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首页> 外文期刊>Contrast media & molecular imaging >Assessment of Intratumoral Doxorubicin Penetration after Mild Hyperthermia-Mediated Release from Thermosensitive Liposomes
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Assessment of Intratumoral Doxorubicin Penetration after Mild Hyperthermia-Mediated Release from Thermosensitive Liposomes

机译:温和脂质体介导的轻度热热介导后肿瘤内胆蛋白渗透的评估

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In solid tumors, rapid local intravascular release of anticancer agents, e.g., doxorubicin (DOX), from thermosensitive liposomes (TSLs) can be an option to overcome poor extravasation of drug nanocarriers. The driving force of DOX penetration is the drug concentration gradient between the vascular compartment and the tumor interstitium. In this feasibility study, we used fibered confocal fluorescence microscopy (FCFM) to monitor in real-time DOX penetration in the interstitium of a subcutaneous tumor after its intravascular release from TSLs, Thermodox?. Cell uptake kinetics of the released DOX was quantified, along with an in-depth assessment of released-DOX penetration using an evolution model. A subcutaneous rat R1 rhabdomyosarcoma xenograft was used. The rodent was positioned in a setup including a water bath, and FCFM identification of functional vessels in the tumor tissue was applied based on AngioSense. The tumor-bearing leg was immersed in the 43°C water for preheating, and TSLs were injected intravenously. Real-time monitoring of intratumoral (i.t.) DOX penetration could be performed, and it showed the progressing DOX wave front via its native fluorescence, labeling successively all cell nuclei. Cell uptake rates (1/k) of 3 minutes were found (n=241??cells), and a released-DOX penetration in the range of 2500?μm2·s?1 was found in the tumor extravascular space. This study also showed that not all vessels, identified as functional based on AngioSense, gave rise to local DOX penetration.
机译:在实体肿瘤中,来自热敏脂质体(TSL)的抗癌剂的快速局部血管内释放,例如,来自热敏脂质体(TSL)可以是克服药物纳米载体的差的渗出的选择。 DOX渗透的驱动力是血管室与肿瘤间隙之间的药物浓度梯度。在这种可行性研究中,我们使用纤维共聚焦荧光显微镜(FCFM)在其血管内释放到TSLS,Thermodox的血管内释放后的实时DOX渗透中的实时DOX渗透。量化了释放DOX的细胞吸收动力学,以及使用进化模型的释放对DOX渗透的深入评估。使用皮下大鼠R1rβrhabdomyosarcoma异种移植物。啮齿动物位于包括水浴的设置中,并且基于致敬施用肿瘤组织中功能容器的FCFM鉴定。将肿瘤支承腿浸入43℃下进行预热,并且静脉注射TSL。可以进行肿瘤内(即)DOX渗透的实时监测,并通过其天然荧光显示进展DOX波前,连续标记所有细胞核。发现了3分钟的细胞吸收率(1 / k)(n = 241℃),并且在肿瘤血管外空间中发现了2500Ω·μm2·s≤1的释放-Ox渗透。本研究还表明,并非所有血管都被识别为基于疼痛的功能,引起了当地的DOX渗透。

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