Department of Biomedical Engineering, University of Michigan, Ann Arbor, MI, USA.
Department of Radiology, University of Michigan, Ann Arbor, MI, USA.
Int J Hyperthermia. 2024;41(1):2297650. doi: 10.1080/02656736.2023.2297650. Epub 2024 Jan 12.
Histotripsy is the first noninvasive, non-ionizing, and non-thermal ablation technique that mechanically fractionates target tissue into acellular homogenate via controlled acoustic cavitation. Histotripsy has been evaluated for various preclinical applications requiring noninvasive tissue removal including cancer, brain surgery, blood clot and hematoma liquefaction, and correction of neonatal congenital heart defects. Promising preclinical results including local tumor suppression, improved survival outcomes, local and systemic anti-tumor immune responses, and histotripsy-induced abscopal effects have been reported in various animal tumor models. Histotripsy is also being investigated in veterinary patients with spontaneously arising tumors. Research is underway to combine histotripsy with immunotherapy and chemotherapy to improve therapeutic outcomes. In addition to preclinical cancer research, human clinical trials are ongoing for the treatment of liver tumors and renal tumors. Histotripsy has been recently approved by the FDA for noninvasive treatment of liver tumors. This review highlights key learnings from shock-scattering histotripsy, intrinsic threshold histotripsy, and boiling histotripsy cancer studies treating cancers of different anatomic locations and discusses the major considerations in planning histotripsy studies regarding instrumentation, tumor model, study design, treatment dose, and post-treatment tumor monitoring.
声声处理是第一种非侵入性、非电离性和非热消融技术,通过控制声空化将目标组织机械地分割成无细胞的匀浆。声声处理已在各种需要非侵入性组织去除的临床前应用中进行了评估,包括癌症、脑外科、血栓和血肿液化以及新生儿先天性心脏缺陷的矫正。在各种动物肿瘤模型中,已报道了包括局部肿瘤抑制、提高生存率、局部和全身抗肿瘤免疫反应以及声声处理诱导的远隔效应在内的有前途的临床前结果。声声处理也正在对自发性肿瘤的兽医患者进行研究。目前正在研究将声声处理与免疫疗法和化学疗法相结合,以提高治疗效果。除了临床前癌症研究外,人类临床试验也在进行中,用于治疗肝脏肿瘤和肾脏肿瘤。声声处理最近已获得 FDA 批准,可用于非侵入性治疗肝脏肿瘤。这篇综述重点介绍了针对不同解剖部位癌症的冲击散射声声处理、固有阈值声声处理和沸腾声声处理癌症研究的关键知识,并讨论了在计划声声处理研究时在仪器、肿瘤模型、研究设计、治疗剂量和治疗后肿瘤监测方面的主要考虑因素。