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Trpv1+ sensory innervation of the salivary gland drives pain and supports saliva secretion

Cannizzaro, D. N.; Amorim, J.; Wilson, R. E.; Moehn, K. M.; Saravanan, A.; Vesela, I.; Gandhi, A. R.; Lombaert, I. M. A.; Emrick, J. J.

2026-08-12 physiology
10.64898/2026.08.06.743081 bioRxiv
Show abstract

Sensory neurons have been increasingly recognized as vital contributors to deep tissue function. However, how these specialized neurons contribute to salivary gland function remains largely undefined. Here, we uncover a role for trigeminal somatosensory afferents in salivary gland perception and function using in situ-based classification, in vivo calcium imaging, behavioral assays, and targeted ablation. Retrograde labeling from the submandibular gland complex revealed substantial direct innervation from trigeminal neurons. Further categorization confirmed that Trpv1+ sensory neurons provided dense innervation of the Whartons ducts. TRPV1 agonist ductal infusion directly activated gland complex-associated neurons in the trigeminal ganglia and evoked a robust pain phenotype. Targeted Trpv1+ ablation disrupted Whartons ducts structure and dramatically reduced stimulated saliva volume. Our work provides the first evidence that Trpv1+ sensory neurons maintain salivary architecture and are necessary for stimulated saliva production, revealing a vital interoceptive role for direct trigeminal innervation in submandibular gland health.

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