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Optimization Study on Specific Loss Power in Superparamagnetic Hyperthermia with Magnetite Nanoparticles for High Efficiency in Alternative Cancer Therapy

机译:磁铁矿纳米粒子在替代癌症治疗中高效率的特定损失功率优化研究

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摘要

The cancer therapy with the lowest possible toxicity is today an issue that raises major difficulties in treating malignant tumors because chemo- and radiotherapy currently used in this field have a high degree of toxicity and in many cases are ineffective. Therefore, alternative solutions are rapidly being sought in cancer therapy, in order to increase efficacy and a reduce or even eliminate toxicity to the body. One of the alternative methods that researchers believe may be the method of the future in cancer therapy is superparamagnetic hyperthermia (SPMHT), because it can be effective in completely destroying tumors while maintaining low toxicity or even without toxicity on the healthy tissues. Superparamagnetic hyperthermia uses the natural thermal effect in the destruction of cancer cells, obtained as a result of the phenomenon of superparamagnetic relaxation of the magnetic nanoparticles (SPMNPs) introduced into the tumor; SPMNPs can heat the cancer cells to 42–43 °C under the action of an external alternating magnetic field with frequency in the range of hundreds of kHz. However, the effectiveness of this alternative method depends very much on finding the optimal conditions in which this method must be applied during the treatment of cancer. In addition to the type of magnetic nanoparticles and the biocompatibility with the biological tissue or nanoparticles biofunctionalization that must be appropriate for the intended purpose a key parameter is the size of the nanoparticles. Also, establishing the appropriate parameters for the external alternating magnetic field (AMF), respectively the amplitude and frequency of the magnetic field are very important in the efficiency and effectiveness of the magnetic hyperthermia method. This paper presents a 3D computational study on specific loss power (Ps) and heating temperature (ΔT) which allows establishing the optimal conditions that lead to efficient heating of Fe3O4 nanoparticles, which were found to be the most suitable for use in superparamagnetic hyperthermia (SPMHT), as a non-invasive and alternative technique to chemo- and radiotherapy. The size (diameter) of the nanoparticles (D), the amplitude of the magnetic field (H) and the frequency (f) of AMF were established in order to obtain maximum efficiency in SPMHT and rapid heating of magnetic nanoparticles at the required temperature of 42–43 °C for irreversible destruction of tumors, without affecting healthy tissues. Also, an analysis on the amplitude of the AMF is presented, and how its amplitude influences the power loss and, implicitly, the heating temperature, observables necessary in SPMHT for the efficient destruction of tumor cells. Following our 3D study, we found for Fe3O4 nanoparticles the optimal diameter of ~16 nm, the optimal range for the amplitude of the magnetic field of 10–25 kA/m and the optimal frequency within the biologically permissible limit in the range of 200–500 kHz. Under the optimal conditions determined for the nanoparticle diameter of 16.3 nm, the magnetic field of 15 kA/m and the frequency of 334 kHz, the magnetite nanoparticles can be quickly heated to obtain the maximum hyperthermic effect on the tumor cells: in only 4.1–4.3 s the temperature reaches 42–43 °C, required in magnetic hyperthermia, with major benefits in practical application in vitro and in vivo, and later in clinical trials.
机译:目前,癌症治疗最低的癌症治疗是一种在治疗恶性肿瘤中提出重大困难的问题,因为目前在该领域使用的化疗和放射疗法具有高度毒性,并且在许多情况下是无效的。因此,癌症治疗中正在迅速寻求替代解决方案,以提高疗效和减少甚至消除对身体的毒性。研究人员认为可能是癌症治疗中未来的方法之一是超顺磁性热疗(SPMHT),因为它可以在完全破坏肿瘤时有效,同时保持低毒性或甚至对健康组织对健康组织的毒性。超顺磁热疗在癌细胞破坏中使用天然热效应,得到由于磁性纳米颗粒(SPMNP)引入肿瘤的超顺磁性弛豫现象;在外部交流场的作用下,SPMNP可以在频率的情况下将癌细胞加热至42-43°C,频率在数百kHz范围内。然而,这种替代方法的有效性非常依赖于发现在治疗癌症期间必须应用这种方法的最佳条件。除了磁性纳米颗粒的类型和与生物组织或纳米颗粒的生物相容性外,必须适用于预期目的的关键参数是纳米颗粒的尺寸。而且,建立外部交流磁场(AMF)的适当参数,分别磁场的幅度和频率在磁体热疗方法的效率和有效性中非常重要。本文提出了对特定损耗功率(PS)和加热温度(ΔT)的3D计算研究,其允许建立导致Fe3O4纳米颗粒的有效加热的最佳条件,这被发现是最适合于超顺磁性热疗(SPMHT ),作为化学和放射治疗的非侵入性和替代技术。建立纳米颗粒(D)的尺寸(直径),磁场(H)的幅度和AMF的频率(F),以获得SPMHT的最大效率,并在所需温度下的磁性纳米粒子的快速加热42-43°C对于不可逆破坏肿瘤,不影响健康组织。此外,提出了关于AMF幅度的分析,以及其幅度如何影响功率损失,并且隐含地,加热温度,SPMHT中所需的可观察结果,以便在肿瘤细胞的有效破坏中。在我们的3D研究之后,我们发现FE3O4纳米颗粒的最佳直径〜16nm,磁场幅度的最佳范围为10-25ka / m,在生物学允许的极限范围内的最佳频率为200- 500 kHz。在确定为纳米颗粒直径为16.3nm的最佳条件下,可以快速加热15ka / m的磁场和334kHz的频率,磁铁矿纳米颗粒以获得最大的肿瘤细胞的热热效果:仅在4.1- 4.3 S温度达到42-43°C,在磁体热疗中需要,具有在体外和体内实际应用中的主要益处,后来在临床试验中。

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