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Preparation of roxithromycin-polymeric microspheres by the emulsion solvent diffusion method for taste masking.

Microspheres of roxithromycin with Eudragit S100 and silica were prepared by the emulsion solvent diffusion method to mask the bitter taste of the antibiotic. The effect of different polymers and drug-polymer ratios on the taste masking and the characteristics of the microspheres were investigated. It was found that Eudragit S100 was the best for masking the unpleasant taste of roxithromycin among the six kinds of polymers investigated. The results of DSC, X-ray diffraction and IR showed that there were several combinations of roxithromycin and Eudragit S100. The influence of other formulation factors, i.e. dichloromethane-acetone ratios and silica-polymer ratios on the properties of the microspheres were also examined. In conclusion, the results of the present study will be helpful for the preparation of oral forms of roxithromycin with an acceptable taste.

Acetone↗

PROP taster status and self-perceived food adventurousness influence food preferences.

OBJECTIVE: To determine the influence of 6-n-propylthiouracil (PROP) taster status and food adventurousness on liking of bitter, hot, and pungent foods. DESIGN: Self-reported survey of food likes/dislikes for 70 foods. Subjects were classified as tasters or nontasters of PROP using a standard screening procedure. By their response to a query regarding their perceived frequency of trying unfamiliar foods, subjects were characterized as being more or less adventurous. SUBJECTS: A convenience sample of 232 healthy adults, 18 to 55 years of age, was recruited from the local community. Statistical analyses Individual foods were grouped using Principal Component Analysis. Analysis of variance was used to assess differences in liking of food groups as a function of PROP status and food adventurousness. RESULTS: PROP tasters who were more food adventurous liked chili peppers and hot sauce, other pungent condiments, strong alcohol, and bitter fruits and vegetables more than tasters who were less food adventurous (P< or =.05-.001). Nontasters liked most foods, and food adventurousness had little influence on food liking for these individuals. CONCLUSIONS: Food adventurous PROP tasters liked a wide variety of strong-tasting foods, whereas tasters who were less food adventurous showed the classic dislike of bitter, hot, and pungent foods. Previous studies might have overestimated the influence of PROP taster status on rejection of strong-tasting foods by not distinguishing individuals by food adventurousness.

Adolescent↗

Evaluation of taste sensation following tongue reconstruction by microvascular forearm free flap.

PURPOSE: The objective of this study was to examine the restoration process of taste perception in patients after reconstruction of the tongue using microvascular forearm flaps. PATIENTS AND METHODS: Twelve patients, aged 28 to 70 years with a mean of 59.6 years consisting of 9 men and 3 women, were enrolled in this study. Examination results based on the filter paper disk and whole mouth methods were evaluated on a 6-point rating scale. RESULTS: In none of the patients was it possible to detect any perception of the test tastes in the regions under the control of the chorda tympani and glossopharyngeal nerves on the reconstructed side, indicating a "nondetectable" grade 6 result. The evaluation results for the normal tongue region under the control of the chorda tympani in the patients after tongue reconstruction showed a mean grade of 4.7 for the sweet, 4.9 for the salty, 4.6 for the sour, and 4.4 for the bitter taste. Mean grade determined by the whole mouth method was 3.6 for sweet, 3.3 for salty, 3.0 for sour, and 3.6 for bitter. CONCLUSION: No taste perception was detected in the regions of the tongue reconstructed with forearm flaps. These results led us to assume that compensatory taste perception must occur in other regions of the oral cavity because none of our postsurgery patients showed any serious taste disorder.

Adult↗

Sialochemical and gustatory analysis in patients with oral sensory complaints.

