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首页> 外文期刊>Cancer biotherapy and radiopharmaceuticals >99mTc-DTPA uptake and electrical impedance measurements in verification of in vivo electropermeabilization efficiency in rat muscle.
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99mTc-DTPA uptake and electrical impedance measurements in verification of in vivo electropermeabilization efficiency in rat muscle.

机译:99mTc-DTPA摄取和电阻抗测量,用于验证大鼠肌肉体内的电通透效率。

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OBJECTIVE: In vivo electropermeabilization of cell membranes in rat muscle tissue cause a significant decrease of the electrical impedance, in the frequency region of 1-10 kHz. We aimed to study how the 99mTc-DTPA uptake in the electropermeabilized region correlates to the change of admittance Y = 1/absZ, where Z is the measured impedance. METHODS: The electropermeabilization was performed in vivo by applying high-voltage (0.5-2 kV) short (0.1-2 ms) pulses through gold-plated needle electrodes in skeletal muscle. The impedance was measured before and after each electropermeabilization pulse. The uptake of 99mTc-DTPA uptake in the electropermeabilized region was measured after 6 and 24 hours with a gamma camera. RESULTS: The pulse shape (square and exponential), duration, and amplitude of the applied electric field were varied, and electropermeabilization efficiency was evaluated using the various measurement modalities. Good correlations were found (correlation coefficient approximately 0.9) between the 99mTc-DTPA uptake in the electropermeabilized and control "region of interest" the admittance ratio Y (post-treatment)/Y (pretreatment), and charge displacement parameter Q. CONCLUSION: The electrical impedance measurements method can be utilized in clinical settings to verify the efficiency of electropermeabilization applied to chemotherapy and to power RNAi (RNA-interference) and DNA-plasmid transfection in vaccination, immunization, and gene-therapy.
机译:目的:在大鼠肌肉组织中细胞膜的体内电渗透会导致电阻抗显着降低,频率范围为1-10 kHz。我们旨在研究在电渗透区域中99mTc-DTPA的摄取如何与导纳Y = 1 / absZ的变化相关,其中Z为测得的阻抗。方法:通过在骨骼肌中的镀金针电极施加高压(0.5-2 kV)短脉冲(0.1-2 ms)进行体内电渗透。在每个电渗透脉冲之前和之后测量阻抗。在6和24小时后用伽马相机测量在电透化区域中99mTc-DTPA的摄取。结果:改变了脉冲形状(正方形和指数),所施加电场的持续时间和幅度,并使用各种测量方式评估了电通透效率。在电渗透和控制“目标区域”的导纳比Y(后处理)/ Y(预处理)与电荷位移参数Q之间发现良好的相关性(相关系数约为0.9)。可以在临床环境中使用电阻抗测量方法来验证应用于化学疗法的电通透性​​的效率,以及在疫苗接种,免疫和基因治疗中增强RNAi(RNA干扰)和DNA质粒转染的效率。

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