Department of Chemistry, National Taiwan University, Taiwan. School of Chemistry, The University of Edinburgh, United Kingdom.
Nanotechnology. 2019 May 3;30(18):182001. doi: 10.1088/1361-6528/aafeb9. Epub 2019 Jan 15.
Applying nanobubbles (NBs) for contrast-enhanced ultrasound imaging has received increased attention. NBs are biocompatible, multifunctional, theranostic agents. Their properties of high echogenicity and stability create an agent suitable for ultrasonography diagnosis. Their favorable properties of size, in vivo stability, and ease of modification are being exploited to implement a theranostic platform for cancer treatment. The considerable development offers the potential to overcome drug resistance and adverse side effects that are associated with traditional chemotherapy. This review outlines the principles of ultrasonography and angiogenesis. Microbubbles and micelles are also discussed to underline the superior capabilities of NBs for the application. NBs could passively accumulate to tumor tissue by enhanced permeability and retention effect. In addition, it can also achieve the active transportation by surface modification. Active targeting modalities and stimuli-responsive drug delivery modifications generate a therapeutic vehicle. The cytotoxicity of NBs formulations, multimodal imaging capability, active targeting mechanisms, and drug delivery methods are highlighted to confirm the NB as a vehicle for targeted treatment and enhanced ultrasound imaging.
应用纳米气泡 (NBs) 进行对比增强超声成像是目前受到较多关注的研究方向。NBs 具有生物相容性、多功能和治疗诊断一体化的特性。它们具有高声学特性和稳定性,这使它们成为一种适合超声诊断的试剂。其大小、体内稳定性和易于修饰的有利特性正被用于实现癌症治疗的治疗诊断一体化平台。相当大的发展潜力可以克服与传统化疗相关的药物耐药性和不良反应。本文综述了超声和血管生成的原理。还讨论了微泡和胶束,以突出 NBs 在应用中的优越性能。NBs 可以通过增强的通透性和保留效应被动地积累到肿瘤组织中。此外,通过表面修饰还可以实现主动运输。主动靶向模式和刺激响应性药物输送修饰产生治疗载体。NBs 制剂的细胞毒性、多模态成像能力、主动靶向机制和药物输送方法被强调,以证实 NB 是靶向治疗和增强超声成像的载体。