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脉冲电场消融治疗食管恶性肿瘤及减轻平滑肌损伤的体外研究。

Pulsed Electric Field Ablation of Esophageal Malignancies and Mitigating Damage to Smooth Muscle: An In Vitro Study.

机构信息

Frank Reidy Research Center for Bioelectrics, Old Dominion University, Norfolk, VA 23508, USA.

Bioeffects Division, Airman System Directorate, 711th Human Performance Wing, Air Force Research Laboratory, JBSA Fort Sam Houston, San Antonio, TX 78234, USA.

出版信息

Int J Mol Sci. 2023 Feb 2;24(3):2854. doi: 10.3390/ijms24032854.

Abstract

Cancer ablation therapies aim to be efficient while minimizing damage to healthy tissues. Nanosecond pulsed electric field (nsPEF) is a promising ablation modality because of its selectivity against certain cell types and reduced neuromuscular effects. We compared cell killing efficiency by PEF (100 pulses, 200 ns-10 µs duration, 10 Hz) in a panel of human esophageal cells (normal and pre-malignant epithelial and smooth muscle). Normal epithelial cells were less sensitive than the pre-malignant ones to unipolar PEF (15-20% higher LD50, < 0.05). Smooth muscle cells (SMC) oriented randomly in the electric field were more sensitive, with 30-40% lower LD50 ( < 0.01). Trains of ten, 300-ns pulses at 10 kV/cm caused twofold weaker electroporative uptake of YO-PRO-1 dye in normal epithelial cells than in either pre-malignant cells or in SMC oriented perpendicularly to the field. Aligning SMC with the field reduced the dye uptake fourfold, along with a twofold reduction in Ca transients. A 300-ns pulse induced a twofold smaller transmembrane potential in cells aligned with the field, making them less vulnerable to electroporation. We infer that damage to SMC from nsPEF ablation of esophageal malignancies can be minimized by applying the electric field parallel to the predominant SMC orientation.

摘要

癌症消融疗法旨在提高效率,同时将对健康组织的损伤降到最低。纳秒级脉冲电场(nsPEF)是一种很有前途的消融方式,因为它对某些细胞类型具有选择性,并且减少了神经肌肉效应。我们比较了纳秒级脉冲电场(100 个脉冲,200ns-10µs 脉宽,10Hz)在一系列人食管细胞(正常和癌前上皮细胞和平滑肌)中的细胞杀伤效率。与非极性 nsPEF 相比,正常上皮细胞的敏感性较低(LD50 高 15-20%, < 0.05)。随机取向的平滑肌细胞(SMC)对电场更敏感,LD50 低 30-40%( < 0.01)。在 10kV/cm 时,10 个 300ns 脉冲的串脉冲导致正常上皮细胞对 YO-PRO-1 染料的电穿孔摄取比癌前细胞或垂直于电场取向的 SMC 低两倍。SMC 与电场平行排列会使染料摄取减少四倍,并使 Ca 瞬变减少两倍。与电场平行排列的细胞中,300ns 脉冲引起的跨膜电位小两倍,使它们不易发生电穿孔。我们推断,通过将电场平行于 SMC 的主要取向施加到食管恶性肿瘤的 nsPEF 消融中,可以最大程度地减少 SMC 的损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e20/9917603/f0e9e7772907/ijms-24-02854-g001.jpg

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