Moonen Chrit T W
Laboratory for Molecular and Functional Imaging: From Physiology to Therapy, UMR 5231 Centre National de la Recherche Scientifique, Université Victor Segalen Bordeaux 2, Bordeaux, France.
Clin Cancer Res. 2007 Jun 15;13(12):3482-9. doi: 10.1158/1078-0432.CCR-07-0204.
Local temperature elevation may be used for tumor ablation, gene expression, drug activation, and gene and/or drug delivery. High-intensity focused ultrasound (HIFU) is the only clinically viable technology that can be used to achieve a local temperature increase deep inside the human body in a noninvasive way. Magnetic resonance imaging (MRI) guidance of the procedure allows in situ target definition and identification of nearby healthy tissue to be spared. In addition, MRI can be used to provide continuous temperature mapping during HIFU for spatial and temporal control of the heating procedure and prediction of the final lesion based on the received thermal dose. The primary purpose of the development of MRI-guided HIFU was to achieve safe noninvasive tissue ablation. The technique has been tested extensively in preclinical studies and is now accepted in the clinic for ablation of uterine fibroids. MRI-guided HIFU for ablation shows conceptual similarities with radiation therapy. However, thermal damage generally shows threshold-like behavior, with necrosis above the critical thermal dose and full recovery below. MRI-guided HIFU is being clinically evaluated in the cancer field. The technology also shows great promise for a variety of advanced therapeutic methods, such as gene therapy. MR-guided HIFU, together with the use of a temperature-sensitive promoter, provides local, physical, and spatio-temporal control of transgene expression. Specially designed contrast agents, together with the combined use of MRI and ultrasound, may be used for local gene and drug delivery.
局部温度升高可用于肿瘤消融、基因表达、药物激活以及基因和/或药物递送。高强度聚焦超声(HIFU)是唯一可用于以非侵入性方式在人体深部实现局部温度升高的临床可行技术。该手术的磁共振成像(MRI)引导可实现原位靶标定义并识别需保留的附近健康组织。此外,MRI可用于在HIFU过程中提供连续温度映射,以对加热过程进行空间和时间控制,并根据所接收的热剂量预测最终损伤。MRI引导HIFU发展的主要目的是实现安全的非侵入性组织消融。该技术已在临床前研究中得到广泛测试,目前在临床上已被用于子宫肌瘤的消融。MRI引导的HIFU消融与放射治疗在概念上有相似之处。然而,热损伤通常表现出类似阈值的行为,高于临界热剂量时会发生坏死,低于临界热剂量时则可完全恢复。MRI引导的HIFU正在癌症领域进行临床评估。该技术在多种先进治疗方法(如基因治疗)方面也显示出巨大潜力。MR引导的HIFU与温度敏感启动子的使用相结合,可对转基因表达进行局部、物理和时空控制。经过特殊设计的造影剂,以及MRI和超声的联合使用,可用于局部基因和药物递送。