de Lucas Beatriz, Pérez Laura M, Bernal Aurora, Gálvez Beatriz G
Faculty of Biomedical and Health Sciences, Universidad Europea de Madrid, 28670 Madrid, Spain.
Centro Nacional de Investigaciones Cardiovasculares (CNIC), 28029 Madrid, Spain.
Genes (Basel). 2020 Sep 17;11(9):1086. doi: 10.3390/genes11091086.
Ultrasound has emerged as a novel tool for clinical applications, particularly in the context of regenerative medicine. Due to its unique physico-mechanical properties, low-intensity ultrasound (LIUS) has been approved for accelerated fracture healing and for the treatment of established non-union, but its utility has extended beyond tissue engineering to other fields, including cell regeneration. Cells and tissues respond to acoustic ultrasound by switching on genetic repair circuits, triggering a cascade of molecular signals that promote cell proliferation, adhesion, migration, differentiation, and extracellular matrix production. LIUS also induces angiogenesis and tissue regeneration and has anti-inflammatory and anti-degenerative effects. Accordingly, the potential application of ultrasound for tissue repair/regeneration has been tested in several studies as a stand-alone treatment and, more recently, as an adjunct to cell-based therapies. For example, ultrasound has been proposed to improve stem cell homing to target tissues due to its ability to create a transitional and local gradient of cytokines and chemokines. In this review, we provide an overview of the many applications of ultrasound in clinical medicine, with a focus on its value as an adjunct to cell-based interventions. Finally, we discuss the various preclinical and clinical studies that have investigated the potential of ultrasound for regenerative medicine.
超声已成为临床应用的一种新型工具,尤其是在再生医学领域。由于其独特的物理机械特性,低强度超声(LIUS)已被批准用于加速骨折愈合和治疗已形成的骨不连,但其用途已从组织工程扩展到其他领域,包括细胞再生。细胞和组织通过开启基因修复回路对声学超声作出反应,触发一系列促进细胞增殖、黏附、迁移、分化和细胞外基质产生的分子信号。LIUS还可诱导血管生成和组织再生,并具有抗炎和抗退变作用。因此,超声在组织修复/再生方面的潜在应用已在多项研究中作为一种独立治疗方法进行了测试,最近还作为基于细胞疗法的辅助手段进行了测试。例如,由于超声能够产生细胞因子和趋化因子的过渡性局部梯度,有人提出超声可改善干细胞归巢至靶组织的能力。在本综述中,我们概述了超声在临床医学中的诸多应用,重点关注其作为基于细胞干预措施辅助手段的价值。最后,我们讨论了研究超声在再生医学中潜力的各种临床前和临床研究。