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Updated: Jul 30, 2026

Meal Duration as a Measure of Orofacial Nociceptive Responses in Rodents
Published on: January 10, 2014
Litter reduction-induced obesity reduces masticatory performance and SERT expression in the mesencephalic trigeminal
Cynthya Myllena Martins Silva1, Isabeli Lins Pinheiro2, Renata Emmanuele Assunção Santos3
1Postgraduate Program in Nutrition, Health Sciences Center, Federal University of Pernambuco, Brazil.
Introduction:
Studies associate obesity with poorer masticatory performance. Obese individuals have larger bite size, use fewer masticatory sequences, and chew faster, contributing to higher food intake. The mesencephalic trigeminal nucleus facilitates the transmission of sensory input from the oral cavity to coordinate orofacial movements during chewing and swallowing. The serotonin transporter (SERT) acts on serotonergic neurotransmission control and correlates with obesity parameters.
Objective:
To evaluate the effect of obesity induced by litter size reduction on somatic and masticatory performance and serotonin transporter immunoreactivity in the mesencephalic trigeminal nucleus.
Methods:
Wistar rats were distributed into a control group (CL; 9 pups per dam; n = 13) and a small litter group (SL; 3 pups per dam; n = 13), analyzing their body weight, brown and white adipose tissue weight, food intake during mastication, masticatory jaw movements, and serotonin transporter immunohistochemistry.
Results:
The overfed group had greater body weight from postnatal day 14 onwards; greater food consumption through chewing, and fewer chewing sequences and cycles on postnatal day 22; and greater amounts of inguinal, epididymal, mesenteric, retroperitoneal, and brown fat on postnatal day 30. Overfed animals had longer chewing sequences and lower chewing rates; they also had lower expression of SERT-IR, larger diameter of neurons and lower neuronal density in the mesencephalic trigeminal nucleus.
Conclusion:
Obesity induced by neonatal overnutrition leads to decreased SERT expression in the mesencephalic trigeminal nucleus, leading to less rhythmic chewing activity and greater food consumption during chewing. These findings show the importance of the relationship between obesity, chewing, and SERT expression.

