Glial-like supporting (or sustentacular) cells are important constituents of the olfactory epithelium that are involved in several physiological processes such as production of endocannabinoids, insulin, and ATP and regulation of the ionic composition of the mucus layer that covers the apical surface of the olfactory epithelium. Supporting cells express metabotropic P2Y purinergic receptors that generate ATP-induced Ca2+ signaling through the activation of a PLC-mediated cascade. Recently, we reported that a subpopulation of supporting cells expresses also the Ca2+-activated Cl- channel TMEM16A. Here, we sought to extend our understanding of a possible physiological role of this channel in the olfactory system by asking whether Ca2+ can act...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
Calcium-activated chloride channels are involved in several physiological processes including olfact...
Glial-like supporting (or sustentacular) cells are important constituents of the olfactory epitheliu...
Glial-like supporting (or sustentacular) cells are important constituents of the olfactory epitheliu...
Glial-like supporting (or sustentacular) cells are important constituents of the olfactory epitheliu...
This study is divided in three individual projects focusing on calcium signaling on nonneuronal cel...
This study is divided in three individual projects focusing on calcium signaling on nonneuronal cel...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
Calcium-activated chloride channels are involved in several physiological processes including olfact...
Glial-like supporting (or sustentacular) cells are important constituents of the olfactory epitheliu...
Glial-like supporting (or sustentacular) cells are important constituents of the olfactory epitheliu...
Glial-like supporting (or sustentacular) cells are important constituents of the olfactory epitheliu...
This study is divided in three individual projects focusing on calcium signaling on nonneuronal cel...
This study is divided in three individual projects focusing on calcium signaling on nonneuronal cel...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
Calcium-activated chloride channels are involved in several physiological processes including olfact...