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首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Lipid microbubbles as a vehicle for targeted drug delivery using focused ultrasound-induced blood-brain barrier opening
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Lipid microbubbles as a vehicle for targeted drug delivery using focused ultrasound-induced blood-brain barrier opening

机译:用聚焦超声诱导的血脑屏障开口作为靶向药物递送的脂质微泡。

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摘要

Focused ultrasound in conjunction with lipid microbubbles has fully demonstrated its ability to induce non-invasive, transient, and reversible blood-brain barrier opening. This study was aimed at testing the feasibility of our lipid-coated microbubbles as a vector for targeted drug delivery in the treatment of central nervous system diseases. These microbubbles were labeled with the fluorophore 5-dodecanoylaminfluorescein. Focused ultrasound targeted mouse brains in vivo in the presence of these microbubbles for trans-blood-brain barrier delivery of 5-dodecanoylaminfluorescein. This new approach, compared to previously studies of our group, where fluorescently labeled dextrans and microbubbles were co-administered, represents an appreciable improvement in safety outcome and targeted drug delivery. This novel technique allows the delivery of 5-dodecanoylaminfluorescein at the region of interest unlike the alternative of systemic exposure. 5-dodecanoylaminfluorescein delivery was assessed by ex vivo fluorescence imaging and by in vivo transcranial passive cavitation detection. Stable and inertial cavitation doses were quantified. The cavitation dose thresholds for estimating, a priori, successful targeted drug delivery were, for the first time, identified with inertial cavitation were concluded to be necessary for successful delivery. The findings presented herein indicate the feasibility and safety of the proposed microbubble-based targeted drug delivery and that, if successful, can be predicted by cavitation detection in vivo.
机译:聚焦超声结合脂质微泡完全证明了其诱导非侵入性,瞬态和可逆血脑屏障开口的能力。本研究旨在测试我们的脂质涂覆的微泡的可行性,作为治疗中枢神经系统疾病的靶向药物递送的载体。将这些微泡用荧光团5-十二烷酰基氟胺标记。聚焦超声靶向小鼠大脑在这些微泡的存在下,用于5-十二烷酰胺血管素的转发血脑屏障递送。与先前对我们的组的研究相比,这种新方法,其中共同施用荧光标记的葡聚糖和微泡,代表了安全结果和靶向药物递送的明显改善。这种新颖的技术允许在与系统暴露的替代方案不同的情况下在感兴趣区域中递送5-十二烷酰基血管素。 5-十二烷酰胺血红素素递送由前体内荧光成像和体内经过的经过空化检测评估。量化稳定和惯性空化剂量。估计的空化剂量阈值是第一次使用惯性空化鉴定的先验成功的靶向药物递送是为了成功递送所必需的。本文提出的发现表明,可以通过体内空化检测来预测所提出的微泡的靶向药物递送的可行性和安全性,并且如果成功,则可以通过体内空化检测来预测。

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