Díaz-Alejo Jesús Frutos, González Gómez Itziar, Earl Julie
Molecular Epidemiology and Predictive Tumor Markers Group, Ramón y Cajal Health Research Institute (IRYCIS), Madrid.
Faculty of Medicine and Health Sciences, University of Alcalá de Henares (UAH), Madrid.
Oncol Rev. 2022 Feb 22;16(1):531. doi: 10.4081/oncol.2022.531.
Ultrasounds (US) are a non-ionizing mechanical wave, with less adverse effects than conventional pharmacological or surgical treatments. Different biological effects are induced in tissues and cells by ultrasound actuation depending on acoustic parameters, such as the wave intensity, frequency and treatment dose. This non-ionizing radiation has considerable applications in biomedicine including surgery, medical imaging, physical therapy and cancer therapy. Depending on the wave intensity, US are applied as high-intensity ultrasounds (HIUS) and low-intensity pulsed ultrasounds (LIPUS), with different effects on cells and tissues. HIUS produce thermal and mechanical effects, resulting in a large localized temperature increase, leading to tissue ablation and even tumor necrosis. This can be achieved by focusing low intensity waves emitted from different electrically shifted transducers, known as high-intensity focused ultrasounds (HIFU). LIPUS have been used extensively as a therapeutic, surgical and diagnostic tool, with diverse biological effects observed in tissues and cultured cells. US represent a non-invasive treatment strategy that can be applied to selected areas of the body, with limited adverse effects. In fact, tumor ablation using HIFU has been used as a curative treatment in patients with an early-stage pancreatic tumor and is an effective palliative treatment in patients with advanced stage disease. However, the biological effects, dose standardization, benefit-risk ratio and safety are not fully understood. Thus, it is an emerging field that requires further research in order to reach its full potential.
超声波(US)是一种非电离机械波,与传统的药物或手术治疗相比,其副作用更小。根据声学参数,如波强度、频率和治疗剂量,超声驱动在组织和细胞中会产生不同的生物学效应。这种非电离辐射在生物医学领域有广泛应用,包括手术、医学成像、物理治疗和癌症治疗。根据波强度,超声波分为高强度超声(HIUS)和低强度脉冲超声(LIPUS),它们对细胞和组织有不同的影响。HIUS产生热效应和机械效应,导致局部温度大幅升高,从而引起组织消融甚至肿瘤坏死。这可以通过聚焦不同电移位换能器发射的低强度波来实现,即高强度聚焦超声(HIFU)。LIPUS已被广泛用作治疗、手术和诊断工具,在组织和培养细胞中观察到了多种生物学效应。超声波是一种非侵入性治疗策略,可应用于身体的特定部位,副作用有限。事实上,使用HIFU进行肿瘤消融已被用作早期胰腺肿瘤患者的根治性治疗,也是晚期疾病患者的有效姑息治疗。然而,其生物学效应、剂量标准化、效益风险比和安全性尚未完全明确。因此,这是一个新兴领域,需要进一步研究以充分发挥其潜力。