Department of Analytical Chemistry, China Pharmaceutical University, Nanjing 211198, China.
Jiangsu Key Laboratory for Food Quality and Safety-State Key Laboratory Cultivation Base, Ministry of Science and Technology, Institute of Food Safety and Nutrition, Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China.
J Chromatogr A. 2020 May 24;1619:460952. doi: 10.1016/j.chroma.2020.460952. Epub 2020 Feb 7.
Two thermo-responsive molecularly imprinted polymers (MHNTs@MIP and MCNTs@MIP) for the selective extraction of sterigmatocystin have been prepared on the surface of the magnetic halloysite nanotubes (MHNTs) and magnetic carbon nanotubes (MCNTs), respectively. 1, 8-dihydroxyanthraquinone, n-isopropyl acrylamide, methacrylic acid, ethylene dimethacrylate and dimethyl sulfoxide were used as the dummy template, thermo-sensitive functional monomer, co-monomer, cross-linker and porogen, respectively. The magnetic properties, adsorption properties as well as the temperature responsive behaviors of MHNTs@MIP and MCNTs@MIP were systematically studied and compared for the first time. Enough saturation magnetizations of MHNTs@MIP (9.42 emu/g) and MCNTs@MIP (10.54 emu/g) were obtained. MHNTs@MIP and MCNTs@MIP also showed controllable adsorption and release behaviors to sterigmatocystin in response to the temperature change (35 °C and 20 °C). Compared with MCNTs@MIP, MHNTs@MIP had higher adsorption affinity (K = 0.120 L/mg), higher adsorption kinetic (K = 0.0100 g/(mg•min)) and higher imprinting factor (5.22) to sterigmatocystin. These results indicated that MHNTs@MIP was favorable adsorbent for the selective separation of sterigmatocystin. Furthermore, the elution conditions of MHNTs@MIP were optimized by response surface methodology. Under the optimal conditions, MHNTs@MIP coupled with high performance liquid chromatography were successfully applied to the selective recognition, purification, enrichment and detection of sterigmatocystin in wheat samples. The recoveries were calculated from 88.62% to 102.9% with RSDs less than 3.5 % and limit of detection of 1.1 μg/kg. This work provided a suitable carrier for the preparation of imprinted polymers and a practical approach for highly selective recognition and determination of analytes in real samples.
两种温敏性分子印迹聚合物(MHNTs@MIP 和 MCNTs@MIP)分别通过在磁性海泡石纳米管(MHNTs)和磁性碳纳米管(MCNTs)表面制备,用于选择性提取展青霉素。1,8-二羟基蒽醌、N-异丙基丙烯酰胺、甲基丙烯酸、二乙烯基甲醚和二甲基亚砜分别作为虚拟模板、热敏功能单体、共聚单体、交联剂和致孔剂。首次系统研究和比较了 MHNTs@MIP 和 MCNTs@MIP 的磁性、吸附性能以及温度响应行为。MHNTs@MIP(9.42 emu/g)和 MCNTs@MIP(10.54 emu/g)均获得了足够的饱和磁化强度。MHNTs@MIP 和 MCNTs@MIP 还表现出对温度变化(35°C 和 20°C)的可控吸附和释放行为。与 MCNTs@MIP 相比,MHNTs@MIP 对展青霉素具有更高的吸附亲和力(K=0.120 L/mg)、更高的吸附动力学(K=0.0100 g/(mg•min))和更高的印迹因子(5.22)。这些结果表明,MHNTs@MIP 是一种有利的吸附剂,可用于选择性分离展青霉素。此外,还通过响应面法优化了 MHNTs@MIP 的洗脱条件。在最佳条件下,MHNTs@MIP 与高效液相色谱法相结合,成功应用于小麦样品中展青霉素的选择性识别、净化、富集和检测。回收率为 88.62%至 102.9%,相对标准偏差(RSD)小于 3.5%,检测限为 1.1μg/kg。这项工作为印迹聚合物的制备提供了合适的载体,为实际样品中分析物的高选择性识别和测定提供了实用方法。