吉西他滨
生物利用度
药理学
胶束
药代动力学
药物输送
化学
药品
抗代谢物
化疗
医学
内科学
物理化学
有机化学
水溶液
作者
Wenqing Zang,Duo Gao,Miaorong Yu,Manmei Long,Zhuan Zhang,Tianhai Ji
出处
期刊:ACS Nano
[American Chemical Society]
日期:2023-09-17
卷期号:17 (18): 18074-18088
被引量:4
标识
DOI:10.1021/acsnano.3c04793
摘要
The clinical utility of gemcitabine, an antimetabolite antineoplastic agent applied in various chemotherapy treatments, is limited due to the required intravenous injection. Although chemical structure modifications of gemcitabine result in enhanced oral bioavailability, these modifications compromise complex synthetic routes and cause unexpected side effects. In this study, gemcitabine-loaded glycocholic acid-modified micelles (Gem-PPG) were prepared for enhanced oral chemotherapy. The in vitro transport pathway experiments revealed that intact Gem-PPG were transported across the intestinal epithelial monolayer via an apical sodium-dependent bile acid transporter (ASBT)-mediated pathway. In mice, the pharmacokinetic analyses demonstrated that the oral bioavailability of Gem-PPG approached 81%, compared to less than 20% for unmodified micelles. In addition, the antitumor activity of oral Gem-PPG (30 mg/kg, BIW) was superior to that of free drug injection (60 mg/kg, BIW) in the xenograft model. Moreover, the assessments of hematology, blood chemistry, and histology all indicated the hypotoxicity profile of the drug-loaded micelles.
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