UNLABELLED: Our objective was to perform concomitant taste and salivary analyses in subjects with oral sensory complaints (OSC), including burning mouth syndrome (BMS), idiopathic taste aberrations, and xerostomia without established etiology, to attempt to find a possible explanation for the mechanism underlying those complaints. BMS is a disorder characterized by a painful burning or scalding sensation in clinically normal and healthy oral mucosa. Taste and salivary analyses were performed on 163 subjects with OSC who complained of BMS, taste aberration, or xerostomia, alone or in combination. These subjects were compared with 84 healthy, age- and sex-matched control subjects. The salivary and taste analyses were found to be helpful in distinguishing control subjects from complaining subjects. The most striking result found was the great similarity of both salivary and taste analyses in the BMS, taste aberration, and xerostomia groups, which were significantly different from the results obtained in the control group. An oral neuropathy or neurologic transduction interruption induced by salivary compositional alterations is suggested as the possible etiology for the complaints. This report might add an important objective diagnostic tool to the clinician treating such patients. PERSPECTIVE: The merit of the current study stems from the fact that it suggests for the first time a salivary-related local neuropathic mechanism for oral sensorial complaints. This may be of paramount importance, both with respect to the biological background of these complaints and to the possible therapeutic modalities that might be offered to suffering patients.

Adolescent↗

Endogenous opioids are necessary for benzodiazepine palatability enhancement: naltrexone blocks diazepam-induced increase of sucrose-'liking'.

Opioid agonists and benzodiazepine agonists each increase food intake. Both also increase hedonic 'liking' reactions to sweet tastes in rats. Do opioids and benzodiazepines share overlapping mechanisms of hedonic impact? Or are benzodiazepine and opioid effects on hedonic impact mediated by independent mechanisms? The present study examined whether blockade of opioid receptors prevents benzodiazepine-induced enhancement of taste palatability, as assessed by the affective taste reactivity test. Rats were implanted with oral cannulae, and prior to an oral infusion of bittersweet quinine-sucrose solution, all received i.p. injections of either vehicle, or diazepam alone (5 mg/kg diazepam+0 mg/kg naltrexone), naltrexone alone (1 mg/kg naltrexone+0 mg diazepam), or both diazepam plus naltrexone (5 mg/kg diazepam+1mg/kg naltrexone). Videotaped hedonic ('liking') and aversive ('disliking') orofacial reactions elicited by sucrose/quinine taste were compared across drug conditions. Diazepam administration alone more than doubled hedonic 'liking' reactions to the bittersweet taste, while reducing 'disliking' in half, compared to vehicle levels. Naltrexone by itself had little effect on taste-elicited affective reactions, and only marginally increased aversive gapes. However, naltrexone completely blocked diazepam's enhancement of positive hedonic 'liking' reactions, and naltrexone similarly disrupted diazepam-reduction of aversive 'disliking' taste reactions. These results indicate that endogenous opioid neurotransmission may be crucial to benzodiazepine enhancement of hedonic 'liking' for natural taste reward.

Analysis of Variance↗

The distinctiveness of ionic and nonionic bitter stimuli.

The diverse chemical structures of stimuli that are bitter to humans suggest a need for multiple bitter receptors. Reactions of golden hamsters (Mesocricetus auratus) to 1 mM quinine hydrochloride, 3 mM denatonium benzoate, 180 mM magnesium sulfate, 30-100 mM caffeine, and 1-1.5 mM sucrose octaacetate (SOA) were studied to address whether there are multiple sensations elicited by bitter stimuli. Methods included behavioral generalization of LiCl-induced conditioned taste aversions (CTAs), intake preference tests, and electrophysiological recordings from the chorda tympani (CT) nerve. The five compounds, all bitter to humans, were all innately aversive to hamsters. CTA for the ionic quinine.HCl, denatonium benzoate, and MgSO(4) mutually cross-generalized and these ionic compounds were effective CT stimuli. Yet, the hamsters were much less sensitive to denatonium than humans, requiring a 100,000 times higher concentration for detection. CTA for nonionic caffeine and SOA did not cross-generalize to quinine or the other two ionic stimuli and these nonionic compounds were not effective CT stimuli. SOA and caffeine may elicit aversive reflexes or systemic reactions rather than taste sensations in the animals. Thus, the three ionic and two nonionic compounds form separate aversive stimulus classes in hamsters, neither of which appears to be a close homologue of the human bitter taste.

Animals↗

Valid across-group comparisons with labeled scales: the gLMS versus magnitude matching.

