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神经干细胞活性因子红景天苷复合物纳米微脂囊的备制及其特性
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作者 周文亚 谢党恩 《中国科技期刊数据库 医药》 2024年第7期0034-0038,共5页
文旨在探讨利用薄膜分散技术获得高效、稳定、可控的红景天苷复合物(HGF-SA-CS-NPs)。方法 利用粒度、粒径分散系数、Zeta电位和包裹率等技术参数,构建出具有良好功能和稳定结构的hgf-sa-cs-nps壳聚糖胶囊,从而实现对hgf-sd在神经系统... 文旨在探讨利用薄膜分散技术获得高效、稳定、可控的红景天苷复合物(HGF-SA-CS-NPs)。方法 利用粒度、粒径分散系数、Zeta电位和包裹率等技术参数,构建出具有良好功能和稳定结构的hgf-sa-cs-nps壳聚糖胶囊,从而实现对hgf-sd在神经系统内的有效应用。经过正交试验,我们发现,在研究中,将卵磷脂、胆酸钠的质量比调整到6:1,以及将卵磷脂、神经干细胞活性因子、红景天苷的质量比调整到10:1:1,以及将探头的超声时间调整到15min,都是获得优良效果的关键因素。结果 研究表明,HGF-Sd柔性纳米脂质体的包装密度在84.54±1.73之间,载药量在25.19±1.19之间,其外观呈现出类似圆柱的颗粒,其平均直径约为175nm,而其zeta电位则在-78.9mV左右。结论 该产品的设计与生产技术十分成熟,其良好的反馈机理及良好的抑菌效果,使其成为一种理想的新型药物载体,以期达到更佳的治疗效果。 展开更多
关键词 神经干细胞活性因子 红景天苷 复合物 纳米微脂囊
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Recognizing single phospholipid vesicle collisions on carbon fiber nanoelectrode 被引量:2
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作者 Yueyue Zhang Min Li +6 位作者 Zhenhua Li Qian Li Ali Aldalbahi Jiye Shi Lihua Wang Chunhai Fan Xiaolei Zuo 《Science China Chemistry》 SCIE EI CAS CSCD 2017年第11期1474-1480,共7页
We recognize the stochastic collisions of dopamine contained phospholipid vesicle on carbon fiber nanoelectrode, extending the observation of discrete collision events on nanoelectrode to biologically relevant analyte... We recognize the stochastic collisions of dopamine contained phospholipid vesicle on carbon fiber nanoelectrode, extending the observation of discrete collision events on nanoelectrode to biologically relevant analytes. To decrease noise interference to the technique, the dimensions of nanoelectrode was systematically investigated and optimized. Scanning electron microscopy(SEM) further supported the comparable sizes of nanoelectrode and vesicles(~100 nm in diameter). Vesicles collision and rupture on the surface of nanoelectrode led to the dopamine release from vesicles, which could be electrochemically oxidized to dopamine-o-quinone and detected via voltammetry. The comparable size of the nanoelectrode with vesicles and fast voltammetry allowed differentiation of single collision events from the current magnitudes and peak widths in the electrochemical collision experiments, which shows the efficacy of the method to characterize vesicle samples. This work provides a foundation upon which quantitative sensor technology might be built for the detection of dopamine contained vesicles with high spatial and temporal resolution. 展开更多
关键词 single vesicle carbon fiber nanoelectrode high resolution electrochemical detection
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