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首页> 外文期刊>Annals of Biomedical Engineering >Electric Fields in Tumors Exposed to External Voltage Sources: Implication for Electric Field-Mediated Drug and Gene Delivery
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Electric Fields in Tumors Exposed to External Voltage Sources: Implication for Electric Field-Mediated Drug and Gene Delivery

机译:暴露于外部电压源的肿瘤中的电场:对电场介导的药物和基因传递的影响

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The intratumoral field, which determines the efficiency of electric field-mediated drug and gene delivery, can differ significantly from the applied field. Therefore, we investigated the distribution of the electric field in mouse tumors and tissue phantoms exposed to a large range of electric stimuli, and quantified the resistances of tumor, skin, and electrode-tissue interface. The samples used in the study included 4T1 and B16.F10 tumors, mouse skin, and tissue phantoms constructed with 1% agarose gel with or without 4T1 cells. When pulsed electric fields were applied to samples using a pair of parallel-plate electrodes, we determined the electric field and resistances in each sample as well as the resistance at the electrode-tissue interface. The electric fields in the center region of tissue phantoms and tumor slices ex vivo were macroscopically uniform and unidirectional between two parallel-plate electrodes. The field strengths in tumor tissues were significantly lower than the applied field under both ex vivo and in vivo conditions. During in vivo stimulation, the ratio of intratumoral versus applied fields was approximately either 20% or 55%, depending on the applied field. Meanwhile, the total resistance of skin and electrode-tissue interface was decreased by approximately 70% and the electric resistance at the center of both tumor models was minimally changed when the applied field was increased from 50 to 400 V/cm. These results may be useful for improving electric field-mediated drug and gene delivery in solid tumors.
机译:决定电场介导的药物和基因传递效率的肿瘤内场可能与所应用的场明显不同。因此,我们研究了暴露于大范围电刺激下的小鼠肿瘤和组织模型中电场的分布,并量化了肿瘤,皮肤和电极-组织界面的电阻。该研究中使用的样本包括4T1和B16.F10肿瘤,小鼠皮肤和用1%琼脂糖凝胶构建的带有或不带有4T1细胞的组织模型。当使用一对平行板电极将脉冲电场施加到样品上时,我们确定了每个样品中的电场和电阻以及电极-组织界面处的电阻。离体的组织体模和肿瘤切片中心区域的电场在宏观上是均匀的,并且在两个平行板电极之间是单向的。在离体和体内条件下,肿瘤组织中的场强均显着低于所施加的场。在体内刺激过程中,瘤内与外加磁场的比例大约为20%或55%,具体取决于外加磁场。同时,当施加的电场从50 V / cm增加到400 V / cm时,皮肤和电极-组织界面的总电阻降低了约70%,并且两个肿瘤模型中心的电阻变化很小。这些结果对于改善电场介导的药物和实体瘤中的基因传递可能是有用的。

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