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硬脂酸修饰的纳米金属有机骨架材料用作一氧化氮载体以实现一氧化氮的长效释放。

Stearic acid modified nano CuMOFs used as a nitric oxide carrier for prolonged nitric oxide release.

作者信息

Huang Maotao, Zhang Jianwen, Ke Xianlan, Gao Shuai, Wu Dimeng, Chen Junying, Weng Yajun

机构信息

Key Laboratory of Advanced Technologies of Materials, Ministry of Education, School of Materials Science and Engineering, Southwest Jiaotong University Chengdu PR China

Chengdu Daxan Innovative Medical Tech. Co., Ltd Chengdu PR China.

出版信息

RSC Adv. 2022 Jan 17;12(4):2383-2390. doi: 10.1039/d1ra08066k. eCollection 2022 Jan 12.

Abstract

Nitric oxide (NO) shows high potential in the cardiovascular system with anticoagulant and antibacterial efficacy. Cu based metal organic frameworks with amino modification (CuMOFs) were found to have an extraordinary high NO loading, but at the expense of framework stability in ambient moisture. Nano CuMOFs was synthesized by hydrothermal method in this work, and treated with stearic acid (SA) creating a hydrophobic form. It was found that the structure of the particles was not affected after treatment with SA, and the treated CuMOFs had tunable hydrophobicity. Both CuMOFs and SA modified CuMOFs adsorbed NO with the reaction of the amino group and NO to form a NONOate. SA modification enhanced stability of the CuMOFs in phosphate buffer solution (PBS, pH = 7.4), slowed down the interaction between the NO loading unit and HO, and thus NO releasing was prolonged. The resulting NO-loaded CuMOFs inhibited platelet activation dramatically, prolonged the coagulation time and displayed excellent antibacterial properties. They could be envisioned as a good candidate for application in blood contacting implants.

摘要

一氧化氮(NO)在心血管系统中具有抗凝和抗菌功效,展现出很高的应用潜力。研究发现,氨基修饰的铜基金属有机框架(CuMOFs)具有极高的NO负载量,但在环境湿度下会牺牲框架稳定性。本工作通过水热法合成了纳米CuMOFs,并用硬脂酸(SA)进行处理以形成疏水形式。结果发现,经SA处理后颗粒结构未受影响,且处理后的CuMOFs具有可调节的疏水性。CuMOFs和SA修饰的CuMOFs均通过氨基与NO反应吸附NO,形成亚硝酰基复合物。SA修饰提高了CuMOFs在磷酸盐缓冲溶液(PBS,pH = 7.4)中的稳定性,减缓了NO负载单元与水的相互作用,从而延长了NO的释放时间。所得负载NO的CuMOFs显著抑制血小板活化,延长凝血时间,并表现出优异的抗菌性能。它们有望成为血液接触植入物应用的良好候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9df/8979339/1cd9c1ad8e6c/d1ra08066k-f1.jpg

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