Synthesis and evaluation of uniformly sized nalidixic acid–imprinted nanospheres based on precipitation polymerization method for analytical and biomedical applications

甲基丙烯酸 分子印迹聚合物 萘啶酸 聚合 沉淀聚合 核化学 傅里叶变换红外光谱 粒径 化学 纳米颗粒 单体 聚合物 扫描电子显微镜 分散性 材料科学 高分子化学 化学工程 色谱法 选择性 自由基聚合 有机化学 纳米技术 物理化学 生物化学 催化作用 复合材料 工程类 抗生素 抗生素耐药性
作者
Atefeh Abouzarzadeh,Mehdi Forouzani,Mohsen Jahanshahi,Nader Bahramifar
出处
期刊:Journal of Molecular Recognition [Wiley]
卷期号:25 (7): 404-413 被引量:33
标识
DOI:10.1002/jmr.2201
摘要

For the first time in this work, uniform molecularly imprinted polymer (MIP) nanoparticles were prepared using nalidixic acid as a template. The MIP nanoparticles were successfully synthesized by precipitation polymerization applying methacrylic acid (MAA) as a functional monomer and trimethylolpropane trimethacrylate (TRIM) as a cross‐linking monomer at different mole ratios. The morphology, binding, recognition, selectivity, and in vitro release behaviors of obtained particles were studied. The produced polymers were characterized by Fourier transform infrared spectroscopy and differential scanning calorimetric. Furthermore, their morphology was analyzed accurately by scanning electron microscopy, photon correlation spectroscopy, and Brunauer–Emmett–Teller analysis. The nanospheres and microspheres with mean diameter values of 94 nm, 256 nm, and 1.2 µm were obtained using nalidixic acid–MAA–TRIM various mole ratios. Among the MIPs, the product with nalidixic acid–MAA–TRIM mole ratio of 1:12:12 established nanospheres with the lowest polydispersity index (0.003), an average pore diameter (12 nm), and the highest specific surface area (280 m 2 g −1 ) and selectivity factor (10.4). Results from binding experiments demonstrated that the imprinted nanospheres with a 94‐nm mean diameter and a binding capacity of 28 mg of nalidixic acid per gram of polymer had higher specific affinity to nalidixic acid in contrast with the other imprinted nanospheres, microspheres, and nonimprinted particles. However, the binding performance of imprinted nanospheres in human serum was estimated using high‐performance liquid chromatography analysis (binding approximately 98% of nalidixic acid). In addition, release experiments proved to be successful in the controlled release of nalidixic acid during a long period. The 20% of loaded nalidixic acid was released from the imprinted nanospheres within the first 20 h, whereas the remaining 80% was released in the after 120 h. The nalidixic acid release kinetics from the MIPs was highly affected by properties of the particles. Copyright © 2012 John Wiley & Sons, Ltd.

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