Labeled scales are commonly used for across-group comparisons. The labels consist of adjective/adverb intensity descriptors (e.g., "very strong"). The relative distances among descriptors are essentially constant but the absolute perceived intensities they denote vary with the domain to which they are applied (e.g., a "very strong" rose odor is weaker than a "very strong" headache), as if descriptors were printed on an elastic ruler that compresses or expands to fit the domain of interest. Variation in individual experience also causes the elastic ruler to compress or expand. Taste varies genetically: supertasters perceive the most intense tastes; nontasters, the weakest; and medium tasters, intermediate tastes. Taste intensity descriptors on conventional-labeled scales denote different absolute perceived intensities to the three groups making comparisons across the groups invalid. Magnitude matching provides valid comparisons by asking subjects to express tastes relative to a standard not related to taste (e.g., supertasters match tastes to louder sounds than do nontasters). Borrowing the logic of magnitude matching, we constructed a labeled scale using descriptors unrelated to taste. We reasoned that expressing tastes on a scale labeled in terms of all sensory experience might work. We generalized an existing scale, the Labeled Magnitude Scale (LMS), by placing the label "strongest imaginable sensation of any kind" at the top. One hundred subjects rated tastes and tones using the generalized LMS (gLMS) and magnitude matching. The two methods produced similar results suggesting that the gLMS is valid for taste comparisons across nontasters, medium tasters, and supertasters.

Adult↗

Responses of PROP taster groups to variations in sensory qualities within foods and beverages.

Despite increasing evidence that variations in sensitivity to the bitterness of 6-n-propylthiouracil (PROP) are also reflected in responses to other tastes in solution, there has been little research examining the impact of PROP sensitivity on responses to sensory qualities in foods or beverages. The present studies examined responses of PROP taster groups to systematic variations in tastes and oral irritation in different foods and beverages. In Experiment 1, PROP groups were asked to discriminate variations in bitterness, sweetness, or sourness within two foods (yogurt and cream cheese) and a beverage (orange juice). In most cases, tasters and especially supertasters (STs) were able to discriminate smaller variations in tastant concentration than PROP nontasters (NTs). Differences were most evident with variations in bitterness and sourness. In Experiment 2, PROP taster groups rated the sweetness, sourness, and oral irritation in carbonated fruit drinks that systematically varied in citric acid (CA) and CO2 concentrations. Ratings of sourness and irritation were highest for STs and lowest for NTs, although there were no group differences for sweetness ratings. These data are some of the first to show PROP taster group differences in tastes and irritation within foods and provide a basis for reported differences of PROP groups in their hedonic responses to foods.

Adult↗

Sweet and sour preferences in young children and adults: role of repeated exposure.

We investigated the influence of repeated exposure to orangeades with added sucrose and different concentrations of citric acid, on the taste preferences of 6- to-11-year-old children and young adults. During an intervention study of 8 days, 59 children (9.2+/-0.9 years) and 46 young adults (22+/-2.0 years) received, each day, either an orangeade with a sweet taste, a sour taste, or no orangeade (control). Before (baseline) and after the intervention, preferences for a series of orangeades and yoghurt, which varied in balance of sweet and sour tastes, were measured by means of a rank-ordering procedure. The variation in balance of sweet and sour taste was established by adding different amounts of citric acid (orangeade: 0.009, 0.013, 0.020, 0.029, 0.043, and 0.065 M added citric acid; yoghurt: 0.027, 0.038, 0.056, 0.081, 0.12, and 0.17 M added citric acid) to a stock orangeade and yoghurt with 0.42 M sucrose. The sweet and sour tasting orangeade that were consumed during the intervention were equally preferred at baseline. After an 8-day exposure to the sweet orangeade, children's preferences for this orangeade (0.42 M sucrose) significantly increased (p<0.05). A similar trend was observed for the yoghurt with 0.42 M sucrose (p=0.09). An 8-day exposure to the sour orangeade did not have a significant effect on children's preference for this orangeade. The taste preferences of adults did not change after the intervention. The control group of children and adults did not show any change in preferences for sweet and sour tastes. Future research is needed to investigate whether the changed preferences for sweet taste are stable over time and how these changed taste preferences are related to a change in the consumption of sugar rich foods.

