首页> 外文期刊>International journal of hyperthermia: The official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group >Gadolinium-doped iron oxide nanoparticles induced magnetic field hyperthermia combined with radiotherapy increases tumour response by vascular disruption and improved oxygenation
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Gadolinium-doped iron oxide nanoparticles induced magnetic field hyperthermia combined with radiotherapy increases tumour response by vascular disruption and improved oxygenation

机译:掺杂的氧化铁氧化铁纳米粒子诱导磁场热疗结合放射疗法通过血管破坏和改善氧合增加肿瘤反应

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The gadolinium-doped iron oxide nanoparticles (GdIONP) with greater specific power adsorption rate (SAR) than Fe3O4 was developed and its potential application in tumour therapy and particle tracking were demonstrated in transgenic adenocarcinoma of the mouse prostate C1 (TRAMP-C1) tumours. The GdIONPs accumulated in tumour region during the treatment could be clearly tracked and quantified by T2-weighted MR imaging. The therapeutic effects of GdIONP-mediated hyperthermia alone or in combination with radiotherapy (RT) were also evaluated. A significant increase in the tumour growth time was observed following the treatment of thermotherapy (TT) only group (2.5 days), radiation therapy only group (4.5 days), and the combined radio-thermotherapy group (10 days). Immunohistochemical staining revealed a reduced hypoxia region with vascular disruption and extensive tumour necrosis following the combined radio-thermotherapy. These results indicate that GdIONP-mediated hyperthermia can improve the efficacy of RT by its dual functions in high temperature (temperature greater than 45 degrees C)-mediated thermal ablation and mild-temperature hyperthermia (MTH) (temperature between 39 and 42 degrees C)-mediated reoxygenation.
机译:在小鼠前列腺C1(Tramp-C1)肿瘤的转基因腺癌​​中,在小鼠前列腺C1(Tramp-C1)肿瘤的转基因腺癌​​中表现出具有较大特异性功率吸附速率(SAR)的钆氧化铁纳米颗粒(GdionP),其在肿瘤治疗和颗粒跟踪中的潜在应用。通过T2加权MR成像可以清楚地跟踪和量化在治疗期间累积在肿瘤区域中的GDIONP。还评估了GDIONP介导的热疗的治疗效果或与放射治疗(RT)组合进行评价。在治疗热处理(TT)组(2.5天)后观察到肿瘤生长时间的显着增加,仅对疗法组(4.5天)和组合的无线电热疗组(10天)。免疫组织化学染色揭示了缺氧区域,血管破坏和广播电热治疗后的血管破坏和广泛的肿瘤坏死。这些结果表明,GDIONP介导的热疗可以通过在高温(温度大于45摄氏度)的双重功能(大于45摄氏度)介导的热烧蚀和轻度温度(MTH)(39到42℃的温度)来改善RT的功效 - 介导的雷诺化。

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