30.5吉赫兹正弦波暴露对胶质母细胞瘤类器官的影响
On the effects of 30.5 GHz sinusoidal wave exposure on glioblastoma organoids.
作者信息
Rampazzo Elena, Persano Luca, Karim Nissar, Hodgking George, Pinto Rosanna, Casciati Arianna, Tanori Mirella, Zambotti Alessandro, Bresolin Silvia, Cani Alice, Pannicelli Alessandro, Davies Ilan W, Hancock Cristopher, Palego Cristiano, Viola Giampietro, Mancuso Mariateresa, Merla Caterina
机构信息
Department of Women's and Children's Health (SDB), University of Padova, Padova, Italy.
Istituto di Ricerca Pediatrica Città della Speranza, Padova, Italy.
出版信息
Front Oncol. 2024 May 31;14:1307516. doi: 10.3389/fonc.2024.1307516. eCollection 2024.
INTRODUCTION
Glioblastoma (grade IV) is the most aggressive primary brain tumor in adults, representing one of the biggest therapeutic challenges due to its highly aggressive nature. In this study, we investigated the impact of millimeter waves on tridimensional glioblastoma organoids derived directly from patient tumors. Our goal was to explore novel therapeutic possibilities in the fight against this challenging disease.
METHODS
The exposure setup was meticulously developed in-house, and we employed a comprehensive dosimetry approach, combining numerical and experimental methods. Biological endpoints included a global transcriptional profiling analysis to highlight possible deregulated pathways, analysis of cell morphological changes, and cell phenotypic characterization which are all important players in the control of glioblastoma progression.
RESULTS AND DISCUSSION
Our results revealed a significant effect of continuous millimeter waves at 30.5 GHz on cell proliferation and apoptosis, although without affecting the differentiation status of glioblastoma cells composing the organoids. Excitingly, when applying a power level of 0.1 W (Root Mean Square), we discovered a remarkable (statistically significant) therapeutic effect when combined with the chemotherapeutic agent Temozolomide, leading to increased glioblastoma cell death. These findings present a promising interventional window for treating glioblastoma cells, harnessing the potential therapeutic benefits of 30.5 GHz CW exposure. Temperature increase during treatments was carefully monitored and simulated with a good agreement, demonstrating a negligible involvement of the temperature elevation for the observed effects. By exploring this innovative approach, we pave the way for improved future treatments of glioblastoma that has remained exceptionally challenging until now.
引言
胶质母细胞瘤(IV级)是成人中最具侵袭性的原发性脑肿瘤,由于其高度侵袭性,是最大的治疗挑战之一。在本研究中,我们研究了毫米波对直接源自患者肿瘤的三维胶质母细胞瘤类器官的影响。我们的目标是探索对抗这种具有挑战性疾病的新治疗可能性。
方法
暴露装置是在内部精心开发的,我们采用了综合剂量测定方法,结合数值和实验方法。生物学终点包括全面的转录谱分析以突出可能失调的途径、细胞形态变化分析和细胞表型特征,这些都是控制胶质母细胞瘤进展的重要因素。
结果与讨论
我们的结果显示,30.5 GHz的连续毫米波对细胞增殖和凋亡有显著影响,尽管不影响构成类器官的胶质母细胞瘤细胞的分化状态。令人兴奋的是,当施加0.1 W(均方根)的功率水平时,我们发现与化疗药物替莫唑胺联合使用时具有显著(统计学显著)的治疗效果,导致胶质母细胞瘤细胞死亡增加。这些发现为治疗胶质母细胞瘤细胞提供了一个有前景的干预窗口,利用了30.5 GHz连续波暴露的潜在治疗益处。治疗期间的温度升高得到了仔细监测和模拟,结果吻合良好,表明观察到的效果中温度升高的影响可忽略不计。通过探索这种创新方法,我们为改善胶质母细胞瘤的未来治疗铺平了道路,而迄今为止,胶质母细胞瘤的治疗一直极具挑战性。