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Biomedical subjects

C Sigel

Publications and source records attributed to C Sigel.

9 recordsLinked to original sources

Potent hypocholesterolemic activity of novel ureido phenoxyisobutyrates correlates with their intrinsic fibrate potency and not with their ACAT inhibitory activity.

The hypocholesterolemic activity for novel ureido fibrate analogues was found to be over 100-fold greater than for any "second-generation" fibrate in cholesterol-fed rats. A comparison of 12 related analogues revealed that the optimal configuration for a urea-bridging region located between two aromatic rings consisted of a trisubstituted nitrogen, optimally substituted with a C7 alkyl chain and linked by dimethylene to a phenoxyisobutyrate moiety found in most fibrate analogues. The hypocholesterolemic potency of these compounds was found to correlate with their increased intrinsic fibrate activity as determined by the ability to induce omega-hydroxylase activity either in rat hepatocyte cultures or in vivo, and not with their 10-fold increased ACAT inhibitory potency when compared to other fibrates. The most active compound, 2-(4-(2-(N'-(2,4- difluorophenyl)-N-heptylureido)ethyl)phenoxy)-2-methylpropionic acid, referred to as (2), was found to induce omega-hydroxylase activity in hepatocytes at concentrations between 5 and 100 nM compared to 1-20 microM concentrations for bezafibrate, and lower serum VLDL+LDL cholesterol in rats at doses between 0.1 and 0.5 mg/kg per day compared to doses of 25-100 mg/kg per day for bezafibrate. Single-dose pharmacokinetic studies with 2 indicated that total drug exposure will be much lower at hypocholesterolemic doses due to the enhanced intrinsic activity, and may result in an improved safety profile for these novel trisubstituted ureido fibrate analogues in rats and humans compared to other fibrates.

Animals↗

Visual artifacts in chromatically subsampled images.

Colors sampled in an array of pixels were converted into various luminance-chrominance representations, and the chrominance values were spatially subsampled to achieve a compression of the data. For viewing, the chrominance values were reinterpolated and then transformed back to RGB. For each of a range of image types and color spaces, we varied the chromatic sample spacing to determine how much compression would be possible before perceptual artifacts appeared, as determined by a panel of individual viewers. The spacing at which an image was mistaken half the time for a remembered original depended on image content and also on the color representation. Some color spaces, such as hue-lightness-saturation, a polar-coordinate color space, are inherently ill suited for chrominance averaging and produce noticeable artifacts on almost any image. Likewise, some images cannot be subsampled satisfactorily, regardless of the color space used. In general, however, images with 16-fold reduction in the amount of chrominance information (that is, a factor of 4 in each spatial direction) are still satisfactory in appearance.

Color↗

Pi-4: adaptation of more than one class of cone.

The Pi-4 color mechanism was isolated in three observers with a 500-nm, 200-msec, l-deg foveal test flash. Stiles's field displacement law was tested with increment thresholds upon monochromatic adapting fields of several wave-lengths. The data of all three observers reject the displacement law. Data that use a 10-msec-duration test flash likewise reject the displacement law. We conclude that the Pi-4 branch represents light adaptation controlled by more than one class of cone. A model of the Pi-4 detection pathway is proposed that quantitatively describes the increment-threshold data.

Adaptation, Physiological↗

Stiles's II5 color mechanism: tests of field displacement and field additivity properties.

The II5 color mechanism was isolated in two observers with a 667 nm, 200 ms, 1 deg foveal test flash. Stiles's field displacement law and the law of field additivity were tested with increment thresholds upon monochromatic and bichromatic adapting fields. The data of both observers obey the displacement law and exhibit no systematic deviations from additivity. Our results cannot reject the hypothesis that the first log unit of adaptation observed under II5-isolation conditions is determined exclusively by the quantum catch rate of the long-wavelength-sensitive cones.

Absorption↗