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在小鼠乳腺肿瘤模型上使用双频协议进行沸腾组织汽化术并促进免疫激活。

Boiling Histotripsy Using Dual-Frequency Protocol on Murine Breast Tumor Model and Promotes Immune Activation.

作者信息

Qi Tingting, Jing Yanshu, Deng Jie, Chang Juntao, Sun Weihao, Yang Rongzheng, Liu Xuan, Zhang Quan, Wan Mingxi, Lu Mingzhu

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2023 Dec;70(12):1773-1785. doi: 10.1109/TUFFC.2023.3326561. Epub 2023 Dec 14.

Abstract

Histotripsy is an ultrasound-guided, noninvasive, nonthermal ablation therapy that can mechanically lyse target tissues. There have been no reports of enhanced histotripsy for large-volume triple-negative breast cancer (TNBC). This study aims to verify the ability of a novel approach of dual-frequency mode combined with two-stage millisecond-length ultrasound pulses (DF-TS) to accelerate the treatment of murine subcutaneous 4T1 tumors and determine immune changes after treatment. A custom-designed 1.1-/2.2-MHz two-element confocal-annular array was used to treat approximately 6-mm tumors under ultrasound guidance and real-time monitoring. Two-stage millisecond-length ultrasound pulses were used to generate approximate cuboid ablation volumes (diagonal 5-6 mm) within each tumor, with a dose of 100 pulses/point. Immune effects were characterized by changes of pro-inflammatory cytokine levels and infiltration levels of immune cells. In all targeted treatment areas, bubble cloud activity was visualized by ultrasound monitoring. The novel protocol resulted in elliptical and controllable sized lesions, reducing the number of scanning points, and was generally well tolerated. After treatment, tumor growth experienced a seven-day stagnation period, the survival period of mice was prolonged, and the levels of pro-inflammatory cytokines and immune cell infiltration increased. This study demonstrates that DF-TS boiling histotripsy (BH) has a noninvasive, efficient, and precise ablation ability for TNBC and potentially enhances immune responses.

摘要

组织粉碎术是一种超声引导的、非侵入性的、非热消融疗法,可机械性溶解靶组织。目前尚无关于大体积三阴性乳腺癌(TNBC)强化组织粉碎术的报道。本研究旨在验证双频模式结合两阶段毫秒级超声脉冲(DF-TS)的新方法加速治疗小鼠皮下4T1肿瘤的能力,并确定治疗后的免疫变化。使用定制设计的1.1-/2.2-MHz双元件共焦环形阵列在超声引导和实时监测下治疗约6毫米的肿瘤。使用两阶段毫秒级超声脉冲在每个肿瘤内产生近似长方体的消融体积(对角线5-6毫米),剂量为100脉冲/点。通过促炎细胞因子水平的变化和免疫细胞的浸润水平来表征免疫效应。在所有靶向治疗区域,通过超声监测观察到气泡云活动。新方案产生了椭圆形且大小可控的病变,减少了扫描点数量,并且总体耐受性良好。治疗后,肿瘤生长经历了七天的停滞期,小鼠生存期延长,促炎细胞因子水平和免疫细胞浸润增加。本研究表明,DF-TS沸腾组织粉碎术(BH)对TNBC具有无创、高效且精确的消融能力,并可能增强免疫反应。

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