材料科学
纳米技术
金属有机骨架
路径(计算)
工程物理
工程伦理学
有机化学
计算机科学
物理
吸附
化学
工程类
程序设计语言
作者
Przemysław J. Jodłowski,Klaudia Dymek,Grzegorz Kurowski,Kornelia Hyjek,Anna Boguszewska‐Czubara,Barbara Budzyńska,Weronika Mrozek,Norbert Skoczylas,Łukasz Kuterasiński,Witold Piskorz,Marek Białoruski,Roman J. Jędrzejczyk,Piotr Jeleń,Maciej Sitarz
标识
DOI:10.1021/acsami.4c02450
摘要
The growing number of acute drug abuse overdoses demands the development of innovative detoxification strategies for emergency purposes. In this study, an innovative approach for the application of porous Zr-based metal–organic frameworks for the treatment of acute overdoses of popular drugs of abuse including amphetamine, methamphetamine, cocaine, and MDMA is presented. A comprehensive approach determining the efficacy and the kinetics of drug removal, considering dosage, adsorption time, and adsorption mechanisms, was tested and corroborated with density functional theory (DFT) modeling. The experimental results showed high removal efficiency reaching up to 90% in the case of the application of the NU-1000 metal–organic framework. The difference Raman spectroscopy method presented in this study corroborated with DFT-based vibrational analysis allows the detection of drug adsorbed in the MOF framework even with as low a concentration as 5 mg/g. Additionally, the drug adsorption mechanisms were modeled with DFT, showing the π–π stacking in a vast majority of considered cases. The performance and influence on the living organisms were evaluated throughout the in vitro and in vivo experiments, indicating that Zr-based MOFs could serve as efficient, organic, safe drug adsorbents.
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