Song Xiaohua, Guo Jiulin, Cao Hongguang, Nan Qun
College of Chemistry and Life Science, Beijing University of Technology, Beijing, China.
Industrial Informatization and Science and Technology Bureau of Changqing District, Jinan, China.
PLoS One. 2025 May 27;20(5):e0323336. doi: 10.1371/journal.pone.0323336. eCollection 2025.
The principle of NetrodTM Renal Denervation RF Generator is based on the heating of radiofrequency electrodes to achieve the therapeutic temperature for peripheral nerve ablation with minimal impact on intra-arterial blood flow. The extravascular heat distribution and continuous ablation were evaluated using COMSOL Multiphysics with an idealized 3D model and validated in an ex vivo experiment. The safety of ablation was verified by H&E staining of a hypertensive dog model in the treatment group of animal experiments, and changes in blood pressure before and after the procedure(assessed at 7, 30, and 60 days in animal experiments) were used to characterize the efficacy. The simulation results showed that the maximum injury depth range of the NetrodTM Six-electrode is 5.08mm and the depth of the ablation zone obtained in the Phantom experiment was 3-6mm. Circumferential coverage was up to 91.99% and the ablation zone was continuous. In animal experiments, eight animals in the treatment group had significantly lower blood pressure (88.9%). Nerve cells in nerve bundles showed vacuolar changes and thickening of peripheral sheaths after peripheral nerve ablation of renal arteries.The NetrodTM Six-electrode presented here has potential to effectively and safely ablate renal nerves. The demonstrated efficacy and safety in animal models provide a foundation for clinical trials in humans.
NetrodTM肾去神经射频发生器的原理是基于对射频电极进行加热,以达到外周神经消融的治疗温度,同时对动脉内血流的影响最小。利用COMSOL Multiphysics软件,通过一个理想化的三维模型对外血管热分布和连续消融进行了评估,并在体外实验中得到了验证。在动物实验的治疗组中,通过对高血压犬模型进行苏木精-伊红染色来验证消融的安全性,并使用手术前后的血压变化(在动物实验中于第7、30和60天进行评估)来表征疗效。模拟结果表明,NetrodTM六电极的最大损伤深度范围为5.08毫米,在体模实验中获得的消融区深度为3至6毫米。周向覆盖率高达91.99%,且消融区是连续的。在动物实验中,治疗组的八只动物血压显著降低(88.9%)。肾动脉外周神经消融后,神经束中的神经细胞出现空泡样改变和外周鞘增厚。此处展示的NetrodTM六电极有潜力有效且安全地消融肾神经。在动物模型中所展示的疗效和安全性为人体临床试验奠定了基础。