Tajahmadi Shima, Shamloo Amir, Shojaei Akbar, Sharifzadeh Mohammad
Institute for Nanoscience and Nanotechnology (INST), Sharif University of Technology, Tehran14588-89694, Iran.
Department of Mechanical Engineering, Sharif University of Technology, Azadi Avenue, Tehran11365-8639, Iran.
ACS Omega. 2022 Nov 2;7(45):41177-41188. doi: 10.1021/acsomega.2c04800. eCollection 2022 Nov 15.
A carboxylate gadolinium-based metal-organic framework (Gd-MOF) is an exceptional candidate for magnetic resonance imaging agents, but its low drug adsorption capacity hinders this MOF from being used as a theragnostic agent. In this work, the Gd-MOF was synthesized by a simple solvothermal method. Then, different activation situations, including various solvents over different time periods, were applied to enhance the specific surface area of the synthesized MOF. Different characterization analyses such as X-ray diffraction and Brunauer-Emmett-Teller along with experimental quercetin adsorption tests were done to study the crystalline and physical properties of various activated MOFs. In the following, the MOF activated by ethanol for 3 days (3d-E) was chosen as the best activated MOF due to its crystallinity, highest specific surface area, and drug adsorption capacity. More explorations were done for the selected MOF, including the drug adsorption isotherm, thermodynamics, and pH effect of adsorption. The results show that the activation process substantially affects the crystallinity, morphology, specific surface area, and drug adsorption capacity of Gd-MOFs. An optimized activation condition is proposed in this work, which shows an impressive enhancement of the specific surface area of Gd-MOFs just by simple solvent exchange method employment.
基于羧酸盐的钆基金属有机框架(Gd-MOF)是磁共振成像剂的理想候选材料,但其低药物吸附能力阻碍了这种金属有机框架用作诊疗剂。在本工作中,通过简单的溶剂热法合成了Gd-MOF。然后,应用不同的活化情况,包括在不同时间段使用各种溶剂,以提高合成的金属有机框架的比表面积。进行了不同的表征分析,如X射线衍射和布鲁诺尔-埃米特-泰勒(Brunauer-Emmett-Teller)分析,以及槲皮素吸附实验测试,以研究各种活化金属有机框架的晶体和物理性质。接下来,由于其结晶度、最高比表面积和药物吸附能力,选择用乙醇活化3天的金属有机框架(3d-E)作为最佳活化金属有机框架。对所选金属有机框架进行了更多探索,包括药物吸附等温线、热力学以及吸附的pH效应。结果表明,活化过程对Gd-MOFs的结晶度、形态、比表面积和药物吸附能力有显著影响。本工作提出了一种优化的活化条件,通过简单的溶剂交换方法,Gd-MOFs的比表面积得到了显著提高。