Adult↗

Comparison times are longer for hedonic than for intensity judgements of taste stimuli.

Response times of intensity and hedonic comparisons were determined in a within-subjects experimental design. Forced-choice paired comparisons of orange lemonades with various concentrations of added quinine sulfate were made by 48 subjects. Depending on experimental condition, the subjects had to focus either on intensity or on pleasantness and give their responses as fast as possible. The data showed shorter response times for intensity comparisons than for pleasantness comparisons. Although taste processing may be partially serial and partially parallel, the larger part of the response times and the differences between them may be due to cognitive processing.

Adolescent↗

Oral sensations from iron and copper sulfate.

In previous work, retronasal smell was an important cue for perceiving metallic sensations from ferrous sulfate (FeSO4). The purpose of this study was to examine whether FeSO4 produced oral sensations as well as retronasal cues and whether astringency contributed to the oral sensations. In the first study, discrimination of FeSO4 from water was confirmed at concentrations at or above 5 mM without retronasal flow. A second study examined whether FeSO4 and CuSO4 could be detected on a non-gustatory region by tactile sensations. Astringency was perceived when the copper sulfate solution was applied to non-gustatory surfaces between the gum and the upper lip with or without retronasal cues. However, rated astringency for FeSO4 was less than that for CuSO4, and not significantly different from water. Other gustatory or tactile sensations from iron salts may contribute to their oral sensations and the possibility remains that at least one part of metallic sensation may be a metallic taste.

Adult↗

Detection of free fatty acids following a conditioned taste aversion in rats.

A gustatory transduction mechanism for free fatty acids (FFAs) has been described in isolated rat taste receptor cells; however, the ability of behaving rats to detect FFAs has not been characterized. Through conditioned taste aversion (CTA) methodology, this study defines the ability of rats to detect and avoid the two principal FFA components of corn oil, linoleic and oleic acid. Following taste aversion conditioning, rats avoided both linoleic and oleic acid at greater than or equal to 66 muM and failed to avoid either 44 muM linoleic or oleic acid. Rats demonstrated generalized avoidances between 88 muM linoleic and oleic acid irrespective of presenting the FFAs as either unesterified acids dissolved in 5 mM ethanol or aqueous sodium salts, sodium linoleate and sodium oleate. Following a CTA to linoleic acid, rats did not show generalized avoidance of NaCl or ethanol, two potentially concomitant tastants in the oral cavity. A CTA to linoleic or oleic acid did produce a generalized avoidance to the other FFA. These results support the ability of rats to detect linoleic and oleic acid (>44 muM) and suggest that the two FFAs share common orosensory properties. Furthermore, it is unlikely that the detection of the FFAs is due to an enhancement of other concomitant tastants such as saliva or the delivery solution.

Animals↗

Diverse tastes: Genetics of sweet and bitter perception.

Humans will eat almost anything, from caribou livers to rutabagas, but there are some types of foods, and their associated taste qualities, that are preferred by large groups of people regardless of culture or experience. When many choices are available, humans chose foods that taste good, that is, create pleasing sensations in the mouth. The concept of good taste for most people encompasses both flavor and texture of food, and these sensations merge with taste proper to form the concept of goodness. Although we acknowledge the universality of the goodness (sweet) or badness (bitter) of basic taste qualities, we also find that people differ, sometimes extremely so, in their ability to perceive and enjoy these qualities and, by extension, food and drink. The reasons for these differences among people are not clear but are probably due to a combination of experience beginning at an early age, perhaps in utero; learning, for example, as with conditioned taste aversions; sex and maturity; and perceptual differences that arise from genetic variation. In this review, we focus on individual variations that arise from genetic differences and review two domains of science: recent developments in the molecular biology of taste transduction, with a focus on the genes involved and second, studies that examine biological relatives to determine the heritability of taste perception. Because the receptors for sweet, savory (umami), and bitter have recently been discovered, we summarize what is known about their function by reviewing the effect of naturally occurring and man-made alleles of these receptors, their shape and function based on receptor modeling techniques, and how they differ across animal species that vary in their ability to taste certain qualities. We discuss this literature in the context of how taste genes may differ among people and give rise to individuated taste experience, and what is currently known about the genetic effects on taste perception in humans.

