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Published on: August 17, 2018
Salivary protein profiles are linked to bitter taste acceptance in infants
M Morzel1, C Chabanet, C Schwartz
1UMR6265 Centre des Sciences du Goût et de l'Alimentation, CNRS, 17 rue Sully, 21000, Dijon, France, Martine.Morzel@dijon.inra.fr.
Insights
Infant saliva protein composition may influence bitter taste acceptance. Specific proteins like S-type cystatins were linked to higher acceptance in younger infants, suggesting a biological basis for taste preferences.
Area of Science:
- Biochemistry
- Developmental Biology
- Human Nutrition
Background:
- Saliva composition is recognized as a factor in adult taste sensitivity.
- Understanding taste acceptance in infants is crucial for dietary development.
- The relationship between infant saliva proteins and taste acceptance requires further investigation.
Purpose of the Study:
- To explore the link between salivary protein profiles and taste acceptance in infants.
- To identify specific salivary proteins associated with bitter taste acceptance in early infancy.
- To determine if salivary composition predicts taste preferences in 3- and 6-month-old infants.
Main Methods:
- Longitudinal study of 73 infants at 3 and 6 months of age.
- Taste acceptance tests using intake ratios for five basic tastes.
- Salivary protein analysis via electrophoresis and mass spectrometry.
- Partial least square regression to correlate protein profiles with taste acceptance.
Main Results:
- Salivary protein profiles partially predicted bitter taste acceptance in younger infants.
- Specific proteins (secretory component, zinc-α-2-glycoprotein, carbonic anhydrase 6) correlated with lower bitterness acceptance.
- Other proteins (lactoperoxidase, prolactin-inducible protein, S-type cystatins) correlated with higher bitterness acceptance.
- S-type cystatin abundance showed a trend towards higher acceptance in an independent infant group.
Conclusions:
- Saliva protein composition may play a role in bitter taste acceptance in young infants.
- Specific salivary proteins are associated with individual differences in bitter taste perception.
- Further research is needed to confirm these findings and elucidate the mechanisms involved.
Unlabelled:
Based on recent studies in adult subjects, saliva composition is increasingly considered as a physiological factor contributing to taste sensitivity or acceptance. In order to evaluate a possible link between salivary protein composition and taste acceptance in infants, 73 infants participated longitudinally in taste acceptance tests and donated saliva at the age at 3 and 6 months. Intake ratios, reflecting acceptance of a taste solution relative to water were calculated for the five basic tastes. Salivary proteins were separated by one-dimensional electrophoresis and bands were semi-quantified by image analysis. Partial least square (PLS) regression analyses were performed for each taste at both ages to explain intake ratios by band intensities. Bitterness acceptance in the younger infants was unique in the sense that salivary protein profiles could partly predict bitter taste acceptance. At that age, infants were on average indifferent to the 0.18-M urea solution, but great variability in acceptance was observed. The six bands considered as the best predictors for bitterness acceptance were identified by MALDI-TOF mass spectrometry. Higher abundance of bands containing secretory component, zinc-α-2-glycoprotein and carbonic anhydrase 6 was associated to a lower bitterness acceptance, while higher abundance of bands containing lactoperoxidase, prolactin-inducible protein and S-type cystatins was associated to a higher bitterness acceptance. In a second stage, S-type cystatin abundance was measured by Western blotting in order to tentatively confirm this particular finding in an independent group of 22 infants. Although not reaching statistical significance, probably due to a relatively small sample size, it was again observed that cystatin abundance was higher in infants accepting more readily the bitter solution over water.
Conclusion:
saliva protein composition may contribute to bitter taste acceptance in the younger infants.
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