Search results for "Fat taste"

showing 10 items of 13 documents

Détection orosensorielle des lipides alimentaires chez la souris : mécanismes impliqués et altérations au cours de l'obésité

2015

Dietary lipids are detected by the gustatory system in rodents and humans. Two candidate lipid-receptors are found in taste buds: CD36, which is involved in the fat taste as shown by studies conducted in our laboratory, and GPR120. Our results show that GPR120 is not directly involved in the gustatory detection of lipids in mice, but could rather be involved in the modulation of the sensitivity for fat. When this gustatory system works properly, food choices can meet the organism’s energy needs. Besides, the pleasure brought by the consumption of palatable foods is satisfied. However, obese people often overconsume energy-dense food. In the central nervous system, perturbations of the rewar…

[SDV.MHEP.EM] Life Sciences [q-bio]/Human health and pathology/Endocrinology and metabolismInflammationSantéMicrobioteLPSGoût du grasGPR120Food behaviorMicrobiota[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionLipides[SDV.MHEP.EM]Life Sciences [q-bio]/Human health and pathology/Endocrinology and metabolism[ SDV.MHEP.EM ] Life Sciences [q-bio]/Human health and pathology/Endocrinology and metabolismLipids[SDV.AEN] Life Sciences [q-bio]/Food and NutritionComportement alimentaireHealthObesityObésitéCD36[SDV.AEN]Life Sciences [q-bio]/Food and NutritionFat taste
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Zizyphin modulates calcium signalling in human taste bud cells and fat taste perception in the mouse.

2017

Zizyphin, isolated from Zizyphus sps. leaf extracts, has been shown to modulate sugar taste perception, and the palatability of a sweet solution is increased by the addition of fatty acids. We, therefore, studied whether zizyphin also modulates fat taste perception. Zizyphin was purified from edible fruit of Zizyphus lotus L. Zizyphin induced increases in [Ca2+]i in human taste bud cells (hTBC). Zizyphin shared the endoplasmic reticulum Ca2+ pool and also recruited, in part, Ca2+ from extracellular environment via the opening of store-operated Ca2+ (SOC) channels. Zizyphin exerted additive actions on linoleic acid-induced increases in [Ca2+]i in these cells, indicating that zizyphin does no…

Male0301 basic medicinemedicine.medical_specialtyTasteLinoleic acidBiologyPeptides CyclicReceptors G-Protein-CoupledMice03 medical and health scienceschemistry.chemical_compoundAlkaloids0302 clinical medicineTAS1R3Internal medicinesweet tastemedicineAnimalsHumansPharmacology (medical)Calcium SignalingPalatabilityCells CulturedZizyphus lotus LCalcium signalingMice KnockoutPharmacologychemistry.chemical_classificationPlant ExtractsTaste PerceptionGPR120Fatty acid[ SDV.SP.PHARMA ] Life Sciences [q-bio]/Pharmaceutical sciences/PharmacologyZiziphusTaste BudsDietary FatsG protein-coupled bile acid receptorfat tastezizyphinMice Inbred C57BL030104 developmental biologyEndocrinologyBiochemistrychemistry030217 neurology & neurosurgery
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A cross-talk between fat and bitter taste modalities

2019

International audience; The choice of food is governed largely by the sense of taste. To date, five basic taste modalities have been described; however, there is an increasing agreement on the existence of a 6th fat taste. The taste modalities might interact with each other and also with other senses. The advancements in cellular and molecular biology have helped the characterization of taste signaling mechanisms, down to the receptor level and beyond. CD36 and GPR120 have been shown to be involved in the detection of fat taste while bitter taste is perceived by a number of receptors that belong to a family of taste-type 2 receptors (T2R or TAS2R). Hence, the most common role is played by T…

0301 basic medicineCD36 AntigensTaste[SDV.GEN] Life Sciences [q-bio]/GeneticsBiochemistryReceptors G-Protein-Coupled03 medical and health sciencesBitter taste perceptionHumansgenetic polymorphismObesity[SDV.GEN]Life Sciences [q-bio]/GeneticsModalities030102 biochemistry & molecular biologyGPR120Taste PerceptionGeneral MedicineBitter tasteBitter tasteDietary Fatsfat taste030104 developmental biologyTAS2R38Molecular mechanismcross-talkPsychologyNeurosciencepsychological phenomena and processesSignal Transduction
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In-mouth mechanism leading to the perception of fat and its consequence on post-prandial lipid metabolism in humans. The particular role of saliva

2014

In humans, the in-mouth perception of dietary fat in food is a complex process involving many sensory modalities (texture, aroma, taste and trigeminal). During food oral processing, a bolus is formed in which saliva is significantly incorporated thus contributing significantly to the perception of fat. In particular, it has been shown that the levels of some salivary characteristics (lipolysis, lysozyme, flux, antioxidant status, level of carbonic anhydrase and proteins) are related to the sensitivity of the individual to triolein and oleic acid. Interestingly, the involvement of some of these salivary variables in the perceived intensity and preference towards model oil emulsions was also …

