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Wamberto Antonio Varanda

Showing results (1-10 of 15) with videos related to

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Journal of Neurophysiology|March 4, 2005
Glycine binding site of the synaptic NMDA receptor in subpostremal NTS neuronsVander Baptista, Wamberto Antonio Varanda
The Journal of Physiology|October 13, 2007
Intracellular calcium changes in mice Leydig cells are dependent on calcium entry through T-type calcium channelsRoberta Ribeiro Costa, Wamberto Antonio Varanda
Pflugers Archiv : European Journal of Physiology|June 25, 2008
Volume-activated chloride channels in mice Leydig cellsLuiz Artur Poletto Chaves, Wamberto Antonio Varanda
American Journal of Physiology. Cell Physiology|June 4, 2010
A calcium-induced calcium release mechanism supports luteinizing hormone-induced testosterone secretion in mouse Leydig cellsRoberta Ribeiro Costa, Wamberto Antonio Varanda, Celso Rodrigues Franci
Frontiers in Physiology|June 10, 2022
Osmoregulation and the Hypothalamic Supraoptic Nucleus: From Genes to FunctionsAndré Souza Mecawi, Wamberto Antonio Varanda, Melina Pires da Silva
American Journal of Physiology. Cell Physiology|November 18, 2005
P2X receptors in mouse Leydig cellsLuiz Artur Poletto Chaves, Endrigo Piva Pontelli, Wamberto Antonio Varanda
Amino Acids|September 14, 2017
4-Chloro-3-nitro-N-butylbenzenesulfonamide acts on K<sub>V</sub>3.1 channels by an open-channel blocker mechanismCarlos Alberto Zanutto Bassetto Junior, Wamberto Antonio Varanda, Eduardo René Pérez González
Purinergic Signalling|November 21, 2008
Mouse Leydig cells express multiple P2X receptor subunitsLigia Subitoni Antonio, Roberta Ribeiro Costa, Marcelo Damário Gomes, et al.
Amino Acids|October 14, 2017
Correction to: 4-Chloro-3-nitro-N-butylbenzenesulfonamide acts on K<sub>V</sub>3.1 channels by an open-channel blocker mechanismCarlos Alberto Zanutto Bassetto Junior, Wamberto Antonio Varanda, Eduardo René Pérez González
Cell Calcium|March 4, 2011
Luteinizing hormone (LH) acts through PKA and PKC to modulate T-type calcium currents and intracellular calcium transients in mice Leydig cellsRoberta Ribeiro Costa, Rosana Inácio Dos Reis, José Fernando Aguiar, et al.
Pageof 2

Showing results (1-10 of 15) with videos related to

Sort By:
Pageof 2
Journal of Neurophysiology|March 4, 2005
Glycine binding site of the synaptic NMDA receptor in subpostremal NTS neuronsVander Baptista, Wamberto Antonio Varanda
The Journal of Physiology|October 13, 2007
Intracellular calcium changes in mice Leydig cells are dependent on calcium entry through T-type calcium channelsRoberta Ribeiro Costa, Wamberto Antonio Varanda
Pflugers Archiv : European Journal of Physiology|June 25, 2008
Volume-activated chloride channels in mice Leydig cellsLuiz Artur Poletto Chaves, Wamberto Antonio Varanda
American Journal of Physiology. Cell Physiology|June 4, 2010
A calcium-induced calcium release mechanism supports luteinizing hormone-induced testosterone secretion in mouse Leydig cellsRoberta Ribeiro Costa, Wamberto Antonio Varanda, Celso Rodrigues Franci
Frontiers in Physiology|June 10, 2022
Osmoregulation and the Hypothalamic Supraoptic Nucleus: From Genes to FunctionsAndré Souza Mecawi, Wamberto Antonio Varanda, Melina Pires da Silva
American Journal of Physiology. Cell Physiology|November 18, 2005
P2X receptors in mouse Leydig cellsLuiz Artur Poletto Chaves, Endrigo Piva Pontelli, Wamberto Antonio Varanda
Amino Acids|September 14, 2017
4-Chloro-3-nitro-N-butylbenzenesulfonamide acts on K<sub>V</sub>3.1 channels by an open-channel blocker mechanismCarlos Alberto Zanutto Bassetto Junior, Wamberto Antonio Varanda, Eduardo René Pérez González
Purinergic Signalling|November 21, 2008
Mouse Leydig cells express multiple P2X receptor subunitsLigia Subitoni Antonio, Roberta Ribeiro Costa, Marcelo Damário Gomes, et al.
Amino Acids|October 14, 2017
Correction to: 4-Chloro-3-nitro-N-butylbenzenesulfonamide acts on K<sub>V</sub>3.1 channels by an open-channel blocker mechanismCarlos Alberto Zanutto Bassetto Junior, Wamberto Antonio Varanda, Eduardo René Pérez González
Cell Calcium|March 4, 2011
Luteinizing hormone (LH) acts through PKA and PKC to modulate T-type calcium currents and intracellular calcium transients in mice Leydig cellsRoberta Ribeiro Costa, Rosana Inácio Dos Reis, José Fernando Aguiar, et al.
Pageof 2