Animals↗

Increased negative emotional responses in PROP supertasters.

Based on animal data it has been suggested that an increased sensitivity to bitter tastes is linked with increased emotional reactivity. The present study examined for the first time in humans whether the intensity of experimentally induced negative emotional responses is related to sensitivity to the bitter tasting compound PROP (6-n-propylthiouracil). Normal-weight participants (61 men, 57 women) with a mean age of 24 years were classified into PROP non-tasters (n=54), medium tasters (n=25), or supertasters (n=39), and were shown two film clips to induce negative emotional response patterns: one pattern predominated by anger and tension, and another predominated by sadness and depressed mood. A third film clip was emotionally neutral. Before and after film clip viewing, self-rated emotional responses were obtained. PROP supertasters showed more intense responses than non-tasters or medium tasters after the anger-inducing film clip (increased anger, tension, sadness and fear as well as decreased mood and joy). Significant correlations were found between emotional responses and a continuos measure of PROP sensitivity. Group differences and correlations could not be attributed to personality measures, trait affectivity, or gender. For emotional responses after the sadness-inducing film clip, no differences between taster groups could be detected. PROP sensitivity appears to be related to arousability of emotions, in particular those emotions that are associated with an increased readiness to respond actively to stimuli from the environment, e.g. anger, disgust and fear.

Adolescent↗

Fat and sugar flavor preference and acceptance in C57BL/6J and 129 mice: experience attenuates strain differences.

C57BL/6J (B6) mice display stronger preference and acceptance for various sweeteners than do 129 mice (129P3/J, 129X1/SvJ). The present experiment compared the preference of these strains for fat flavor as well as sweet taste using 24-h two-bottle preference tests. Fat flavor preference was evaluated using non-nutritive (olestra) and nutritive (Intralipid) oil emulsions. In initial oil vs. water tests olestra preference and intake were greater in B6 mice than 129 mice. Similar strain differences were obtained with low (0.313%-5%) but not high (10%-20%) Intralipid concentrations. When retested with Intralipid the B6 and 129 mice showed strong (>90%) preferences for the nutritive oil although B6 mice still consumed more oil at low concentrations. A second olestra test revealed increased oil preference and acceptance in B6 and 129X1/SvJ mice while 129P3/J mice still did not prefer olestra to water. Sweetener tests revealed stronger saccharin and sucrose preferences in B6 mice than in 129 mice. These strain differences in sweetener preference disappeared when the mice were retested with sucrose and saccharin. However, B6 mice continued to consume more saccharin and sucrose (at low concentrations) than did 129 mice. The profile of strain differences for non-nutritive and nutritive oils was similar to those observed for non-nutritive and nutritive sweeteners. The differential sweetener preferences of B6 and 129 mice is explained by differences in their sweet taste receptors but why the strains also differ in their initial fat flavor preference is not clear. The experientially-induced increases in oil and sweetener preferences displayed by the mice are attributed to the post-oral actions of Intralipid and sucrose. These findings along with intragastric infusion data suggest that B6 and 129 mice differ in their oral but not their post-oral response to fat and sugar.

Animals↗

Phenylthiocarbamide (PTC) perception in patients with schizophrenia and first-degree family members: relationship to clinical symptomatology and psychophysical olfactory performance.

The inability to taste phenylthiocarbamide (PTC; "taste-blindness") has been associated with a number of medical and neurological illnesses not typically related to taste. We examined PTC sensitivity in 67 schizophrenia patients, 30 healthy controls, and 30 first-degree relatives to determine whether taster status could represent a simple vulnerability marker. A higher prevalence of non-tasters was seen in patients and family members relative to healthy controls. Among patients, non-tasters exhibited increased levels of negative and first-rank symptoms as well as poorer right nostril odor identification skills relative to PTC tasters. These differences were not explained by age, sex, education, smoking, or intensity differences. Phenotypic variation in PTC sensitivity is thought to be genetic in origin and suggests greater illness risk for those subjects with recessive taster alleles.

Adult↗