阿霉素
乙二醇
材料科学
体内
药理学
结合
药品
药物输送
脂质体
纳米医学
儿茶素
化学
组合化学
纳米技术
医学
有机化学
抗氧化剂
化疗
纳米颗粒
多酚
生物
生物技术
外科
数学分析
数学
作者
Kun Liang,Joo Eun Chung,Shu Jun Gao,Nunnarpas Yongvongsoontorn,Motoichi Kurisawa
标识
DOI:10.1002/adma.201706963
摘要
Low drug loading and instability in blood circulation are two key challenges that impede the successful clinical translation of nanomedicine, as they result in only marginal therapeutic efficacy and toxic side effects associated with premature drug leakage, respectively. Herein, highly stable and ultrahigh drug loading micellar nanocomplexes (MNCs) based on the self-assembly of the anticancer drug doxorubicin (DOX) and a poly(ethylene glycol)-epigallocatechin-3-O-gallate (EGCG) conjugate are developed. The formation of these MNCs is facilitated by strong favorable intermolecular interactions between the structurally similar aromatic EGCG and DOX molecules, which impart exceptionally high drug-loading capability of up to 88% and excellent thermodynamic and kinetic stability. Unlike two clinical formulations of DOX-free DOX and liposomal DOX, which are not effective below their lethal dosages, these DOX-loaded MNCs demonstrate significant tumor growth inhibition in vivo on a human liver cancer xenograft mouse model with minimal unwanted toxicity. Overall, these MNCs can represent a safe and effective strategy to deliver DOX for cancer therapy.
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