[SDV.AEN] Life Sciences [q-bio]/Food and Nutritionsalivaobesitygenetic structures[ SDV.AEN ] Life Sciences [q-bio]/Food and Nutritionlipid metabolism[SDV.AEN]Life Sciences [q-bio]/Food and Nutritionfat taste
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The oral lipid sensor GPR120 is not indispensable for the orosensory detectionof dietary lipids in the mouse

2014

International audience; Implication of the long-chain fatty acid (LCFA) receptor GPR120, also termed free fatty acid receptor 4 (FFAR4), in the taste-guided preference for lipids is a matter of debate. To further unravel the role of GPR120 in the "taste of fat", the present study was conducted on GPR120-null mice and their wild-type littermates. Using a combination of morphological (i.e. immunohistochemical staining of circumvallate papillae - CVP), behavioral (i.e. two-bottle preference tests, licking tests and conditioned taste aversion) and functional studies (i.e. calcium imaging in freshly isolated taste bud cells - TBC), we show that absence of GPR120 in oral cavity was not associated…

MaleAgonistmedicine.medical_specialtyTasteG-proteinGPR120Mousemedicine.drug_class[ SDV.AEN ] Life Sciences [q-bio]/Food and Nutritionchemistry.chemical_elementQD415-436CalciumBiologyBiochemistryDiet and dietary lipidsReceptors G-Protein-CoupledFood PreferencesMice03 medical and health sciences0302 clinical medicineEndocrinologyCalcium imagingFeeding behaviorInternal medicineReceptorsmedicineAnimalsReceptorResearch Articles030304 developmental biologyNutritionchemistry.chemical_classification0303 health sciencesFatty acidGPR120Cell BiologyTaste BudsDietary FatsImmunohistochemistryLipids[SDV.AEN] Life Sciences [q-bio]/Food and NutritionEndocrinologychemistryTaste aversionCalciumFat taste[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition030217 neurology & neurosurgeryG proteins
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Obesity interferes with the orosensory detection of long-chain fatty acids in humans

2014

Background: The association between the orosensory detection of lipids, preference for fatty foods, and body mass index (BMI; in kg/m 2 ) is controversial in humans. Objective: We explored the oral lipid-sensing system and the orosensory-induced autonomic reflex system in lean and obese subjects. Design: Lean (BMI: 19 to ,25; n = 30) and obese (BMI .30; n = 29) age-matched men were enrolled. Their oral threshold sensitivity to linoleic acid (LA) was determined by using a 3-alternative forced-choice ascending procedure, and their eating habits were established by the analysis of 4 consecutive 24-h food-consumption diaries. The effect of brief oral lipid stimulations on plasma triglyceride [(…

Blood GlucoseMaleobesityChemical PhenomenaMESH : Insulin[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionCholesterol VLDLMedicine (miscellaneous)MESH: Food HabitsStimulationMESH: Energy IntakeMESH : TasteMESH : FastingBody Mass Indexchemistry.chemical_compoundMESH: Cholesterol VLDLMESH: Diet RecordsInsulinMESH: ObesityMESH : Physicochemical PhenomenaCompletely randomized designMESH : Food HabitsCross-Over StudiesMESH: Middle AgedMESH : Food PreferencesNutrition and DieteticsFastingMiddle AgedDiet RecordsMESH : TriglyceridesSensory ThresholdsTasteMESH : ObesityMESH: Triglyceridesmedicine.medical_specialtyMESH : MaleLinoleic acidMESH: FastingMESH: InsulinMESH: Cross-Over StudiesMESH: Body Mass IndexLinoleic AcidMESH : Diet RecordsFood PreferencesBMIMESH : Linoleic AcidInternal medicineAutonomic reflexmedicineHumansMESH : Middle AgedhumanMESH: Food PreferencesTriglyceridesMESH : Cholesterol VLDLMESH: Linoleic AcidMESH: HumansCholesterolbusiness.industryMESH : HumansMESH : Energy IntakeFeeding BehaviorMESH : Blood GlucoseMESH : Cross-Over Studiesmedicine.diseaseCrossover studyObesityMESH: Malefat taste[SDV.AEN] Life Sciences [q-bio]/Food and NutritionMESH: Physicochemical PhenomenaMESH : Body Mass IndexEndocrinologychemistryMESH: Blood GlucoseMESH: Tastefood preferenceMESH: Sensory ThresholdsEnergy Intakebusiness[SDV.AEN]Life Sciences [q-bio]/Food and NutritionBody mass indexMESH : Sensory ThresholdsThe American Journal of Clinical Nutrition
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Obesity alters the gustatory perception of lipids in the mouse: plausible involvement of lingual CD36. : Obesity decreases the fat preference

2013

International audience; A relationship between orosensory detection of dietary lipids, regulation of fat intake, and body mass index was recently suggested. However, involved mechanisms are poorly understood. Moreover, whether obesity can directly modulate preference for fatty foods remains unknown. To address this question, exploration of the oral lipid sensing system was undertaken in diet-induced obese (DIO) mice. By using a combination of biochemical, physiological, and behavioral approaches, we found that i) the attraction for lipids is decreased in obese mice, ii) this behavioral change has an orosensory origin, iii) it is reversed in calorie-restricted DIO mice, revealing an inverse …

