纳米载体
纳米技术
药物输送
材料科学
背景(考古学)
金属有机骨架
毒品携带者
药品
吸附
化学
药理学
医学
有机化学
生物
古生物学
作者
Patricia Horcajada,Tamim Chalati,Christian Serre,Brigitte Gillet,Catherine Sébrié,Tarek Baâti,Jarrod F. Eubank,Daniela Heurtaux,Pascal Clayette,Christine Kreuz,Jong‐San Chang,Young Kyu Hwang,Véronique Marsaud,Phuong-Nhi Bories,Luc Cynober,Sophie Gil,Gérard Férey,Patrick Couvreur,Ruxandra Gref
出处
期刊:Nature Materials
[Nature Portfolio]
日期:2009-12-13
卷期号:9 (2): 172-178
被引量:3933
摘要
In the domain of health, one important challenge is the efficient delivery of drugs in the body using non-toxic nanocarriers. Most of the existing carrier materials show poor drug loading (usually less than 5 wt% of the transported drug versus the carrier material) and/or rapid release of the proportion of the drug that is simply adsorbed (or anchored) at the external surface of the nanocarrier. In this context, porous hybrid solids, with the ability to tune their structures and porosities for better drug interactions and high loadings, are well suited to serve as nanocarriers for delivery and imaging applications. Here we show that specific non-toxic porous iron(III)-based metal-organic frameworks with engineered cores and surfaces, as well as imaging properties, function as superior nanocarriers for efficient controlled delivery of challenging antitumoural and retroviral drugs (that is, busulfan, azidothymidine triphosphate, doxorubicin or cidofovir) against cancer and AIDS. In addition to their high loadings, they also potentially associate therapeutics and diagnostics, thus opening the way for theranostics, or personalized patient treatments.
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