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Biomedical subjects

L M Kennedy

Publications and source records attributed to L M Kennedy.

At least 19 recordsLinked to original sources

Identification and characterization of human fructose or glucose taste variants with hypogeusia for one monosaccharide but not for the other.

Human psychophysical functions for sweetness are similar for sucrose and fructose, but different for glucose, and suggest different mechanisms for fructose and glucose. Drosophila behavioral and electrophysiological data are similar to the human data and indicate separate receptor cell mechanisms for the monosaccharides. Moreover, fructose 'nontasters' (NTs) and glucose NTs have been identified in two Drosophila species. Identification of human NTs would confirm separate mechanisms and could lead to identification of proteins in human sweet taste by molecular genetic techniques. To identify human NTs, we first obtained responses for sucrose, fructose and glucose from 20 subjects. They tasted seven concentrations of each sugar (2-128 mM), paired with water, and indicated the sweeter of each pair. Functions for recognition indices (RIs) (proportion of subjects recognizing the sugar as sweeter) were similar for sucrose and fructose and different for glucose; this result agrees with the previous studies and supports different mechanisms for the monosaccharides. At 128 mM, RIs for all three sugars were 1.0; this result is consistent with the monogeusia reported by Breslin et al. for concentrations higher than those tested here. Eleven rising-phase concentrations (10-35 mM fructose, 10-90 mM glucose) then were tested on 32 subjects. A statistically significant interaction indicated different regression slopes and supported different monosaccharide mechanisms. From these data, positive identification values (PIDs) (lowest concentration at which the sugar always was judged sweeter than the water) were determined for each subject. The fructose log(PID) and glucose log(PID) data were not well correlated; thus separate mechanisms were supported further. Next, NT traits were defined by log(PID)s > or = 2 SD above the mean for one sugar, while the PID for the other remained within 1 SD of the population mean log(PID). Ninety-two subjects were screened to identify 12 glucose NTs and four fructose NTs. Two glucose NTs and three average subjects were tested in six additional sessions. The NTs showed an experience-induced change: there was a statistically significant reduction of glucose PIDs, but not of fructose PIDs. No change occurred in PIDs of the average subjects for either sugar.

Animals

Microdialysis-immunoaffinity capillary electrophoresis studies on neuropeptide-induced lymphocyte secretion.

A micro-sampling procedure has been developed for studying lymphocyte secretion of biologically important peptides in low cell density cultures. The technique is based on microdialysis recovery of the analytes of interest coupled with immunoaffinity capillary electrophoresis separation of the microdialysis samples and laser-induced fluorescence detection. Although the technique is able to recover secreted materials only at the 5-10 cell level, the detection system has a limit of detection (LOD) in the attomole (10(-18) M) range. This degree of sensitivity indicates that the system has the potential to measure secreted products at the single cell level. An added advantage of this system over other sampling techniques is that the microdialysis probe allows continuous sampling over time.

Antibody Specificity

Effect of gymnemic acid on single taste hairs of the housefly, Musca domestica.

The effect of a gymnemate salt extract (KGE) on the behavioral and neurophysiological taste responses of Musca domestica to sugar and salt were studied. After exposure of single taste hairs to KGE, the behavioral positive response to a just-suprathreshold sugar stimulus was abolished, and the neuronal firing pattern was modified in a form that ranged from a waxing and waning of impulse frequently to an abolishment of impulses. The neurophysiological response to a salt stimulus was similarly modified, although the waxing and waning of spike frequency was more rapid and firing returned to a near-control pattern sooner. Neurophysiological studies were replicated with two other fly genera. The results uniformly suggest a narcotic effect on the dendrites of taste neurons.

Animals

Don Quixote, A D A.

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American Dental Association