首页> 外文会议>IEEE International Ultrasonics Symposium >High-Sensitivity Distribution Mapping of Iron, Zinc and Copper during SPIO-Microbubbles Facilitated Focused Ultrasound Induced Blood-Brain Barrier Opening via Laser Ablation/Inductively Coupled Plasma Mass Spectrometry
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High-Sensitivity Distribution Mapping of Iron, Zinc and Copper during SPIO-Microbubbles Facilitated Focused Ultrasound Induced Blood-Brain Barrier Opening via Laser Ablation/Inductively Coupled Plasma Mass Spectrometry

机译:硅基微泡期间铁,锌和铜的高灵敏度分布映射,便于通过激光烧蚀/电感耦合等离子体质谱法聚焦超声诱导的血脑屏障开度

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Focused ultrasound (FUS) with microbubbles (MBs) has been approved to achieve local blood-brain barrier disruption (BBBD), increasing the delivery of therapeutic agents into brain. Previous reports have demonstrated the use of medical imaging system (ultrasound, CT, MRI, SPECT, or PET) to observe the redistribution of the delivered substance. However, the redistribution of elements such as zinc or copper has not yet been discovered, nor their effects and roles to CNS after FUS sonications. Laser ablation/inductively coupled plasma mass spectrometry (LA-ICP-MS) is a sensitive analytical technique and is capable of quantitatively providing solid inorganic matrices distribution in tissues. In this study, LA-ICP-MS was used to explore the feasibility of detecting the delivered iron (i.e. SPIO-conjugated MBs, SPIO-MBs) and its redistribution after magnetic targeting (MT), as well as the elements redistribution. The 1-MHz FUS (acoustic energy = 0.4-1.0 MPa, duty cycle = 10%, sonication time = 1 min) was exposed to left brain of rats following SPIO-MBs injection to induce BBBD (SPIO payload was 200 ± 19.6 μg by ICP-AES). A 0.5 T permanent magnet was attached to the rat's scalp for performing MT. The spatial elemental maps were performed with the LA-ICP-MS system excited by 213 nm Nd-YAG laser (energy = 1.6 mJ, frequency = 10 Hz, scanning speed = 90 μm/s). The distribution and concentration of elements including iron, copper, and zinc were analyzed. Results showed that LA-ICP-MS performed high sensitivity in the detection of the elements distribution in the brain. The iron mapping revealed that SPIOs were highly concentrated at FUS exposed and MT performed sites. No obvious zinc and copper deposition within sonication regions were found after FUS sonication. This study confirmed the potential of LA-ICP-MS for providing highly-sensitive detection method for solid inorganic matrices in brain tissues, and tracing the redistribution of elements. Moreover, concurrent use of SPIO-MBs with MT further enhanced the SPIO delivery into the BBBD area. Future work includes using SPIO-MBs as a surrogate tracer to estimate drug delivery efficiency during BBBD.
机译:聚焦超声(FUS)与微泡(MBS)已被批准实现局部血脑屏障中断(BBBD),从而增加治疗剂进入脑中的递送。以前的报告证明了使用医学成像系统(超声波,CT,MRI,SPECT或PET)来观察递送物质的再分配。然而,尚未发现锌或铜等元素的重新分配,或者在FUS超声处理后的CNS的影响和角色。激光烧蚀/电感耦合等离子体质谱(La-ICP-MS)是一种敏感的分析技术,并且能够定量提供组织中的固体无机基质分布。在该研究中,La-ICP-MS用于探讨检测递送的铁(即Spio-Congugated MBS,SpiOm-MB)的可行性及其在磁性靶向(MT)之后的再分分配,以及元素再分配。 1-MHz Fus(声能= 0.4-1.0MPa,占空比= 10%,超声续时间= 1分钟)暴露于SPIO-MBS注射后大鼠左脑诱导BBBD(SPIO有效载荷为200±19.6μg ICP-AES)。将0.5 T永磁体连接到大鼠的头皮上,以进行MT。使用213nm Nd-YAG激光激发的LA-ICP-MS系统进行空间元素贴图(Energy = 1.6 MJ,频率= 10Hz,扫描速度=90μm)。分析了包括铁,铜和锌的元素的分布和浓度。结果表明,La-ICP-MS在检测大脑中的元素分布的检测方面进行了高灵敏度。铁映射显示,分子在Fus暴露和MT进行的位点高度浓缩。在Fus超声处理后发现超声区域内没有明显的锌和铜沉积。该研究证实了La-ICP-MS的潜力,用于为脑组织中的固体无机矩阵提供高敏感的检测方法,并跟踪元素的再分配。此外,使用MT的SPIO-MB同时使用进一步增强了SPIO输送到BBBD区域。未来的工作包括使用SPIO-MBS作为代理示踪剂,以估算BBBD期间的药物输送效率。

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