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Investigation of vagal sensory neurons in mice using optical vagal stimulation and tracheal neuroanatomy.


ABSTRACT: In rats and guinea pigs, sensory innervation of the airways is derived largely from the vagus nerve, with the extrapulmonary airways innervated by Wnt1+ jugular neurons and the intrapulmonary airways and lungs by Phox2b+ nodose neurons; however, our knowledge of airway innervation in mice is limited. We used genetically targeted expression of enhanced yellow fluorescent protein-channelrhodopsin-2 (EYFP-ChR2) in Wnt1+ or Phox2b+ tissues to characterize jugular and nodose-mediated physiological responses and airway innervation in mice. With optical stimulation, Phox2b+ vagal fibers modulated cardiorespiratory function in a frequency-dependent manner while right Wnt1+ vagal fibers induced a small increase in respiratory rate. Mouse tracheae contained sparse Phox2b-EYFP fibers but dense networks of Wnt1-EYFP fibers. Retrograde tracing from the airways showed limited tracheal innervation by the jugular sensory neurons, distinct from other species. These differences in physiology and vagal sensory distribution have important implications when using mice for studying airway neurobiology.

SUBMITTER: Moe AAK 

PROVIDER: S-EPMC10897902 | biostudies-literature | 2024 Mar

REPOSITORIES: biostudies-literature

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Investigation of vagal sensory neurons in mice using optical vagal stimulation and tracheal neuroanatomy.

Moe Aung Aung Kywe AAK   Bautista Tara G TG   Trewella Matthew W MW   Korim Willian S WS   Yao Song T ST   Behrens Robert R   Driessen Alexandria K AK   McGovern Alice E AE   Mazzone Stuart B SB  

iScience 20240209 3


In rats and guinea pigs, sensory innervation of the airways is derived largely from the vagus nerve, with the extrapulmonary airways innervated by Wnt1+ jugular neurons and the intrapulmonary airways and lungs by Phox2b+ nodose neurons; however, our knowledge of airway innervation in mice is limited. We used genetically targeted expression of enhanced yellow fluorescent protein-channelrhodopsin-2 (EYFP-ChR2) in Wnt1+ or Phox2b+ tissues to characterize jugular and nodose-mediated physiological re  ...[more]

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