体内
阿霉素
药理学
药品
药物输送
分布(数学)
纳米医学
肝癌
药代动力学
癌症
医学
PEG比率
靶向给药
毒性
化疗
化学
纳米技术
材料科学
内科学
纳米颗粒
生物
有机化学
经济
生物技术
数学分析
数学
财务
作者
Yuemin Wang,Xiaomei Chen,Dahua He,Yi Zhou,Linghao Qin
标识
DOI:10.1021/acs.molpharmaceut.8b00881
摘要
Anticancer drugs cannot be located in the tumor efficiently when intravenously administered because of their weak tissue specificity and often present the problems of low therapeutic activity and severe adverse effects. To conquer these challenges, a targeting nanomedicine system based on human body cells or cell derivates have drawn more attention from scientists in recent decades. In this work, we used doxorubicin (DOX) as a model drug and a nanoerythrocyte modified with folic acid (FA) and polyethylene glycol (PEG) as a carrier to develop a novel tumor targeting drug delivery system (FA/PEG-DOX-Nano-RBCs) to enhance antitumor efficacy and reduce drug-related toxicity. The results showed that this drug delivery system exhibited inspiring features including nanoscale particle size with uniform distribution, good physicochemical stability, and sustained drug release behavior. Compared with DOX injection, FA/PEG-DOX-Nano-RBCs can greatly prolong the drug circulation time in vivo and upgrade the drug concentration accumulated in tumor tissue. Moreover, FA/PEG-DOX-Nano-RBCs exerted stronger antitumor efficacy in vivo against liver cancer and showed superior safety. In conclusion, a surface-modified nanoerythrocyte was a promising drug delivery vehicle for achieving improved therapeutic efficacy and reduced systemic adverse effects for anticancer drugs.
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