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非均匀热吸收与放射治疗相辅相成。

Heterogeneous Heat Absorption Is Complementary to Radiotherapy.

作者信息

Szasz Andras

机构信息

Biotechnics Department, Szent Istvan University, H-2040 Budaors, Hungary.

出版信息

Cancers (Basel). 2022 Feb 11;14(4):901. doi: 10.3390/cancers14040901.

Abstract

(1) Background: Hyperthermia in oncology conventionally seeks the homogeneous heating of the tumor mass. The expected isothermal condition is the basis of the dose calculation in clinical practice. My objective is to study and apply a heterogenic temperature pattern during the heating process and show how it supports radiotherapy. (2) Methods: The targeted tissue's natural electric and thermal heterogeneity is used for the selective heating of the cancer cells. The amplitude-modulated radiofrequency current focuses the energy absorption on the membrane rafts of the malignant cells. The energy partly "nonthermally" excites and partly heats the absorbing protein complexes. (3) Results: The excitation of the transmembrane proteins induces an extrinsic caspase-dependent apoptotic pathway, while the heat stress promotes the intrinsic caspase-dependent and independent apoptotic signals generated by mitochondria. The molecular changes synergize the method with radiotherapy and promote the abscopal effect. The mild average temperature (39-41 °C) intensifies the blood flow for promoting oxygenation in combination with radiotherapy. The preclinical experiences verify, and the clinical studies validate the method. (4) Conclusions: The heterogenic, molecular targeting has similarities with DNA strand-breaking in radiotherapy. The controlled energy absorption allows using a similar energy dose to radiotherapy (J/kg). The two therapies are synergistically combined.

摘要

(1) 背景:肿瘤学中的热疗传统上旨在使肿瘤块均匀受热。预期的等温条件是临床实践中剂量计算的基础。我的目标是研究并应用加热过程中的异质温度模式,并展示其如何支持放射治疗。(2) 方法:利用靶向组织的自然电学和热学异质性对癌细胞进行选择性加热。调幅射频电流将能量吸收集中在恶性细胞的膜筏上。能量部分以“非热”方式激发并部分加热吸收性蛋白质复合物。(3) 结果:跨膜蛋白的激发诱导外在的半胱天冬酶依赖性凋亡途径,而热应激促进线粒体产生的内在半胱天冬酶依赖性和非依赖性凋亡信号。分子变化使该方法与放射治疗协同作用,并促进远隔效应。温和的平均温度(39 - 41°C)与放射治疗相结合可增强血流以促进氧合。临床前经验证实了该方法,临床研究也验证了该方法。(4) 结论:异质的分子靶向与放射治疗中的DNA链断裂有相似之处。可控的能量吸收允许使用与放射治疗相似的能量剂量(焦耳/千克)。这两种疗法可协同结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc41/8870118/30676c223bfa/cancers-14-00901-g001.jpg

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