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Chemical gas-generating nanoparticles for tumor-targeted ultrasound imaging and ultrasound-triggered drug delivery

机译:产生化学气体的纳米颗粒,用于肿瘤靶向超声成像和超声触发的药物递送

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Although there is great versatility of ultrasound (US) technologies in the real clinical field, one main technical challenge is the compromising of high quality of echo properties and size engineering of ultrasound contrast agents (UCAs); a high echo property is offset by reducing particle size. Herein, a new strategy for overcoming the dilemma by devising chemical gas (CO2) generating carbonate copolymer nanoparticles (Gas-NPs), which are clearly distinguished from the conventional gas-encapsulated micro sized UCAs. More importantly, Gas-NPs could be readily engineered to strengthen the desirable in vivo physicochemical properties for nano-sized drug carriers with higher tumor targeting ability, as well as the high quality of echo properties for tumor-targeted US imaging. In tumor-bearing mice, anticancer drug-loaded Gas-NPs showed the desirable theranostic functions for US-triggered drug delivery, even after i.v. injection. In this regard, and as demonstrated in the aforementioned study, our technology could serve a highly effective platform in building theranostic UCAs with great sophistication and therapeutic applicability in tumor-targeted US imaging and US-triggered drug delivery. (C) 2016 Elsevier Ltd. All rights reserved.
机译:尽管在实际的临床领域中超声(美国)技术具有极大的通用性,但主要的技术挑战是损害回波特性的高质量和超声造影剂(UCA)的尺寸工程;通过减小颗粒尺寸可以抵消高回波特性。在这里,通过设计产生化学气体(CO2)的碳酸盐共聚物纳米颗粒(Gas-NPs)来克服这一难题的新策略,这明显不同于传统的气体封装的微型UCA。更重要的是,可以很容易地对Gas-NPs进行工程设计,以增强具有更高肿瘤靶向能力的纳米级药物载体所需的体内理化特性,以及针对肿瘤靶向的US成像的高质量回声特性。在荷瘤小鼠中,即使在静脉内注射后,载有抗癌药物的Gas-NP也显示了US触发的药物递送所需的治疗功能。注射。在这方面,正如前面的研究所证明的那样,我们的技术可以为构建治疗性UCA提供一个高效平台,在肿瘤靶向的US成像和US触发的药物递送中具有极高的复杂性和治疗性。 (C)2016 Elsevier Ltd.保留所有权利。

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