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Taste discrimination using alternative solvents for PTC and NaCl.

Better discrimination was possible between threshold PTC solutions and pure solvent when the solvent was a tasteless, low concentration NaCl solution to which the subject had adapted, than when the solvent was purified water. The reverse was true for threshold NaCl stimuli. Subjective reports indicated this to be due to the absence or presence of taste cues from the solvent and stimulus after-effects. Interstimulus rinsing with the appropriate solvent improved discrimination.

Adult↗

Aging is associated with increased Weber ratios for caffeine, but not for sucrose.

To investigate whether age-associated changes in the human taste system are quality-specific, we compared young and elderly subjects' suprathreshold discrimination abilities for caffeine and sucrose. The method of constant stimuli was used to obtain just noticeable differences and Weber ratios. The elderly generated larger Weber ratios than did the young for both the medium and high concentrations of caffeine, but not for the low concentration. For example, a 74% increase in .005 M caffeine was required to obtain a perceptible difference for the elderly, whereas a 34% increase produced a perceptible difference for the young. The Weber ratios for sucrose did not differ for the two age groups. The results of this study indicate that age-associated changes in the taste system are quality-specific.

Adolescent↗

Transection of the chorda tympani and insertion of ear pins for stereotaxic surgery: equivalent effects on taste sensitivity.

NaCl and sucrose absolute detection thresholds were determined in rats with bilateral transection of the chorda tympani nerve (group CT) and those treated by having stereotaxic ear pins inserted into the auditory canal and through the tympanic membrane (group EP). Relative to controls, each experimental group had deficits in acquisition of the NaCl detection tasks and higher NaCl thresholds, but had no significant deficits in the sucrose detection tasks. There were no differences between the CT and EP groups on any measure of performance. The performance of rats with unilateral CT or EP treatment was identical to that of controls for high concentrations of NaCl, but somewhat poorer on near threshold concentrations. These results (A) confirm prior reports for a specific role of the CT in NaCl detection and (B) indicate that the use of ear pins in stereotaxic surgery may disrupt CT function with a resultant decrease in NaCl sensitivity.

Animals↗

Olfactory threshold increase in trigeminal neuralgia after balloon compression.

Idiopathic trigeminal neuralgia (ITN) is a well-known disease often treated with neurosurgical procedures, which may produce sensorial abnormalities, such as numbness, dysesthesia and taste complaints. We studied 12 patients that underwent this technique, in order to verify pain, gustative and olfactory thresholds abnormalities, with a follow-up of 120 days. We compared the patients with a matched control group of 12 patients. Our results found a significant difference in the olfactory threshold at the immediate post-operative period (p=0.048). We concluded that injured trigeminal fibers are probably associated with the increase in the olfactory threshold after the surgery, supporting the sensorial interaction theory.

Adult↗

[Taste changes in patients with AL amyloidosis. Preliminary studies].

Taste acuity in 20 subjects affected by AL amyloidosis without oral complications was investigated by threshold determination. Sixteen cases did not recognize one or more fundamental tastes. Sour was the most frequently lost taste, as it was not recognized by 10 out of 20 cases. So, sensorial neuropathy, altering taste generation and/or transmission, seems frequently associated to AL amyloidosis. Further researches will show if taste losses realize typical symptomatic features in this disease.

Adult↗

The role of sucrose-sensitive neurons in ingestion of sweet stimuli by hamsters.

The relationship between sweet preference and activity in sucrose-sensitive chorda tympani nerve fibers was investigated in hamsters (Mesocricetus auratus). Without exception, hamsters increased consumption of aqueous solutions of nonsweet 0.1 M NaCl, 0.001 M quinine-HCl, 0.01 M citric acid, 0.001 M dithiothreitol, 0.01 M pyridine, 0.01 M 2-phenylethanol, 0.005 M i-amyl acetate, 0.01 M vanillin, half-saturated 1-menthol and 0.033 mM capsaicin if they were made sweet by adding 0.5 M sucrose. Since sucrose activates chorda tympani S fibers, activity in these nerve fibers may be sufficient for increased preference. To determine if S-fiber activity is necessary for preference, equally preferred sweet stimuli were presented to the tongue while recording responses of single chorda tympani fibers. S fibers were clearly activated by 0.03 M sucrose, 0.001 M Na saccharin, 0.01 M D-phenylalanine, 0.1 M glycine, 0.005 M dulcin and 0.03 M Na 2-mercaptoethanesulfonate but not by 0.01 M Ca cyclamate and 0.003 M Na 3-nitrobenzenesulfonate. Ca cyclamate weakly activated H fibers and Na 3-nitrobenzenesulfonate weakly activated N fibers. Thus, S-fiber chorda tympani activity may be sufficient but not necessary for sweet preference, which may be influenced by activity in fibers of other taste nerves.

Animals↗

Taste acuity and food attitudes of selected patients with cancer.

