动态光散射
纳米载体
Zeta电位
PEG比率
共聚物
核化学
化学
两亲性
纳米颗粒
乙二醇
天冬氨酸
药物输送
体外
生物物理学
体内
高分子化学
材料科学
聚合物
纳米技术
有机化学
生物化学
生物技术
财务
氨基酸
经济
生物
作者
Seungil Kim,Yannick Léandre Traoré,Jae Sang Lee,Ji‐Heung Kim,Emmanuel A. Ho,Song Liu
标识
DOI:10.1080/09205063.2017.1374032
摘要
New amphiphilic PEGylated poly(aspartic acid) graft copolymer (PASP-PEG-Ph) was synthesized as a nanocarrier for intravaginal drug delivery of poorly water-soluble drugs. PASP-PEG-Ph self-assembled into negatively charged spherically shaped nanoparticles in the presence of pH 4.5 and pH 7.0 vaginal fluid simulants with a diameter of approximately 200 nm as evidenced by Zeta-potentiometer, scanning electron microscope (SEM), dynamic light scattering (DLS) analysis. A significant number of stable NPs could be maintained at pH 4.5, 37 °C for 13 days. The PASP-PEG-Ph NP showed no significant cytotoxicity toward the T-cell line SupT1 and human vaginal epithelial cell line Vk2/E6E7 up to 1 mg/mL. The highest encapsulation efficiency of the model drug coumarin 6 (C6) by PASP-PEG-Ph was 92.0 ± 5.7%. The sustained release profile of the encapsulated C6 was demonstrated by an in vitro release study. An in vitro cellular uptake study revealed strong cellular uptake of the C6 loaded NP by SupT1 cells within 2 h.
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