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Enhanced efficacy of anti-tumor liposomal doxorubicin by hyperthermia

机译:增强抗肿瘤脂质体DOXORUBICIN的高疗症疗效

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The efficiency of novel tumor chemotherapeutics could be increased using targeted drug delivery by hyperthermia. In this paper, the 3D liposomal doxorubicin distribution in the tumor tissue enhanced by local hyperthermia was quantitatively studied in real time using laser confocal microscopy. Results showed that the thermally induced liposomal doxorubicin extravasation was non-uniform and more excessive in the peripheral region than that in the tumor center. The effect of the thermally targeted drug delivery was also investigated. On the 1st, 3rd day after the thermally targeted drug treatment, histological examination showed that many nucleolus were condensed and collapsed in the peripheral region. But, in the tumor center, there were no such changes found until the 3rd day. While on the 6th day, tumor cells in both the peripheral and center region were found necrotic. The enhancement of the nanoparticle anti-tumor drug effect was significant. A theoretical analysis of liposomal doxorubicin diffusion to the tumor cells in vivo was performed. Results showed that it took more than 40 hrs for the doxorubicin to get into the tumor cells in the center region from the periphery region. The theoretical results well explained the experimental observations
机译:使用靶向药物递送通过热疗的靶向药物递送可以增加新型肿瘤化学治疗剂的效率。本文使用激光共焦显微镜实时地研究了局部热疗增强的肿瘤组织中的3D脂质体Doxorubicin分布。结果表明,在肿瘤中心的外周区域中,热诱导的脂质体DOXORUBICIN外渗在外周区域中的过度均匀。还研究了热靶向药物递送的效果。在热靶向药物治疗后的第1天,组织学检查显示,在外周区域中,许多核心凝聚并塌陷。但是,在肿瘤中心,在第3天没有发现这种变化。虽然在第6天,发现外周和中心区域的肿瘤细胞被发现坏死。纳米粒子抗肿瘤药物作用的增强显着。进行了对体内肿瘤细胞的脂质体DOXORUBICIN扩散的理论分析。结果表明,多柔比星花了40多次,以从周边区域进入中心区域的肿瘤细胞。理论结果很好地解释了实验观察

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