
doi: 10.1021/bc034225l
pmid: 15149188
Immobilized small-molecule inhibitors are suited for enrichment of biomolecules by affinity chromatography, as it is shown for metalloproteinases and an immobilizable derivative of the hydroxamate-type inhibitor marimastat. A new asymmetric synthesis of marimastat is presented that allows for site-specific attachment to a solid surface, e.g., a chromatography matrix or a surface plasmon resonance sensor chip. The latter technique is shown to be a valuable tool for the optimization of binding and elution conditons of biomolecules in affinity chromatography.
Time Factors, Molecular Structure, Biosensing Techniques, Surface Plasmon Resonance, Hydroxamic Acids, Chromatography, Affinity
Time Factors, Molecular Structure, Biosensing Techniques, Surface Plasmon Resonance, Hydroxamic Acids, Chromatography, Affinity
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