青蒿素
材料科学
药物输送
体内
药品
癌症治疗
癌症治疗
肿瘤微环境
药理学
癌症
纳米技术
医学
恶性疟原虫
疟疾
生物
生物技术
免疫学
内科学
作者
Pengping Xu,Xueying Wang,Tuanwei Li,Lingli Li,Huihui Wu,Jinwei Tu,Ruo-Yang Zhang,Lei Zhang,Zhen Guo,Qianwang Chen
标识
DOI:10.1021/acsami.1c09612
摘要
Artemisinin compounds have shown satisfactory safety records in anti-malarial clinical practice over decades and have revealed value as inexpensive anti-tumor adjuvant chemotherapeutic drugs. However, the rational design and precise preparation of nanomedicines based on the artemisinin drugs are still limited due to their non-aromatic and fragile chemical structure. Herein, a bioinspired coordination-driven self-assembly strategy was developed to manufacture the artemisinin-based nanoprodrug with a significantly increased drug loading efficacy (∼70 wt %) and decreased preparation complexity compared to conventional nanodrugs. The nanoprodrug has suitable size distribution and robust colloidal stability for cancer targeting in vivo. The nanoprodrug was able to quickly disassemble in the tumor microenvironment with weak acidity and a high glutathione concentration, which guarantees a better tumor inhibitory effect than direct administration and fewer side effects on normal tissues in vivo. This work highlights a new strategy to harness a robust, simplified, organic solvent-free, and highly repeatable route for nanoprodrug manufacturing, which may offer opportunities to develop cost-effective, safe, and clinically available nanomedicines.
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