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Evaluation of the targeted delivery of 5-fluorouracil and ascorbic acid into the brain with ultrasound-responsive nanobubbles

机译:用超声响应纳米柔臼评估5-氟尿嘧啶和抗坏血酸的靶向递送到大脑中的脑

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Recently, ultrasound-induced drug delivery into the brain using bubble formulations has been developed. After the brain delivery, however, the information on pharmacokinetics of hydrophilic drugs in the brain is lacking. In this study, to clarify the time-course pharmacokinetics of hydrophilic drugs, we used a brain microdialysis method. Using ultrasound-responsive nanobubbles (bubble liposomes (BLs)) with ultrasound irradiation, two hydrophilic drugs, 5-fluorouracil (5-FU) and ascorbic acid, were delivered into the brain of mice and rats and their time-course pharmacokinetics were evaluated with microdialysis. The results indicated that the time-course pharmacodynamics of ascorbic acid evaluated by examining its antioxidant capacity supported the time-course pharmacokinetics. Additionally, to strengthen the evidences of our evaluation, we varied the effect of BLs dose and duration and intensity of ultrasound irradiation on drug delivery. Among them, when the dose of BLs was changed, the trend of 5-FU intracerebral migration was consistent with other report. In conclusion, we succeeded in clarifying the time-course pharmacokinetics of the two hydrophilic drugs after the brain delivery with bubble formulations and ultrasound irradiation using mice and rats. ? 2017, ? 2017 Informa UK Limited, trading as Taylor & Francis Group.
机译:最近,已经开发出使用泡沫配方的超声诱导的药物输送到脑中。然而,脑递送后,缺乏关于大脑中亲水药物的药代动力学的信息。在这项研究中,为了澄清亲水药的时间过程药代动力学,我们使用了脑微透析方法。使用超声辐射的超声响应纳米泡(泡沫脂质体(BLS)),两种亲水药物,5-氟尿嘧啶(5-FU)和抗坏血酸被递送到小鼠的脑中,并评估其时间过程药代动力学进行评估MicrodiaLysis。结果表明,通过检查其抗氧化能力评估的抗坏血酸的时间过程药效学支持时间过程药代动力学。此外,为了加强对评价的证据,我们可以改变BLS剂量和超声辐射对药物递送的持续时间和强度的影响。其中,当BLS的剂量发生变化时,5-FU的颅内迁移的趋势与其他报告一致。总之,我们成功地澄清了在脑部递送后用泡形式和使用小鼠的超声照射后澄清两种亲水药的时序药代动力学。还2017年,? 2017年Informa UK Limited,贸易为泰勒&弗朗西斯集团。

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