1 research outputs found
Effects of Ring Size and Polar Functional Groups on the Glutathione Peroxidase-Like Antioxidant Activity of Water-Soluble Cyclic Selenides
To
elucidate the effects of ring structure and a substituent on
the glutathione peroxidase- (GPx-) like antioxidant activities of
aliphatic selenides, series of water-soluble cyclic selenides with
variable ring size and polar functional groups were synthesized, and
their antioxidant activities were evaluated by NADPH-coupled assay
using H<sub>2</sub>O<sub>2</sub> and glutathione (GSH) in water and
also by NMR spectroscopy using H<sub>2</sub>O<sub>2</sub> and dithiothreitol
(DTT<sup>red</sup>) in methanol. Strong correlations were found among
the GPx-like activity in water, the second-order rate constants for
the oxidation of the selenides, and the HOMO energy levels calculated
in water. The results support the conclusion that the oxidation process
is the rate-determining step of the catalytic cycle. On the other
hand, such correlations were not obtained for the activity observed
in methanol. The optimal ring size was determined to be five. The
type of substituent (NH<sub>2</sub> < OH < CO<sub>2</sub>H)
and the number can also control the activity, whereas the stereoconfiguration
has only marginal effects on the activity in water. In methanol, however,
the activity rank could not be explained by the simple scenarios applicable
in water