Patients with cancer may display taste abnormalities. In this study, abnormalities observed before treatment involved decreased salt and sweet sensitivity. For some thresholds, greater abnormalities were observed among men and women, among patients with colon cancer than among those with breast cancer, and among those with a greater extent of disease. Observations of slight increases in thresholds for sour detection and bitter recognition during the early treatment period and normalization of high sweet recognition thresholds after two weeks of treatment suggest that additional changes in taste acuity may accompany short-term treatment with 5'fluorouracil. However, absence of a correlation of taste changes with changes in food preferences points to the role of other factors in determining patients' food preferences during such treatment. Consideration of the incidence of taste abnormalities in these groups of patients with cancer and observation of altered food attitudes among patients receiving 5-fluorouracil does provide a basis for general recommendations for serving foods which will appeal to these patients.

Adult↗

Perceptual and mental mixtures in odor and in taste: are there similarities and differences between experiments or between modalities? Reply to Schifferstein (1997)

D. Algom and W. S. Cain (1991b) found relative invariance in the pattern of judgments of perceptual and mental mixtures of banana and grass odors. Invariance held both for judgments of total intensity and for those of an individual constituent. For 2 tastes, H. N. J. Schifferstein (1997) found a pattern with both similarities to and differences from D. Algom and W. S. Cain's. A key difference lay in finding more symmetry of masking in mental mixtures than in perceptual mixtures. H. N. J. Schifferstein concluded from this alone that any similarity between the perceptual and mental arose from knowledge of "mixture suppression." The authors of this article do not refute the possibility; however, they reject the premise that a statistically reliable difference between the perceptual and the imaginal rules out imagery. The authors review relevant considerations and find no a priori reason to assume that what held for attributes in taste will hold for odors. An approach to resolve the issue is also suggested.

Attention↗

Improvement of uremic neuropathy and hypogeusia by dialysate zinc supplementation: a double-blind study.

A reduction in the plasma zinc concentration is a well-recognized complication of hemodialysis. A positive clinical response to zinc therapy under controlled conditions is the most reliable criterion of zinc deficiency. Zinc therapy using a nonproprietary zinc dialysate was evaluated in 12 dialysis patients with proven hypogeusia and polyneuropathy, in a randomized double-blind crossover comparison (preliminary phase, 4 weeks; placebo phase, 12 weeks; initial phase, 12 weeks; final phase, 6 weeks; post phase, 4 weeks). The dosage was related to the zinc plasma and erythrocyte levels, measured weekly. Nerve conduction velocity (NCV) and taste-testing were used to evaluate the effect of treatment at the end of the placebo and therapy phases. There was significant reduction in the recognition and determination threshold level for each of the four qualities of taste. The NCV improved significantly. The plasma zinc level could be elevated in all patients to the desired concentration, using individualized supplementation of dialysate with zinc. The erythrocyte zinc level remained constant, at double the normal value. The plasma zinc concentration fell back to the initial level 6 weeks after conclusion of therapy. We conclude that (1) zinc substitution may provide a specific therapy for uremic polyneuropathy, (2) the observed hypogeusia results from zinc deficiency, (3) long-term therapy is necessary to obtain a constant normal plasma zinc concentration, (4) zinc substitution by dialysate is a suitable and nonstressful method of administration.

Adult↗

Gustatory responses in the frontal opercular cortex of the alert cynomolgus monkey.

The responses of 165 single taste neurons in the anterior operculum of the alert cynomolgus monkey were analyzed. Chemicals were deionized water, blackcurrant juice, and the four basic taste stimuli: glucose, NaCl, HCl, and quinine HCl. Taste-evoked responses could be recorded from an opercular region that measured approximately 4.0 mm in its anteroposterior extent, 2.0 mm mediolaterally, and 3.0 mm dorsoventrally. Within this area, taste-responsive neurons were sparsely distributed such that multiunit activity was rarely encountered and neuronal isolation was readily achieved. Intensity-response functions were determined for nine cells. In each case, the lowest concentration of the dynamic response range conformed well to human electrophysiological and psychophysical thresholds for the basic taste stimuli. There was some evidence of chemotopic organization. Cells that responded best to glucose tended to be distributed toward the anterior operculum, whereas most acid-sensitive neurons were located more posteriorly. The proportion of cells responding best to NaCl peaked in the middle of the area, whereas quinine sensitivity was rather evenly distributed throughout. Opercular neurons in the monkey showed moderate breadth of sensitivity compared with taste cells of other species and at other synaptic levels. A breadth-of-tuning coefficient was calculated for each neuron. This is a metric that can range from 0.0 for a cell that responds specifically to only one of the four basic stimuli to 1.0 for one that responds equally to all four stimuli. The mean coefficient for 165 cells in the operculum was 0.67 (range = 0.12-0.99). Efforts were made to determine whether neurons could be divided into a discrete number of types, as defined by their responsiveness to the stimulus array used here. It was concluded that most taste cells may be assigned to a small number of groups, each of which is statistically independent of the others, but within which the constituent neurons are not identical. An analysis of taste quality indicated that the sweet and salty stimuli evoked patterns of activity that were significantly intercorrelated. Similarly, patterns representing HCl, quinine HCl, and water were related.