CD36 AntigensCD36[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionAdipose tissueMESH : Behavior AnimalBiochemistryCalcium in biologyMice0302 clinical medicineEndocrinologyMESH : Calcium SignalingMESH: Behavior AnimalMESH: ObesityMESH: AnimalsLingual papillaResearch Articles2. Zero hunger0303 health sciencesMESH : Food PreferencesBehavior AnimalMESH : TongueMESH : Diet High-FatMESH: TongueTaste Perceptiontaste sensitivityMESH : Antigens CD36calcium imagingAdipose TissueHealthMESH: Dietary FatsMESH : ObesityFat tasteMESH: Adipose Tissuemedicine.medical_specialtyFood behavior030209 endocrinology & metabolismMESH : Mice Inbred C57BLQD415-436BiologyDiet High-FatMESH: Calcium SignalingMESH : Adipose TissueFood Preferences03 medical and health sciencesCalcium imagingTongueDownregulation and upregulationMESH: Mice Inbred C57BLInternal medicineMESH : MicemedicineAnimalsCalcium SignalingObesityFatty acidsMESH: Food PreferencesMESH: Mice030304 developmental biologyNutritionlong-chain fatty acidsMESH: Antigens CD36MESH : Taste PerceptionCell Biologymedicine.diseaseDietary FatsObesityMice Inbred C57BLMESH: Diet High-FatEndocrinologyMESH: Taste Perceptionbiology.proteinMESH : AnimalsBody mass index[SDV.AEN]Life Sciences [q-bio]/Food and NutritionMESH : Dietary Fats
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Mechanisms of gustatory perception of dietary lipids : cross-talk with bitter taste and endocannabinoid receptors

2018

Obesity is one of the major public health problems at the beginning of the 21st century. Its prevalence is increasing steadily, especially among children. This observation is not insignificant because obesity is generally associated with various serious pathologies (type 2 diabetes, hypertension and cancer, etc.). Thus, investigations into the mechanisms involved in the taste perception of dietary lipids could shed light on their roles in the incidence of obesity.Several studies have demonstrated the role of endocannabinoids and bitter foods in obesity. Thus, we studied the cross-talk of cannabinoid receptors and bitter taste with lipid taste. This thesis has two components: cannabinoid rec…

Goût de grasTaste cells[SDV.AEN] Life Sciences [q-bio]/Food and NutritionHtc-8AmerCellules gustativesEndocannabinoïdes[SDV.MHEP.PHY] Life Sciences [q-bio]/Human health and pathology/Tissues and Organs [q-bio.TO]Cb1rBitter tasteFat tasteEndocannabinoids
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The rs1527483, but not rs3212018, CD36 polymorphism associates with linoleic acid detection and obesity in Czech young adults

2018

AbstractRecent evidence has raised the possibility of the existence of a sixth taste modality – that is, taste for fat – which is mediated by lingual CD36 and plays a role in obesity. Consequently, the genetic polymorphism of CD36 has been shown to be associated with altered oro-sensory detection of dietary lipids. In the present study, we investigated the relationship between oro-sensory perception of linoleic acid (LA), two CD36 polymorphisms (rs1527483 and rs3212018), obesity parameters and craving habits for dietary lipids in young Czech adults. We also sequenced 5 and 6 exons of CD36 to trace out any new mutation that might be responsible for the difference in taste perception. We obse…

CD36 AntigensMale0301 basic medicineCD36[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionMedicine (miscellaneous)CravingBody Mass Indexchemistry.chemical_compoundExonGenotypeYoung adultLA linoleic acidCzech RepublicNutrition and DieteticsbiologyTaste Perceptionrs1527483TasteFemaleWaist Circumferencemedicine.symptomFat tasteAdultmedicine.medical_specialtyWaistGenotypeLinoleic acidPolymorphism Single NucleotideWHtR waist:height ratioLinoleic AcidFood PreferencesYoung Adult03 medical and health sciencesInternal medicinemedicineHumansObesityWaist-Height RatioGenetic polymorphismbusiness.industryWHR waist:hip ratiomedicine.diseaseDietary FatsObesity030104 developmental biologyEndocrinologyWC waist circumferencechemistrybiology.proteinbusinessCD36[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition
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Taste of Fat and Obesity: Different Hypotheses and Our Point of View

2022

Obesity results from a temporary or prolonged positive energy balance due to an alteration in the homeostatic feedback of energy balance. Food, with its discriminative and hedonic qualities, is a key element of reward-based energy intake. An alteration in the brain reward system for highly palatable energy-rich foods, comprised of fat and carbohydrates, could be one of the main factors involved in the development of obesity by increasing the attractiveness and consumption of fat-rich foods. This would induce, in turn, a decrease in the taste of fat. A better understanding of the altered reward system in obesity may open the door to a new era for the diagnosis, management and treatment of th…

obesityNutrition and Dieteticsfood intakeRewardreward systemNutrition. Foods and food supplyTasteHomeostasisHumansTX341-641Energy MetabolismFood Sciencefat tasteNutrients
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