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Multiple-Exposure Drug Release from Stable Nanodroplets by High-Intensity Focused Ultrasound for a Potential Degenerative Disc Disease Treatment

机译:通过高强度聚焦超声波从稳定的纳米辊释放的多曝光药物释放,以进行潜在的退行性椎间盘疾病治疗

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摘要

The combination of simvastatin and CF680 dye encapsulated by stable nanodroplets has been developed as a drug delivery carrier. Simvastatin has previously been found to be a potential degenerative disc disease treatment. Multiple exposures of the nanodroplets to high-intensity focused ultrasound induced release of simvastatin. Each ultrasound exposure yielded a consistent concentration of the drug and dye released. B-mode ultrasound image analysis data and cavitation data clearly indicated the release mechanism is phase transition of the liquid nanodroplets into gas bubbles. The nanodroplets were stably stored inex vivorabbit spinal discs for at least 14 days, and the contents responded to ultrasound exposure on demand. Lastly, nucleus pulposus cells harvested from rabbit spine discs and exposed to media with nanodroplets exhibited a decrease in cell viability (85%) relative to the cells only (96.7%) at 24 h, but no difference at 48 h. Thus, the system may be a potential degenerative disc disease treatment.
机译:通过稳定的纳米辊封装的辛伐他汀和CF680染料的组合已被开发为药物递送载体。辛伐他汀之前已被发现是潜在的退行性椎间盘疾病治疗。将纳米辊的多次暴露于高强度聚焦超声诱导的辛伐他汀释放。每种超声曝光产生一致的药物和染料释放的一致浓度。 B模式超声图像分析数据和空化数据清楚地表明释放机构是液体纳米液体到气泡中的相转变。纳米油稳定地储存在内的vivorabbit脊柱椎间盘至少14天,并且内容物响应超声暴露于需求。最后,从兔脊柱盘中收获并暴露于纳米玻璃晶片的核浆膜细胞细胞相对于24小时的细胞活力(85%)降低,但在48小时内没有差异。因此,系统可以是潜在的退行性椎间盘疾病治疗。

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