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热化学疗法抵抗胶质细胞瘤取决于细胞能量水平。

Thermo-Chemical Resistance to Combination Therapy of Glioma Depends on Cellular Energy Level.

机构信息

Bioinspired Engineering and Biomechanics Center (BEBC), Xi'an Jiaotong University, Xi'an 710049, P. R. China.

The Key Laboratory of Biomedical Information Engineering of Ministry of Education, Xi'an Jiaotong University, Xi'an 710049, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2023 Aug 23;15(33):39053-39063. doi: 10.1021/acsami.3c05683. Epub 2023 Aug 8.

Abstract

Thermal therapy has been widely used in clinical tumor treatment and more recently in combination with chemotherapy, where the key challenge is the treatment resistance. The mechanism at the cellular level underlying the resistance to thermo-chemical combination therapy remains elusive. In this study, we constructed 3D culture models for glioma cells (, 3D glioma spheres) as the model system to recapitulate the native tumor microenvironment and systematically investigated the thermal response of 3D glioma spheres at different hyperthermic temperatures. We found that 3D glioma spheres show high viability under hyperthermia, especially under high hyperthermic temperatures (42 °C). Further study revealed that the main mechanism lies in the high energy level of cells in 3D glioma spheres under hyperthermia, which enables the cells to respond promptly to thermal stimulation and maintain cellular viability by upregulating the chaperon protein Hsp70 and the anti-apoptotic pathway AKT. Besides, we also demonstrated that 3D glioma spheres show strong drug resistance to the thermo-chemical combination therapy. This study provides a new perspective on understanding the thermal response of combination therapy for tumor treatment.

摘要

热疗已广泛应用于临床肿瘤治疗,最近还与化疗联合应用,而其主要挑战是治疗耐药性。细胞水平上对热化疗联合治疗耐药的机制仍不清楚。在这项研究中,我们构建了胶质瘤细胞的 3D 培养模型(3D 胶质瘤球体)作为模型系统,以重现天然肿瘤微环境,并系统研究了不同热疗温度下 3D 胶质瘤球体的热反应。我们发现,3D 胶质瘤球体在高温下(42°C)表现出高存活率。进一步的研究表明,主要机制在于高温下 3D 胶质瘤球体细胞的高能水平,这使细胞能够迅速对热刺激做出反应,并通过上调伴侣蛋白 Hsp70 和抗凋亡途径 AKT 来维持细胞活力。此外,我们还证明 3D 胶质瘤球体对热化疗联合治疗具有很强的耐药性。这项研究为理解肿瘤治疗联合治疗的热反应提供了新的视角。

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