College of Materials and Environmental Engineering, Hangzhou Dianzi University, Hangzhou, China.
Department of Criminal Science and Technology, Zhejiang Police College, Hangzhou, China.
J Sep Sci. 2018 Apr;41(8):1864-1870. doi: 10.1002/jssc.201701226. Epub 2018 Mar 2.
In this study, an alternative method for synthesizing magnetic cobalt adeninate metal-organic frameworks was developed, and the synthesized materials were examined for their potential application for separating and enriching benzodiazepines from complex samples. Benzodiazepines, widely used as hypnotics, muscle relaxants, sedatives, and anxiolytics, are a class of drugs that require accurate detection and monitoring. Results showed that Fe O nanoparticles could be well anchored onto the external surface of cobalt adeninate metal-organic frameworks by using amino-silane as a linkage. Their adsorption of benzodiazepines was mainly promoted by intermolecular hydrogen binding, π-π interactions and electrostatic attraction. Their potential application was evaluated by extraction of benzodiazepines in urine and wastewater samples prior to liquid chromatography with mass spectrometry. Under optimum conditions, the calibration curves were linear with a correlation coefficient of ≥0.9928 in the concentration range of 10-5000 ng/L for lorazepam and 5-5000 ng/L for estazolam, chlordiazepoxide, alprazolam, midazolam and triazolam. The limits of detection were in the range of 0.71-2.49 ng/L. The percent of extraction recoveries were 80.2-94.5% for urine and 84.1-94.4% for wastewater, respectively. Results suggested that magnetic cobalt adeninate metal-organic frameworks could potentially be a promising material for enriching benzodiazepines from urine and wastewater with high accuracy and precision.
在这项研究中,开发了一种合成磁性钴腺嘌呤金属有机骨架的替代方法,并研究了合成材料在从复杂样品中分离和富集苯并二氮䓬类药物方面的潜在应用。苯并二氮䓬类药物作为催眠药、肌肉松弛剂、镇静剂和抗焦虑药广泛应用,是一类需要准确检测和监测的药物。结果表明,通过使用氨基硅烷作为连接物,可以将 FeO 纳米粒子很好地锚定在钴腺嘌呤金属有机骨架的外表面上。它们对苯并二氮䓬类药物的吸附主要通过分子间氢键、π-π 相互作用和静电引力来促进。通过液相色谱-质谱法对尿液和废水样品进行前处理,评估了它们的潜在应用。在最佳条件下,洛拉西泮的浓度范围为 10-5000ng/L,依替唑仑的浓度范围为 5-5000ng/L,校准曲线的线性相关系数均大于 0.9928。检测限范围为 0.71-2.49ng/L。尿液的萃取回收率为 80.2%-94.5%,废水的萃取回收率为 84.1%-94.4%。结果表明,磁性钴腺嘌呤金属有机骨架有望成为一种从尿液和废水中高选择性和高灵敏度富集苯并二氮䓬类药物的有前途的材料。