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纳秒和微秒范围电化学疗法对各种人癌细胞系的敏感性:多药物鸡尾酒的可行性。

Susceptibility of various human cancer cell lines to nanosecond and microsecond range electrochemotherapy: Feasibility of multi-drug cocktails.

机构信息

Department of Molecular and Cellular Biology, Medical University, Borowska 211 A, 50-556, Wroclaw, Poland.

Faculty of Electronics, Vilnius Gediminas Technical University, 10105 Vilnius, Lithuania; State Research Institute Centre for Innovative Medicine, Department of Immunology, 08406 Vilnius, Lithuania.

出版信息

Int J Pharm. 2023 Nov 5;646:123485. doi: 10.1016/j.ijpharm.2023.123485. Epub 2023 Oct 5.

Abstract

Electrochemotherapy (ECT) involves combining anticancer drugs with electroporation, which is induced by pulsed electric fields (PEFs), while the effects vary in effectiveness based on the specific parameters of the electrical pulses and susceptibility of the cells to a specific drug. In this work, we utilized conventional microsecond electroporation protocols (0.8 - 1.5 kV/cm × 100 μs × 8, 1 Hz) and the new modality of nanosecond pulses (4 and 8 kV/cm × 500 ns × 100, 1 kHz and 1 MHz), which are compressed into a high frequency burst. Sensitive and resistant lung, breast and ovarian human cancer cell lines were used in the study. In order to overcome drug-resistance, we have investigated the feasibility to use anticancer drug cocktails i.e., bleomycin and cisplatin combinations with metformin, vinorelbine and Dp44mT. The different susceptibility of various human cancer cells lines to electric pulses was determined, the efficacy of ECT was characterized and the type of cell death depending on the combinations of drugs was investigated. The results indicate that synergistic effects of PEFs with drug cocktails may be used to overcome drug-resistance in cancer, while the application of nsPEF provides more flexibility in parametric protocols and modulation of cancer cell death.

摘要

电化学疗法(ECT)涉及将抗癌药物与电穿孔结合使用,电穿孔是通过脉冲电场(PEF)诱导的,而效果则根据电脉冲的具体参数和细胞对特定药物的敏感性而有所不同。在这项工作中,我们利用了传统的微秒电穿孔方案(0.8-1.5 kV/cm×100 μs×8,1 Hz)和新的纳秒脉冲模式(4 和 8 kV/cm×500 ns×100,1 kHz 和 1 MHz),这些脉冲被压缩成高频脉冲串。在研究中使用了敏感和耐药的肺、乳腺和卵巢人类癌细胞系。为了克服耐药性,我们研究了使用抗癌药物鸡尾酒(即博来霉素和顺铂与二甲双胍、长春瑞滨和 Dp44mT 的组合)的可行性。确定了各种人类癌细胞系对电脉冲的不同敏感性,表征了 ECT 的功效,并研究了组合药物依赖性的细胞死亡类型。结果表明,PEF 与药物鸡尾酒的协同作用可能用于克服癌症中的耐药性,而 nsPEF 的应用为参数方案提供了更大的灵活性,并调节了癌细胞的死亡。

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