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基于生物材料修饰的微/纳米气泡的超声靶向递药系统用于肿瘤治疗的进展与展望。

Advances and Prospects of Ultrasound Targeted Drug Delivery Systems Using Biomaterial-modified Micro/Nanobubbles for Tumor Therapy.

机构信息

Medical College of China Three Gorges University, Yichang, China.

Hubei Key Laboratory of Tumor Microenvironment and Immunotherapy, China, Three Gorges University, Yichang, China.

出版信息

Curr Med Chem. 2022 Aug 15;29(30):5062-5075. doi: 10.2174/0929867329666220331110315.

Abstract

The incidence of malignant tumors is rising rapidly and tends to be in the younger, which has been one of the most important factors endangering the safety of human life. Ultrasound micro/nanobubbles, as a noninvasive and highly specific antitumor strategy, can reach and destroy tumor tissue through their effects of cavitation and acoustic perforation under the guidance of ultrasound. Meanwhile, micro/nanobubbles are now used as a novel drug carrier, releasing drugs at a target region, especially on the prospects of biomaterial-modified micro/nanobubbles as a dual modality for drug delivery and therapeutic monitoring. Successful evaluation of the sonoporation mechanism(s), ultrasound parameters, drug type, and dose will need to be addressed before translating this technology for clinical use. Therefore, this paper collects the literature on the experimental and clinical studies of ultrasound biomaterial-modified micro/nanobubbles therapy in vitro and in vivo in recent years.

摘要

恶性肿瘤的发病率迅速上升,且发病年龄趋于年轻化,这已成为危害人类生命安全的最重要因素之一。超声微/纳米气泡作为一种非侵入性且高度特异的抗肿瘤策略,在超声的引导下,通过空化和声穿孔的作用,可以到达并破坏肿瘤组织。同时,微/纳米气泡现在被用作一种新型药物载体,在靶区释放药物,特别是在生物材料修饰的微/纳米气泡作为药物输送和治疗监测双重模式的前景方面。在将这项技术转化为临床应用之前,需要成功评估声孔机制、超声参数、药物类型和剂量。因此,本文收集了近年来关于超声生物材料修饰的微/纳米气泡治疗的体外和体内实验和临床研究的文献。

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