胶束
生物利用度
Zeta电位
阿霉素
化学
壳聚糖
渗透
纳米载体
结合
溶解度
药物输送
共轭体系
槲皮素
色谱法
生物物理学
药理学
核化学
纳米颗粒
膜
有机化学
纳米技术
生物化学
材料科学
水溶液
聚合物
化疗
抗氧化剂
数学
医学
外科
数学分析
生物
作者
Yuzhi Mu,Yangmu Fu,Jing Li,Xiaoping Yu,Yang Li,Yanan Wang,Xuanjin Wu,Kaichao Zhang,Ming Kong,Chao Feng,Xiguang Chen
标识
DOI:10.1016/j.carbpol.2018.09.020
摘要
In this study, quercetin-chitosan conjugate (QT-CS) was synthesized for oral delivery of doxorubicin (DOX) to improve its oral bioavailability by increasing its water solubility, opening tight junction and bypassing the P-glycoprotein (P-gp). The prepared QT-CS self-assembled into micelles which could encapsulate DOX with high encapsulation rate, small particle size (136.9 nm) and strong zeta potential (+16.2 mV). QT-CS-DOX micelles displayed sustained-release profile in gastrointestinal simulation fluid (pH 1.2/pH 7.4). QT-CS micelles could promote cellular uptake of doxorubicin, which was 2.2 folds higher than that of free doxorubicin. The trans epithelial electrical resistance (TEER) value of Caco-2 monolayer cells was significantly reduced (about 57%) by drug loaded QT-CS micelles, leading to a high apparent permeability coefficient (Papp) of doxorubicin, which was 10.17 folds higher than that of free doxorubicin. Above results indicate that QT-CS micelles are promising vehicles for the oral delivery of insoluble anticancer drugs.
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