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Experimental ex-vivo validation of PMMA-based bone cements loaded with magnetic nanoparticles enabling hyperthermia of metastatic bone tumors

机译:载有磁性纳米颗粒的基于pmma的骨水泥的实验性体外验证使得转移性骨肿瘤的热疗成为可能

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摘要

Percutaneous vertebroplasty comprises the injection of Polymethylmethacrylate (PMMA) bone cement into vertebrae and can be used for the treatment of compression fractures of vertebrae. Metastatic bone tumors can cause such compression fractures but are not treated when injecting PMMA-based bone cement. Hyperthermia of tumors can on the other hand be attained by placing magnetic nanoparticles (MNPs) in an alternating magnetic field (AMF). Loading the PMMA-based bone cement with MNPs could both serve vertebra stabilization and metastatic bone tumor hyperthermia when subjecting this PMMA-MNP to an AMF. A dedicated pancake coil is designed with a self-inductance of 10 mu H in series with a capacitance of 0.1 mu F that acts as resonant inductor-capacitor circuit to generate the AMF. The thermal rise is appraised in beef vertebra placed at 10 cm from the AMF generating circuit using optical temperatures sensors, i. e. in the center of thePMMA-MNPbone cement, which is located in the vicinity of metastatic bone tumors in clinical applications; and in the spine, which needs to be safeguarded to high temperature exposures. Results show a temperature rise of about 7 degrees C in PMMA-MNP whereas the temperature rise in the spine remains limited to 1 degrees C. Moreover, multicycles heating of PMMA-MNP is experimentally verified, validating the technical feasibility of having PMMA-MNP as basic component for percutaneous vertebroplasty combined with hyperthermia treatment of metastatic bone tumors.
机译:经皮椎体成形术包括将聚甲基丙烯酸甲酯(PMMA)骨水泥注射到椎骨中,可用于治疗椎体压缩性骨折。转移性骨肿瘤可导致此类压迫性骨折,但在注射基于PMMA的骨水泥时无法得到治疗。另一方面,可以通过将磁性纳米颗粒(MNP)置于交变磁场(AMF)中来实现肿瘤的热疗。当将PMMA-MNP置于AMF中时,用MNP加载基于PMMA的骨水泥可同时起到椎骨稳定和转移性骨肿瘤热疗的作用。专门设计的煎饼线圈具有10μH的自感和0.1μF的串联电容,用作谐振电感器-电容器电路以产生AMF。使用光学温度传感器,即,在距AMF产生电路10 cm处的牛肉椎骨中评估温度升高。 e。在临床应用中位于转移性骨肿瘤附近的PMMA-MNP骨水泥的中心;和脊椎,需要保护其免受高温影响。结果显示,PMMA-MNP的温度升高约7摄氏度,而脊柱中的温度升高仍限制在1摄氏度。此外,对PMMA-MNP的多循环加热进行了实验验证,验证了将PMMA-MNP作为经皮椎体成形术的基本成分与热疗相结合治疗转移性骨肿瘤。

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