computational aided-molecular imprinted polymer design for solid phase extraction of metaproterenol from plasma and determination by voltammetry using modified carbon nanotube electrode

نویسندگان

farhad ahmadi anano drug delivery research center, faculty of pharmacy, kermanshah universityof medical sciences, kermanshah, iran. bpharmaceutical chemistry department, faculty of pharmacy, kermanshah university of medical science, kermanshah, iran.islamic republic of iran

ehsan karamian bpharmaceutical chemistry department, faculty of pharmacy, kermanshah university of medical science, kermanshah, iran.

چکیده

a molecular imprinted polymer (mip) was computationally designed and synthesized for the selective extraction of metaproterenol (mtp), from human plasma. in this regards semi empirical mp3 and mechanical quantum (dft) calculations were used to find a suitable functional monomers. on the basis of computational and experimental results, acrylic acid (aa) and dmso:meoh (90:10 %v/v) were found to be the best choices of functional monomer and polymerization solvents, respectively. this polymer was then used as a selective sorbent to develop a molecularly imprinted solid-phase extraction (mispe) procedure followed by differential pulse voltammetry by using modified carbon nanotube electrode. the analysis was performed in phosphate buffer, ph 7.0. peak currents were measured at +0.67 v versus ag/agcl. the linear calibration range was 0.026–8.0 μg ml-1 with a limit of detection 0.01 μg ml-1. the relative standard deviation at 0.5 μg ml-1 was 4.76% (n=5). the mean recoveries of 5 μg ml-1 mtp from plasma was 92.2% (n=5). the data of mispe-dpv were compared with the mispe-hplc-uv. although, the mispe-dpv was more sensitive but both techniques have similar accuracy and precision.

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Computational Aided-Molecular Imprinted Polymer Design for Solid Phase Extraction of Metaproterenol from Plasma and Determination by Voltammetry Using Modified Carbon Nanotube Electrode

A molecular imprinted polymer (MIP) was computationally designed and synthesized for the selective extraction of metaproterenol (MTP), from human plasma. In this regards semi empirical MP3 and mechanical quantum (DFT) calculations were used to find a suitable functional monomers. On the basis of computational and experimental results, acrylic acid (AA) and DMSO:MeOH (90:10 %V/V) were found to b...

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Computational Aided-Molecular Imprinted Polymer Design for Solid Phase Extraction of Metaproterenol from Plasma and Determination by Voltammetry Using Modified Carbon Nanotube Electrode

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Computational Aided-Molecular Imprinted Polymer Design for Solid Phase Extraction of Metaproterenol from Plasma and Determination by Voltammetry Using Modified Carbon Nanotube Electrode

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عنوان ژورنال:
iranian journal of pharmaceutical research

جلد ۱۳، شماره ۲، صفحات ۴۱۷-۴۲۹

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