Liu Junbo, Dai Zhengqiang, Li Bo, Tang Shanshan, Jin Ruifa
College of Resources and Environment, Jilin Agricultural University, Changchun, 130118, China.
J Mol Model. 2014 Oct;20(10):2456. doi: 10.1007/s00894-014-2456-5. Epub 2014 Sep 18.
Computational approaches have been suggested as rational and fast methods for optimizing imprinting ratios. The B3LYP/6-31 g(d,p) level was applied to simulate the self-assembled system of molecularly imprinted polymers (MIPs) formed by enrofloxacin (ENRO) and methacrylic acid (MAA). Geometry optimization, the bonding situation, and the binding energies involved were studied to determine the impact of varying the imprinting ratio on the recognition characteristics. These theoretical results showed that the compound with an ENRO:MAA ratio of 1:7 had the lowest binding energy and the most stable structure. MIPs with different imprinting ratios of ENRO to MAA were then prepared in order to study the binding capacities of the polymers experimentally. The experimental and theoretically calculated results for these polymers were found to be consistent with each other. In dynamic adsorption experiments on the MIPs, the adsorption reaction was observed to reach a balanced state after 120 min. Analysis of the Scatchard plot revealed that the dissociation constant (K d) and the apparent maximum binding capacity (Q max) of MIPs with high-affinity sites were 451.67 mg/L and 42.23 mg/g, respectively, whereas the dissociation constant and apparent maximum binding capacity of MIPs with low-affinity sites were 883.39 mg/L and 73.15 mg/g, respectively. The quantity of ENRO adsorbed onto the MIPs was considerably higher than the quantities of ciprofloxacin (CIP) and ofloxacin (OFL) adsorbed, indicating that these MIPs have a much higher specific absorption capacity than the corresponding non-imprinted polymers.
计算方法已被认为是优化印迹比率的合理且快速的方法。采用B3LYP/6-31 g(d,p)水平来模拟由恩诺沙星(ENRO)和甲基丙烯酸(MAA)形成的分子印迹聚合物(MIP)的自组装体系。研究了几何优化、键合情况以及相关的结合能,以确定改变印迹比率对识别特性的影响。这些理论结果表明,ENRO:MAA比率为1:7的化合物具有最低的结合能和最稳定的结构。然后制备了具有不同ENRO与MAA印迹比率的MIP,以便通过实验研究聚合物的结合能力。发现这些聚合物的实验结果和理论计算结果相互一致。在对MIP的动态吸附实验中,观察到吸附反应在120分钟后达到平衡状态。对Scatchard图的分析表明,具有高亲和力位点的MIP的解离常数(K d)和表观最大结合容量(Q max)分别为451.67 mg/L和42.23 mg/g,而具有低亲和力位点的MIP的解离常数和表观最大结合容量分别为883.39 mg/L和73.15 mg/g。吸附到MIP上的ENRO的量明显高于吸附的环丙沙星(CIP)和氧氟沙星(OFL)的量,表明这些MIP比相应的非印迹聚合物具有更高的特异性吸附能力。