Journal of Agricultural and Food Chemistry · 2013 · 19 citations · 44 references
Controlling Enzymatic BrowningEngineeringGreen ChemistryPotential AgentPolyphenolicsOxidative StressFood ChemistryAgricultural ChemistryThiol GroupThiolated Cyclodextrinβ-Cyclodextrin ThiolationPhytochemicalBiochemistryFood PreservativesPharmacologyBiomolecular EngineeringCyclodextrin ProductionBiotechnologyMedicine
A thiol-β-cyclodextrin was synthesized by a simple and environmentally friendly three-step method comprising epoxy activation of β-cyclodextrin, thiosulfate-mediated oxirane opening, and further reduction of the S-alkyl thiosulfate to a thiol group. The final step was optimized by using thiopropyl-agarose, a solid phase reducing agent with many advantages over soluble ones. β-Cyclodextrin thiolation was confirmed by titration with a thiol-reactive reagent, NMR studies, and MALDI-TOF/TOF. Thiolated cyclodextrin had an average value of one thiol group per molecule. Thiol-β-cyclodextrin proved to be an excellent agent for controlling polyphenol oxidase activity. This copper-containing enzyme is responsible for browning in fruits and vegetables. Under the same conditions, thiol-β-cyclodextrin generated a reductive microenvironment that increased the antibrowning effect on Red Delicious apples compared to unmodified β-cyclodextrin.
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Maria T. Rojas, Rainer Koeniger, J. Fraser Stoddart et al. · Journal of the American Chemical Society · 1995 · 413 citations
Engineering, Chemical Analysis, Thiolated .Beta.-cyclodextrin +16