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Nanoparticle-assisted ultrasound: a special focus on sonodynamic therapy against cancer

机译:纳米粒子辅助超声:特别关注声动力学疗法对付癌症

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摘要

At present, ultrasound radiation is broadly employed in medicine for both diagnostic and therapeutic purposes at various frequencies and intensities. In this review article, we focus on therapeutically-active nanoparticles (NPs) when stimulated by ultrasound. We first introduce the different ultrasound-based therapies with special attention to the techniques involved in oncological field, then we summarize the different NPs used, ranging from soft materials, like liposomes or micro/nano-bubbles, to metal and metal oxide NPs. We therefore focus on the sonodynamic therapy and on the possible working mechanisms under debate of NPs-assisted sonodynamic treatments. We support the idea that various, complex and synergistics physical-chemical processes take place during acoustic cavitation and NP activation. Different mechanisms are therefore responsible for the final cancer cell death and strongly depends on not only the type and structure of NPs or nanocarriers, but also on the way they interact with the ultrasonic pressure waves. We conclude with a brief overview of the clinical applications of the various ultrasound therapies and the related use of NPs-assisted ultrasound in clinics, showing that this very innovative and promising approach is however still at its infancy in the clinical cancer treatment.
机译:目前,超声辐射以各种频率和强度在医学中广泛用于诊断和治疗目的。在这篇评论文章中,我们将重点介绍在超声刺激下具有治疗活性的纳米颗粒(NP)。我们首先介绍不同的基于超声的疗法,并特别关注肿瘤学领域涉及的技术,然后总结使用的各种NP,从诸如脂质体或微/纳米气泡的软材料到金属和金属氧化物NP。因此,我们将重点放在声动力学治疗以及在NPs辅助声动力学治疗的争论中可能的工作机制上。我们支持这样的想法,即在声空化和NP激活过程中会发生各种复杂而协同的物理化学过程。因此,不同的机制导致最终的癌细胞死亡,并且不仅取决于NP或纳米载体的类型和结构,而且还取决于它们与超声压力波相互作用的方式。我们以各种超声疗法的临床应用以及NPs辅助超声在临床中的相关使用的简要概述作为结束语,显示了这种非常创新和有希望的方法在临床癌症治疗中仍处于起步阶段。

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