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Updated: Aug 11, 2026

Whole-Mount Staining, Visualization, and Analysis of Fungiform, Circumvallate, and Palate Taste Buds
Published on: February 11, 2021
Epithelial overexpression of BDNF and NT4 produces distinct gustatory axon morphologies that disrupt initial
1Department of Anatomical Sciences and Neurobiology, University of Louisville School of Medicine, Louisville, KY 40292, USA.
Abstract:
Most fungiform taste buds fail to become innervated when BDNF or NT4 is overexpressed in the basal layer of tongue epithelium. Here, we examined when and how overexpression of BDNF and NT4 disrupt innervation to fungiform papillae. Overexpression of either factor disrupted chorda tympani innervation patterns either before or during the initial innervation of fungiform papillae. NT4 and BDNF overexpression each disrupted initial innervation by producing different gustatory axon morphologies that emerge at distinct times (E12.5 and E14.5, respectively). Chorda tympani nerve branching was reduced in NT4 overexpressing mice, and neuronal fibers in these mice were fasciculated and remained below the epithelial surface, as if repelled by NT4 overexpression. In contrast, many chorda tympani nerve branches were observed near the epithelial surface in mice overexpressing BDNF, and most were attracted to and invaded non-taste filiform papillae instead of gustatory papillae. These results suggest that BDNF, but not NT4, normally functions as a chemoattractant that allows chorda tympani fibers to distinguish their fungiform papillae targets from non-gustatory epithelium. Since BDNF and NT4 both signal through the p75 and TrkB receptors, trophin-specific activation of different internal signaling pathways must regulate the development of the distinct gustatory axon morphologies in neurotrophin-overexpressing mice.
Insights
Overexpressing brain-derived neurotrophic factor (BDNF) or neurotrophin-4 (NT4) disrupts taste bud innervation. BDNF acts as a chemoattractant guiding nerve fibers to taste papillae, while NT4 hinders nerve branching.
Area of Science:
- Neuroscience
- Developmental Biology
- Molecular Biology
Background:
- Taste bud innervation is crucial for gustation.
- Neurotrophins like BDNF and NT4 play roles in nerve development.
- Understanding neurotrophin function is key to studying sensory system development.
Purpose of the Study:
- To investigate the timing and mechanisms by which BDNF and NT4 overexpression disrupt fungiform taste bud innervation.
- To differentiate the roles of BDNF and NT4 in gustatory nerve targeting.
Main Methods:
- Overexpression of BDNF and NT4 in the basal layer of tongue epithelium in mice.
- Analysis of chorda tympani nerve innervation patterns and axon morphology.
- Temporal analysis of innervation disruption during embryonic development (E12.5 and E14.5).
Main Results:
- Both BDNF and NT4 overexpression disrupted chorda tympani innervation patterns.
- NT4 overexpression led to reduced nerve branching and fasciculated fibers remaining below the epithelium.
- BDNF overexpression resulted in nerve branches near the surface, with many invading non-taste filiform papillae.
Conclusions:
- BDNF, but not NT4, normally functions as a chemoattractant for gustatory fibers to target fungiform papillae.
- Distinct axon morphologies in neurotrophin-overexpressing mice suggest differential signaling pathways.
- These findings elucidate the specific roles of BDNF and NT4 in guiding gustatory nerve development.

