N-methacryloyl-( l)-histidine methyl ester carrying porous magnetic beads for metal chelate adsorption of cytochrome c
A magnetic metal-chelate adsorbent utilizing N-methacryloyl-( l)-histidine methyl ester (MAH) as a metal-chelating ligand was prepared. MAH was synthesized using methacryloyl chloride and l-histidine methyl ester. Magnetic beads with an average diameter of 50–100 μm were produced by suspension polym...
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Veröffentlicht in: | Materials Science & Engineering C 2007, Vol.27 (1), p.180-187 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A magnetic metal-chelate adsorbent utilizing
N-methacryloyl-(
l)-histidine methyl ester (MAH) as a metal-chelating ligand was prepared. MAH was synthesized using methacryloyl chloride and
l-histidine methyl ester. Magnetic beads with an average diameter of 50–100 μm were produced by suspension polymerization of ethylene glycol dimethacrylate (EGDMA) and MAH carried out in a dispersion medium. Specific surface area of the magnetic beads was found to be 80 m
2/g. Elemental analysis of the magnetic beads for nitrogen was estimated as 70 μmol MAH/g polymer. Magnetic beads were complexed with the Cu
2+ ions directly via MAH for the adsorption of cytochrome
c from aqueous solutions. The cytochrome
c adsorption on the mag-poly(EGDMA–MAH) beads was 51 mg/g. Cu
2+ complexing increased the cytochrome
c adsorption significantly. The maximum cytochrome
c adsorption capacity of the Cu
2+-chelated beads (carrying 68 μmol Cu
2+ per gram of polymer) was found to be 222 mg/g at pH 8.0 in phosphate buffer. Cytochrome
c adsorption decreased with increasing temperature. Cytochrome
c molecules could be reversibly adsorbed and desorbed ten times with the magnetic adsorbents without noticeable loss in their cytochrome
c adsorption capacity. The resulting magnetic chelator beads posses excellent long term storage stability. |
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ISSN: | 0928-4931 1873-0191 |
DOI: | 10.1016/j.msec.2006.04.009 |