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首页> 外文期刊>Ultrasound in Medicine and Biology >Effects of biophysical parameters in enhancing radiation responses of prostate tumors with ultrasound-stimulated microbubbles
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Effects of biophysical parameters in enhancing radiation responses of prostate tumors with ultrasound-stimulated microbubbles

机译:生物物理参数对超声刺激的微泡增强前列腺肿瘤放射反应的影响

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We show here that ultrasound-stimulated microbubbles can enhance cell death within tumors when combined with radiation. The aim of this study was to investigate how different ultrasound parameters, different microbubble concentrations and different radiation doses interact to enhance cell death. Prostate xenograft tumors (PC-3) in severe combined immunodeficiency mice were subjected to ultrasound treatment at various peak negative pressures (250, 570 and 750 kPa) at a center frequency of 500 kHz, different microbubble concentrations (8, 80 and 1000 μL/kg) and different radiation doses (0, 2 and 8 Gy). Twenty-four hours after treatment, tumors were excised and assessed for cell death. Histologic analyses revealed that increases in radiation dose, microbubble concentration and ultrasound pressure promoted apoptotic cell death and disruption within tumors by as much as 21%, 30% and 43%, respectively. Comparable increases in ceramide, a cell death mediator, were identified using immunohistochemistry. We also show here that even clinically used microbubble concentrations combined with ultrasound can induce significant enhancement of cell death.
机译:我们在这里显示超声刺激的微泡与放射线结合可以增强肿瘤内的细胞死亡。这项研究的目的是研究不同的超声参数,不同的微气泡浓度和不同的辐射剂量如何相互作用以增加细胞死亡。对重度合并免疫缺陷小鼠的前列腺异种移植肿瘤(PC-3)进行超声治疗,其峰值负压(250、570和750 kPa)的中心频率为500 kHz,不同的微气泡浓度(8、80和1000μL/千克)和不同的辐射剂量(0、2和8 Gy)。治疗后二十四小时,切除肿瘤并评估细胞死亡。组织学分析表明,放射剂量,微泡浓度和超声压力的增加分别促进肿瘤细胞凋亡和破坏,分别高达21%,30%和43%。使用免疫组织化学鉴定了神经酰胺(一种细胞死亡介质)的可比增加。我们在这里还显示,即使临床上使用的微气泡浓度与超声相结合,也可以诱导细胞死亡的显着增强。

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