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Focused ultrasound-enhanced intranasal brain delivery of brain-derived neurotrophic factor

机译:聚焦超声增强鼻内脑源性神经营养因子的递送

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摘要

The objective of this study was to unveil the potential mechanism of focused ultrasound (FUS)-enhanced intranasal (IN) brain drug delivery and assess its feasibility in the delivery of therapeutic molecules. Delivery outcomes of fluorescently-labeled dextrans to mouse brains by IN administration either before or after FUS sonication were compared to evaluate whether FUS enhances IN delivery by active pumping or passive diffusion. Fluorescence imaging of brain slices found that IN administration followed by FUS sonication achieved significantly higher delivery than IN administration only, while pre-treatment by FUS sonication followed by IN administration was not significantly different from IN administration only. Brain-derived neurotrophic factor (BDNF), a promising neurotrophic factor for the treatment of many central nervous system diseases, was delivered by IN followed by FUS to demonstrate the feasibility of this technique and compared with the established FUS technique where drugs are injected intravenously. Immunohistochemistry staining of BDNF revealed that FUS-enhanced IN delivery achieved similar locally enhanced delivery as the established FUS technique. This study suggested that FUS enhances IN brain drug delivery by FUS-induced active pumping of the drug and demonstrated that FUS-enhanced IN delivery is a promising technique for noninvasive and localized delivery of therapeutic molecules to the brain.
机译:这项研究的目的是揭示聚焦超声(FUS)增强鼻内(IN)脑部药物输送的潜在机制,并评估其在治疗性分子输送中的可行性。比较了在FUS超声处理之前或之后通过IN施用荧光标记的右旋糖酐到小鼠大脑的递送结果,以评估FUS是通过主动泵送还是被动扩散增强IN递送。脑切片的荧光成像发现,与仅使用IN相比,先进行IN联合FUS超声处理可获得更高的递送效果,而仅通过IN进行FUS超声预处理再进行IN预处理无明显差异。 IN继之以FUS来提供脑源性神经营养因子(BDNF),这是一种有望用于治疗许多中枢神经系统疾病的神经营养因子,以证明该技术的可行性,并与已建立的静脉注射药物的FUS技术进行了比较。 BDNF的免疫组织化学染色显示,与已建立的FUS技术相比,FUS增强的IN递送实现了类似的局部增强递送。这项研究表明,FUS通过FUS诱导的主动泵送增强了IN脑药物的输送,并证明了FUS增强的IN输送是一种将治疗分子非侵入性地局部输送到大脑的有前途的技术。

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