Department of Analytical Chemistry, China Pharmaceutical University, Nanjing 210009, China.
J Chromatogr A. 2013 Nov 22;1317:110-20. doi: 10.1016/j.chroma.2013.07.075. Epub 2013 Jul 24.
In the present work, a novel amphiphilic magnetic molecularly imprinted polymer (M-MIP) has been synthesized by a simple non covalent method for the loading of gatifloxacin (GTFX) in polar solvent. This nanomaterial used as sorbent has been applied to the solid phase extraction of GTFX in different spiked biological fluids. For the first time, studies of dispersibility and solubility behaviors with different solvents and water were performed to demonstrate amphiphilicity and also to find the better nanomaterial obtained. Fourier transform infrared (FT-IR), scanning electron microscopy (SEM), transmission electron microscopy (TEM) and X-ray (XRD) were used to characterize the nanomaterials, and Scatchard plot analysis to demonstrate the binding kinetic. Results suggest that the dispersibility, solubility and the adsorption in water have relationships with the structure of nanomaterials prepared. The oleic acid coated on the M-MIP combined with the washing process has enhanced the amphiphilicity of the nanomaterials. The M-MIP2 showed better selectivity and adsorption behavior with imprinted efficiency higher than (2) in water, as well as in biological fluids. Moreover, no interference with constituents of blank urine and blank serum samples for solid phase extraction (SPE) was observed. Moreover, loading recovery was found higher than 95% with low RSD. The novel amphiphilic magnetic nanomaterial prepared here as sorbent is suitable for SPE of GTFX in biological fluids for therapeutic monitoring control. It could be also used as carrier in drug delivery system for experimental and clinical studies.
在本工作中,通过简单的非共价方法合成了一种新型的两亲性磁性分子印迹聚合物(M-MIP),用于在极性溶剂中装载加替沙星(GTFX)。这种用作吸附剂的纳米材料已应用于不同加标生物流体中 GTFX 的固相萃取。首次研究了不同溶剂和水的分散性和溶解性行为,以证明两亲性并找到更好的纳米材料。傅里叶变换红外(FT-IR)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)和 X 射线(XRD)用于表征纳米材料,并进行 Scatchard 图分析以证明结合动力学。结果表明,分散性、溶解性和在水中的吸附与所制备的纳米材料的结构有关。油酸涂覆在 M-MIP 上并结合洗涤过程增强了纳米材料的两亲性。M-MIP2 在水中以及在生物流体中表现出更好的选择性和吸附行为,印迹效率高于(2)。此外,在固相萃取(SPE)中,未观察到空白尿液和空白血清样品中成分的干扰。此外,负载回收率发现高于 95%,RSD 低。这里制备的新型两亲性磁性纳米材料作为吸附剂适用于生物流体中 GTFX 的 SPE,用于治疗监测控制。它还可以用作实验和临床研究中药物传递系统的载体。