Izzo Francesco, Ionna Franco, Granata Vincenza, Albino Vittorio, Patrone Renato, Longo Francesco, Guida Agostino, Delrio Paolo, Rega Daniela, Scala Dario, Pezzuto Roberto, Fusco Roberta, Di Bernardo Elio, D'Alessio Valeria, Grassi Roberto, Contartese Deyanira, Palaia Raffaele
Division of Surgical Oncology, Hepatobiliary Unit, ISTITUTO NAZIONALE TUMORI-IRCCS-FONDAZIONE G. PASCALE, NAPOLI, ITALIA, Via Mariano Semmola, 80131 Naples, Italy.
Division of Surgical Oncology, Maxillo-Facial Unit, ISTITUTO NAZIONALE TUMORI-IRCCS-FONDAZIONE G. PASCALE, NAPOLI, ITALIA, Via Mariano Semmola, 80131 Naples, Italy.
Cancers (Basel). 2020 Feb 23;12(2):515. doi: 10.3390/cancers12020515.
The aim of the study is to evaluate the usability aspects of new deployable, expandable, electrode prototypes, in terms of suitability solutions for laparoscopic applications on the liver, endoscopic trans-oral and trans-anal procedures, electroporation segmentation in several steps, mechanical functionality (flexibility, penetrability), visibility of the electrode under instrumental guidance, compatibility of the electrode with laparoscopic/endoscopic accesses, surgical instruments, and procedural room and safety compatibility. The electroporation was performed on an animal model (Sus Scrofa Large White 60 kg) both in laparoscopy and endoscopy, under ultrasound guidance, and in open surgery. Electrodes without divergence, with needles coming out straight, parallel to each other, and electrodes with peripheral needles (four needles), diverging from the electrode shaft axis (electrode with non-zero divergence) have been tested. To cause an evaluable necrosis effect, the number of electrical pulses was increased to induce immediate liver cell death. Histological samples were analyzed by staining with Haematoxylin/Eosin or by immunohistochemical staining to confirm complete necrosis. The prototypes of expandable electrodes, tested in laparoscopy and endoscopy and in open surgery, respectively, are suitable in terms of usability, electroporation segmentation in several steps, mechanical functionality (flexibility, penetrability), visibility under instrumental guidance, compatibility with laparoscopic/endoscopic accesses, surgical instruments and procedural room safety, patient safety (no bleeding and/or perforation), and treatment efficacy (adequate ablated volume). Electroporation treatment using new deployable expandable electrode prototypes is safe and feasible. Moreover, electrode configurations allow for a gradual increase in the ablated area in consecutive steps, as confirmed by histology and immunohistochemistry.
本研究的目的是评估新型可展开、可扩展电极原型的可用性,评估内容包括适用于肝脏腹腔镜手术、内镜经口和经肛门手术的解决方案、多步骤电穿孔分割、机械功能(柔韧性、穿透性)、在器械引导下电极的可视性、电极与腹腔镜/内镜通道、手术器械、手术室的兼容性以及安全兼容性。在超声引导下,分别在腹腔镜手术、内镜手术和开放手术中,对动物模型(60千克的大白猪)进行电穿孔。测试了无发散的电极(针相互平行且笔直伸出)以及带有外周针(四根针)且针从电极轴轴线发散的电极(非零发散电极)。为产生可评估的坏死效应,增加电脉冲数量以诱导肝细胞立即死亡。通过苏木精/伊红染色或免疫组织化学染色分析组织学样本,以确认完全坏死。分别在腹腔镜手术、内镜手术和开放手术中测试的可扩展电极原型,在可用性、多步骤电穿孔分割、机械功能(柔韧性、穿透性)、器械引导下的可视性、与腹腔镜/内镜通道的兼容性、手术器械和手术室安全性、患者安全(无出血和/或穿孔)以及治疗效果(足够的消融体积)方面均适用。使用新型可展开可扩展电极原型进行电穿孔治疗是安全可行的。此外,组织学和免疫组织化学证实,电极配置允许在连续步骤中逐渐增加消融面积。