
发文量
33
审稿时长
>12 weeks
期刊介绍: Aims & Scope: Electromagnetic Biology and Medicine, publishes peer-reviewed research articles on the biological effects and medical applications of non-ionizing electromagnetic fields (from extremely-low frequency to radiofrequency). Topic examples include in vitro and in vivo studies, epidemiological investigation, mechanism and mode of interaction between non-ionizing electromagnetic fields and biological systems. In addition to publishing original articles, the journal also publishes meeting summaries and reports, and reviews on selected topics.
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