AbstractThe refinement of innervation is a common developmental mechanism that serves to increase the specificity of connections following initial innervation. In the peripheral gustatory system, the extent to which innervation is refined and how refinement might be regulated is unclear. The initial innervation of taste buds is controlled by brain-derived neurotrophic factor (BDNF). Following initial innervation, taste receptor cells are added and become newly innervated. The connections between the taste receptor cells and nerve fibers are likely to be specific in order to retain peripheral coding mechanisms. Here, we explored the possibility that the down-regulation of BDNF regulates the refinement of taste bud innervation during postnata...
Abstract Background During development, gustatory (taste) neurons likely undergo numerous changes in...
Brain-derived neurotrophic factor (BDNF) and Neurotrophin 3 (NT-3) are members of the neurotrophin f...
AbstractTaste buds are multicellular receptor organs innervated by the VIIth, IXth, and Xth cranial ...
AbstractThe refinement of innervation is a common developmental mechanism that serves to increase th...
Taste receptor cells transduce stimuli transmitting information to gustatory neurons that carry it t...
Sensory ganglia that innervate taste buds and gustatory papillae (geniculate and petrosal) are reduc...
Neurotrophins, neurotrophin receptors and sensory neurons are required for the development of lingua...
AbstractIn mice lacking functional brain-derived neurotrophic factor (BDNF), the number of geniculat...
AbstractBrain-derived neurotrophic factor (BDNF) and neurotrophin-4 (NT4) are essential for the surv...
The embryonic loss of brain-derived neurotropic factor (BDNF)-dependent taste axons in bdnf null mut...
AbstractMost fungiform taste buds fail to become innervated when BDNF or NT4 is overexpressed in the...
Flavors of taste are detected by a set of microscopical cellular aggregates calledthe taste buds, pr...
Neurotrophins BDNF and NT4 influence the development of the rodent gustatory system. Despite binding...
Bilateral innervation allows more than 80% of the 610 vallate taste buds to survive removal of one I...
AbstractA limited number of growth factors are capable of regulating numerous developmental processe...
Abstract Background During development, gustatory (taste) neurons likely undergo numerous changes in...
Brain-derived neurotrophic factor (BDNF) and Neurotrophin 3 (NT-3) are members of the neurotrophin f...
AbstractTaste buds are multicellular receptor organs innervated by the VIIth, IXth, and Xth cranial ...
AbstractThe refinement of innervation is a common developmental mechanism that serves to increase th...
Taste receptor cells transduce stimuli transmitting information to gustatory neurons that carry it t...
Sensory ganglia that innervate taste buds and gustatory papillae (geniculate and petrosal) are reduc...
Neurotrophins, neurotrophin receptors and sensory neurons are required for the development of lingua...
AbstractIn mice lacking functional brain-derived neurotrophic factor (BDNF), the number of geniculat...
AbstractBrain-derived neurotrophic factor (BDNF) and neurotrophin-4 (NT4) are essential for the surv...
The embryonic loss of brain-derived neurotropic factor (BDNF)-dependent taste axons in bdnf null mut...
AbstractMost fungiform taste buds fail to become innervated when BDNF or NT4 is overexpressed in the...
Flavors of taste are detected by a set of microscopical cellular aggregates calledthe taste buds, pr...
Neurotrophins BDNF and NT4 influence the development of the rodent gustatory system. Despite binding...
Bilateral innervation allows more than 80% of the 610 vallate taste buds to survive removal of one I...
AbstractA limited number of growth factors are capable of regulating numerous developmental processe...
Abstract Background During development, gustatory (taste) neurons likely undergo numerous changes in...
Brain-derived neurotrophic factor (BDNF) and Neurotrophin 3 (NT-3) are members of the neurotrophin f...
AbstractTaste buds are multicellular receptor organs innervated by the VIIth, IXth, and Xth cranial ...