Development and application of molecularly imprinted polymers as solid-phase sorbents for erythromycin extraction

S Song, A Wu, X Shi, R Li, Z Lin, D Zhang - Analytical and bioanalytical …, 2008 - Springer
S Song, A Wu, X Shi, R Li, Z Lin, D Zhang
Analytical and bioanalytical chemistry, 2008Springer
Six molecularly imprinted polymers (MIPs) of erythromycin (ERY) were prepared by
noncovalent bulk polymerization using methacrylic acid (MAA) as the functional monomer.
On the basis of binding analysis, the MIPs with 1: 2 optimum ratio of template to MAA were
selected for subsequent scanning electron microscopy and Brunauer–Emmett–Teller
analyses, which indicated that the MIPs had more convergent porous structures than the
nonimprinted polymers. The equilibrium binding experiments showed that the binding sites …
Abstract
Six molecularly imprinted polymers (MIPs) of erythromycin (ERY) were prepared by noncovalent bulk polymerization using methacrylic acid (MAA) as the functional monomer. On the basis of binding analysis, the MIPs with 1:2 optimum ratio of template to MAA were selected for subsequent scanning electron microscopy and Brunauer–Emmett–Teller analyses, which indicated that the MIPs had more convergent porous structures than the nonimprinted polymers. The equilibrium binding experiments showed that the binding sites of MIPs were heterogeneous, with two dissociation constants of 0.005 and 0.63 mg mL−1, respectively. Furthermore, the performance of the MIPs as solid-phase extraction (SPE) sorbents was evaluated, and the selectivity analysis showed that the MIPs could recognize ERY with moderate cross-reactivity for other macrolides. The overall investigation of molecularly imprinted SPE for cleanup and enrichment of the ERY in pig muscle and tap water confirmed the feasibility of utilizing the MIPs obtained as specific SPE sorbents for ERY extraction in real samples.
Figure
Schematic diagram of the preparation and application of the erythromycin imprinted molecularly imprinted polymers
Springer
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