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一种具有多模式成像功能的新型超声触发药物载体。

A novel ultrasound-triggered drug vehicle with multimodal imaging functionality.

机构信息

Institute of Biomedical Engineering, National Yang-Ming University, Taipei, Taiwan, ROC.

出版信息

Acta Biomater. 2013 Mar;9(3):5453-63. doi: 10.1016/j.actbio.2012.11.023. Epub 2012 Nov 29.

Abstract

A novel remotely triggered drug vehicle having multimodal imaging functionality was developed. It exhibits magnetic resonance (MR) imaging, ultrasound (US) imaging, encapsulation of a hydrophobic agent and US-triggered release behavior. Lipophilic superparamagnetic iron oxide (SPIO) nanoparticles were self-assembled with an amphiphilic chitosan derivative, carboxymethyl hexanoyl chitosan (CHC), to form superparamagnetic CHC/SPIO micelles and then loaded with camptothecin (a hydrophobic anticancer agent). The superparamagnetic micelles were then conjugated with albumin-based microbubbles (MBs) to form superparamagnetic micelle-decorated MBs (CHC/SPIO-decorated MBs). The albumin MBs and CHC/SPIO-decorated MBs both demonstrated in vitro concentration-dependent US imaging contrast. Interestingly, the in vitro US contrast was enhanced by decoration. In vivo US images showed that the B-mode contrast of the proposed vehicles could be clearly observed in the veins and arteries of Sprague-Dawley rats. Moreover, the proposed vehicle exhibited significant US-triggered release behavior under therapeutic US sonication at a frequency of 1MHz and power density of 2.4Wcm(-2) for 30min. However, similar behavior was not observed under diagnostic US bombardment at a frequency of 12MHz and mechanical index of 0.5. On the other hand, in vitro MR images of the CHC/SPIO-micelle-decorated MBs also revealed a significant concentration-dependent T(2) (spin-spin relaxation time) contrast due to their decoration with superparamagnetic micelles. Most importantly, the r(2)(∗)-r(2) value of the CHC/SPIO-decorated MBs decreased after therapeutic US bombardment for 30min. This might be considered as an index to probe destruction of the drug-loaded CHC/SPIO micelles.

摘要

开发了一种具有多模式成像功能的新型远程触发药物载体。它具有磁共振成像(MR)、超声(US)成像、疏水性药物包封和 US 触发释放行为。亲脂性超顺磁氧化铁(SPIO)纳米粒子与两亲性壳聚糖衍生物羧甲基己酰壳聚糖(CHC)自组装形成超顺磁 CHC/SPIO 胶束,然后负载喜树碱(一种疏水性抗癌药物)。然后将超顺磁胶束与基于白蛋白的微泡(MB)缀合,形成超顺磁胶束修饰的 MB(CHC/SPIO 修饰的 MB)。白蛋白 MB 和 CHC/SPIO 修饰的 MB 均表现出体外浓度依赖性 US 成像对比。有趣的是,体外 US 对比通过修饰得到增强。体内 US 图像显示,所提出的载体的 B 模式对比可以在 Sprague-Dawley 大鼠的静脉和动脉中清晰观察到。此外,在所提议的车辆在 1MHz 频率和 2.4Wcm(-2)的功率密度下进行 30 分钟的治疗性超声声振下表现出显著的 US 触发释放行为。然而,在频率为 12MHz 和机械指数为 0.5 的诊断性 US 轰炸下没有观察到类似的行为。另一方面,CHC/SPIO-胶束修饰的 MB 的体外 MR 图像也由于其超顺磁胶束的修饰而显示出显著的浓度依赖性 T2(自旋-自旋弛豫时间)对比。最重要的是,CHC/SPIO 修饰的 MB 的 r(2)(∗)-r(2)值在 30 分钟的治疗性 US 轰炸后降低。这可以被认为是探测载药 CHC/SPIO 胶束破坏的指标。

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