Tumor Ablation Group, Biomedical Science and Technology Research Center, School of Mechatronic Engineering and Automation, Shanghai University, 99 Shangda Road, Baoshan, Shanghai, 200444, China.
School of Mechanical and Power Engineering, East China University of Science and Technology, Shanghai, 200237, China.
Ann Biomed Eng. 2019 Mar;47(3):694-705. doi: 10.1007/s10439-018-02185-x. Epub 2018 Dec 18.
We hypothesized and demonstrated for the first time that significant tumor ablation enhancement can be achieved by combining radiofrequency ablation (RFA) and irreversible electroporation (IRE) using a 3D cervical cancer cell model. Three RFA (43, 50, and 60 °C for 2 min) and IRE protocols (350, 700, and 1050 V/cm) were used to study the combining effect in the 3D tumor cell model. The in vitro experiment showed that both RFA enhanced IRE and IRE enhanced RFA can lead to a significant increase in the size of the ablation zone compared to IRE and RFA alone. It was also noted that the sequence of applying ablation energy (RFA → RE or IRE → RFA) affected the efficacy of tumor ablation enhancement. The electrical conductivity of 3D tumor was found to be increased after preliminary RFA or IRE treatment. This increase in tumor conductivity may explain the enhancement of tumor ablation. Another explanation might be that there is repeat injury to the transitional zone of the first treatment by the second one. The promising results achieved in the study can provide us useful clues about the treatment of large tumors abutting large vessels or bile ducts.
我们首次假设并证明,通过使用三维宫颈癌细胞模型将射频消融 (RFA) 和不可逆电穿孔 (IRE) 相结合,可以实现显著的肿瘤消融增强效果。使用三种 RFA(43、50 和 60°C 持续 2 分钟)和 IRE 方案(350、700 和 1050 V/cm)研究了组合效应在三维肿瘤细胞模型中的效果。体外实验表明,与单独的 IRE 和 RFA 相比,RFA 增强 IRE 和 IRE 增强 RFA 都能显著增加消融区的大小。此外,还注意到施加消融能量的顺序(RFA→IRE 或 IRE→RFA)会影响肿瘤消融增强的效果。初步 RFA 或 IRE 处理后发现 3D 肿瘤的电导率增加。肿瘤电导率的增加可能解释了肿瘤消融的增强。另一种解释可能是第二次治疗对第一次治疗的过渡区造成了重复损伤。该研究中取得的有希望的结果为治疗毗邻大血管或胆管的大肿瘤提供了有用的线索。