Animals↗

Sucrose taste functions and dental caries in children.

Sweetness detection threshold, suprathreshold estimation, and preference were evaluated in caries-free and caries-susceptible children aged 7 to 15 years. The two caries groups appeared similar on all measures. This report contrasts with previous adult studies indicating a relationship between sweet taste sensitivity and caries status.

Adolescent↗

Nontasters, tasters, and supertasters of 6-n-propylthiouracil (PROP) and hedonic response to sweet.

Genetic sensitivity to 6-n-propylthiouracil (PROP) has been reported to predict hedonic response to sweet taste in both women and men. This study was based on a sample of 159 women of different ethnic backgrounds, mean age 27.0 years, and mean body mass index (BMI) 23.2. The women were classified as nontasters (n = 43), regular tasters (n = 70), or supertasters (n = 46) of PROP on the basis of their PROP detection thresholds and the scaling of 5 suprathreshold solutions of PROP and NaCl. Nontasters had thresholds > 1.8 x 10(-4) mol/L PROP and PROP/NaCl ratios < 1.60. Supertasters had thresholds < 3.2 x 10(-5) mol/L PROP and PROP/NaCl ratios > 1.60. Genetic sensitivity to PROP failed to predict sweetness intensity ratings or hedonic response profiles for sucrose solutions. Separating subjects into sucrose "likers" and "dislikers" failed to reveal any significant links to PROP nontaster, taster, or supertaster status in this all-female sample.

Adult↗

Within-compound associations are not sufficient to produce taste-mediated odor potentiation.

Rats were used in two flavor-aversion experiments to determine if within-compound associations could be detected with a taste+odor compound that would not support taste-mediated odor potentation. In Experiment 1, following taste+odor compound conditioning, postconditioning taste extinction significantly weakened the odor aversion. In Experiment 2, following taste+odor compound conditioning, postconditioning taste inflation significantly strengthened the odor aversion. There was no evidence that taste potentiated the odor aversion in either Experiment 1 or 2. Thus, the results demonstrate that the presence of within-compound associations is not sufficient to produce taste-mediated odor potentiation. We offer a mediated conditioning explanation to account for the results of these two experiments.

Animals↗

The effect of amiloride on operantly conditioned performance in an NaCl taste detection task and NaCl preference in C57BL/6J mice.

A 2-response operant taste discrimination procedure, modified to assess taste sensitivity in water-restricted C57BL/6J mice, revealed a detection threshold of 0.065 M sodium chloride. Amiloride increased the threshold by approximately 1 log10 unit. These results are the first to demonstrate the necessity of the amiloride-sensitive taste transduction pathway in the normal detection of low concentrations of sodium chloride in mice and provide a functional context in which to evaluate electrophysiological findings. Two-bottle preference tests performed with these mice and additional naive mice revealed only marginal, if any, effects of amiloride on salt intake behavior, highlighting the importance of considering the relative attributes and limitations of different behavioral assays of taste function.

Amiloride↗

Stimulus processing of glycine is dissociable from that of sucrose and glucose based on behaviorally measured taste signal detection in Sac 'taster' and 'non-taster' mice.

Mouse strains have been divided into 'tasters' and 'non-tasters' based on their relatively high and low preference, respectively, for low concentrations of sucrose and saccharin. These phenotypic differences appear to be due to a polymorphism in the gene at the Sac locus encoding for the T1R3 taste receptor selectively affecting the functionality of the T1R2+3 heterodimer. To psychophysically examine whether these phenotypes are due to sensory sensitivity as opposed to hedonic responsiveness, we measured taste signal detection of sucrose, glucose, and glycine by Sac taster (C57BL/6J and SWR/J) and non-taster (129P3/J and DBA/2J) strains in an operant conditioning paradigm using a gustometer. The taster mice had lower detection thresholds for sucrose and glucose compared with the non-taster mice. The detection thresholds corresponded well with reported responsiveness to low concentrations of these sugars in two-bottle intake tests suggesting that the Sac taster phenotype has a sensory basis and is not simply a matter of strain differences in the hedonic evaluation of weak intensities of the stimuli. Taster status did not entirely account for the strain differences in detection thresholds for glycine, a 'sweet' tasting amino acid. Collapsed across strains, detection thresholds for sucrose and glucose were highly correlated with each other (r = 0.81), but only modestly correlated with those for glycine (r < or = 0.43). This suggests that stimulus processing of glycine in the perithreshold intensity domain can be dissociated from that of sucrose and glucose. The mechanism underlying this difference may be related to the ability of glycine to bind with the T1R1+3 heterodimer.

Animals↗