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A Numerical Evaluation of the Cell Kill Distributions due to Thermal Damage in Electrochemotherapy

机译:电化学疗法热损伤引起的细胞杀死分布的数值评价

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Electrochemotherapy (ECT) is a powerful bio-techaological tool for enhancing the delivery of chemothera-peutic agents to cancer cells with the use of brief but intense pulsed electric fields (PEFs). In ECT therapies the goal is to introduce chemotherapeutics into cells in a reversible manner that will allow high cell viability to be maintained. However, application of the PEFs to the cells without the drugs can also result in cell kill due to irreversible electroporation. Additionally, if the pulse repetition frequency is very high there is a chance of inducing cell death via thermal damage. Therefore, the main objective of this study is to evaluate the thermal effects in an ECT procedure in which we simulated the delivery of eight 100-μs pulses at a pulse repetition frequency of 1, 10, 100, and 1000 Hz. This was performed in order to assess if the pulses induce undesired thermal damage due to excessive Joule heating that could compromise the viability of the tissue post-electroporation at pulse repetition frequencies being evaluated in several clinical studies worldwide.
机译:电化学疗法(ECT)是提高交货chemothera-peutic药物对癌细胞的使用短暂而强烈的脉冲电场器(PEF)的强大生物techaological工具。在ECT疗法中,目标是以可逆的方式将化学治疗剂引入细胞中,这将允许保持高细胞活力。然而,由于不可逆的电穿孔,将PEF施用于没有药物的细胞的细胞。另外,如果脉冲重复频率非常高,则存在通过热损坏诱导细胞死亡的机会。因此,本研究的主要目的是评估ECT过程中的热效应,其中我们在脉冲重复频率为1,10,100和1000Hz的脉冲重复频率下施加八个100μs脉冲的热效应。这是为了评估脉冲由于过多的焦耳加热而诱导不希望的热损伤,这可能会损害在全球几个临床研究中的脉冲重复频率下的组织后电穿孔的可存活率的不希望的热损伤。

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