AbstractIonic fluxes across the sperm membrane have been shown to be important in the initiating process of sperm activation and gamete interaction; however, electrophysiological investigation of the ion channels involved has been precluded by the small size of the sperm, especially in mammalian species. In the present study sperm ion channels were expressed in Xenopus oocytes by injection of RNAs of spermatogenic cells isolated from the rat testes. The RNA-injected oocytes responded to ATP, a factor known to regulate sperm activation, with the activation of an outwardly rectifying whole-cell current which was dependent on K+ concentrations and inhibitable by K+ channel blockers, charybdotoxin (CTX) and tetraethylammonium (TEA). The ATP-ind...
Spermatogenesis is a fundamental biological process that ensures male fertility. However, few physio...
AbstractMouse sperm resting membrane potential (Er) (−42±8.8 mV), determined with a potential sensit...
AbstractAlthough ion channels are known to be pivotal to sperm function, the technical difficulty of...
AbstractIonic fluxes across the sperm membrane have been shown to be important in the initiating pro...
AbstractThe present study investigated the feasibility of using Xenopus oocytes to express sperm ion...
AbstractThe present study investigated the feasibility of using Xenopus oocytes to express sperm ion...
AbstractTo fertilize, mammalian sperm must complete a maturational process called capacitation. It i...
AbstractThough voltage-dependent Ca2+ channels contribute to the orchestratation of sperm differenti...
AbstractMammalian sperm must undergo a series of physiological changes after leaving the testis to b...
AbstractIn addition to Ca2+ and K+ fluxes, angiotensin II (Ang II) has been shown to influence sperm...
AbstractThere is pharmacological evidence that Ca2+ channels play an essential role in triggering th...
We have identified the mechanism whereby extracellular ATP (ATPe) triggers the acrosome reaction in ...
AbstractMammalian sperm must undergo a series of physiological changes after leaving the testis to b...
Spermatogenesis is a fundamental biological process that ensures male fertility. However, few physio...
AbstractIonic fluxes are thought to be important in the initiating process of gamete interaction suc...
Spermatogenesis is a fundamental biological process that ensures male fertility. However, few physio...
AbstractMouse sperm resting membrane potential (Er) (−42±8.8 mV), determined with a potential sensit...
AbstractAlthough ion channels are known to be pivotal to sperm function, the technical difficulty of...
AbstractIonic fluxes across the sperm membrane have been shown to be important in the initiating pro...
AbstractThe present study investigated the feasibility of using Xenopus oocytes to express sperm ion...
AbstractThe present study investigated the feasibility of using Xenopus oocytes to express sperm ion...
AbstractTo fertilize, mammalian sperm must complete a maturational process called capacitation. It i...
AbstractThough voltage-dependent Ca2+ channels contribute to the orchestratation of sperm differenti...
AbstractMammalian sperm must undergo a series of physiological changes after leaving the testis to b...
AbstractIn addition to Ca2+ and K+ fluxes, angiotensin II (Ang II) has been shown to influence sperm...
AbstractThere is pharmacological evidence that Ca2+ channels play an essential role in triggering th...
We have identified the mechanism whereby extracellular ATP (ATPe) triggers the acrosome reaction in ...
AbstractMammalian sperm must undergo a series of physiological changes after leaving the testis to b...
Spermatogenesis is a fundamental biological process that ensures male fertility. However, few physio...
AbstractIonic fluxes are thought to be important in the initiating process of gamete interaction suc...
Spermatogenesis is a fundamental biological process that ensures male fertility. However, few physio...
AbstractMouse sperm resting membrane potential (Er) (−42±8.8 mV), determined with a potential sensit...
AbstractAlthough ion channels are known to be pivotal to sperm function, the technical difficulty of...