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首页> 外文期刊>Theranostics >Ultrasound/Magnetic Targeting with SPIO-DOX-Microbubble Complex for Image-Guided Drug Delivery in Brain Tumors
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Ultrasound/Magnetic Targeting with SPIO-DOX-Microbubble Complex for Image-Guided Drug Delivery in Brain Tumors

机译:超声/磁性靶向与SPIO-DOX-微泡复合物在脑肿瘤中引导图像的药物递送

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摘要

One of the greatest challenges in the deployment of chemotherapeutic drugs against brain tumors is ensuring that sufficient drug concentrations reach the tumor, while minimizing drug accumulation at undesired sites. Recently, injection of therapeutic agents following blood-brain barrier (BBB) opening by focused ultrasound (FUS) with microbubbles (MBs) has been shown to enhance drug delivery in targeted brain regions. Nevertheless, the distribution and quantitative deposition of agents delivered to the brain are still hard to estimate. Based on our previous work on superparamagnetic iron oxide (SPIO)-loaded MBs, we present a novel theranostic complex of SPIO-Doxorubicin (DOX)-conjugated MB (SD-MB) for drug delivery to the brain. Magnetic labeling of the drug enables direct visualization via magnetic resonance imaging, and also facilitates magnetic targeting (MT) to actively enhance targeted deposition of the drug. In a rat glioma model, we demonstrated that FUS sonication can be used with SD-MBs to simultaneously facilitate BBB opening and allow dual ultrasound/magnetic targeting of chemotherapeutic agent (DOX) delivery. The accumulation of SD complex within brain tumors can be significantly enhanced by MT (25.7 fold of DOX, 7.6 fold of SPIO). The change in relaxation rate R2 (1/T2) within tumors was highly correlated with SD deposition as quantified by high performance liquid chromatography (R2 = 0.93) and inductively coupled plasma-atomic emission spectroscopy (R2 = 0.94), demonstrating real-time monitoring of DOX distribution. Our results suggest that SD-MBs can serve as multifunction agents to achieve advanced molecular theranostics.
机译:部署针对脑部肿瘤的化学治疗药物的最大挑战之一是确保足够的药物浓度到达肿瘤,同时最大程度地减少药物在不良部位的蓄积。近来,已显示通过聚焦超声(FUS)与微泡(MBs)打开血脑屏障(BBB)后注射治疗剂可增强在目标脑区域的药物递送。然而,仍然很难估计输送到大脑的药物的分布和定量沉积。基于我们先前对超顺磁性氧化铁(SPIO)负载的MBs的研究,我们提出了一种新型的SPIO-阿霉素(DOX)缀合的MB(SD-MB)治疗药物复合物,可将其递送至大脑。药物的磁性标记能够通过磁共振成像直接可视化,并且还有助于磁性靶向(MT)来积极增强药物的靶向沉积。在大鼠神经胶质瘤模型中,我们证明FUS声波可与SD-MB一起使用,以同时促进BBB的开放并允许化学治疗剂(DOX)递送的超声/磁性双重靶向。 MT(25.7倍DOX,7.6倍SPIO)可以显着增强SD复合物在脑肿瘤中的蓄积。高效液相色谱法(R 2 = 0.93)和电感耦合等离子体原子发射光谱法(R 2)定量地确定,肿瘤内弛豫率R2(1 / T2)的变化与SD沉积高度相关。 sup> 2 = 0.94),演示了对DOX分布的实时监控。我们的结果表明,SD-MBs可以作为多功能试剂来实现先进的分子治疗学。

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