Cephalic phase response in systemic glucose metabolism: How taste triggers glucose homeostasis

Background Cephalic phase responses (CPRs) are anticipatory and conditioned responses elicited by the stimulation of food-related cues in the oral and nasal cavities. By initiating autonomic and endocrine reactions before absorption of nutrients, CPRs can blunt acute-postprandial hyperglycemia. Taste-related information is critical for triggering CPRs, but the neural mechanisms underlying taste-driven CPRs remain incompletely elucidated. Highlight Current evidence supports a model in which taste-driven CPRs arise from coordinated processing across peripheral taste receptors, the rostral component of the nucleus of the solitary tract, dorsal vagal complex, vagal parasympathetic outputs, and modulatory forebrain circuits, with neuroimmune inputs representing a newly emerging layer of regulation. Conclusion While considerable progress has been made in refining understanding of the neural mechanisms behind taste-driven CPRs in rodents and humans, further studies are required to clarify the complex central mechanisms underlying the integration of internal states and external information during CPRs. Elucidating these pathways will not only deepen understanding of the role of the central nervous system in systemic glucose regulation, but it will also provide critical insights into how these anticipatory responses are altered by aging and metabolic disorders such as diabetes.

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Publication Details

Journal
Journal of Oral Biosciences
Published
2026-09-10
DOI
https://doi.org/10.1016/j.job.2026.100813
Primary Topic
Biochemical Analysis and Sensing Techniques
Type
article
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article

Cephalic phase response in systemic glucose metabolism: How taste triggers glucose homeostasis

Jessica Ye, Chitoku Toda, Changwen Li, Samson Ngurari
Journal of Oral Biosciences
Biochemical Analysis and Sensing Techniques
article

Cephalic phase response in systemic glucose metabolism: How taste triggers glucose homeostasis

Jessica Ye, Chitoku Toda, Changwen Li, Samson Ngurari
article en

Abstract

Background Cephalic phase responses (CPRs) are anticipatory and conditioned responses elicited by the stimulation of food-related cues in the oral and nasal cavities. By initiating autonomic and endocrine reactions before absorption of nutrients, CPRs can blunt acute-postprandial hyperglycemia. Taste-related information is critical for triggering CPRs, but the neural mechanisms underlying taste-driven CPRs remain incompletely elucidated. Highlight Current evidence supports a model in which taste-driven CPRs arise from coordinated processing across peripheral taste receptors, the rostral component of the nucleus of the solitary tract, dorsal vagal complex, vagal parasympathetic outputs, and modulatory forebrain circuits, with neuroimmune inputs representing a newly emerging layer of regulation. Conclusion While considerable progress has been made in refining understanding of the neural mechanisms behind taste-driven CPRs in rodents and humans, further studies are required to clarify the complex central mechanisms underlying the integration of internal states and external information during CPRs. Elucidating these pathways will not only deepen understanding of the role of the central nervous system in systemic glucose regulation, but it will also provide critical insights into how these anticipatory responses are altered by aging and metabolic disorders such as diabetes.

Journal of Oral BiosciencesVol. 68(5)
Brigham and Women's Hospital (US), Harvard University (US), Kumamoto University (JP)
Zero hunger
Openalex Percentile: Top 12%
Biochemical Analysis and Sensing Techniques
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Cephalic phase response in systemic glucose metabolism: How taste triggers glucose homeostasis — Jessica Ye, Chitoku Toda, et al. · Journal of Oral Biosciences (2026) | TGRS Research Map | TGRS