The uterorelaxant effect of human chorionic gonadotropin (hCG) is regarded as an important mediator in maintenance of uterine quiescence during pregnancy with clinical potential for tocolysis, the mechanisms of which are unknown. The large conductance calcium-activated K(+) channel (BK(Ca)) is ubiquitously encountered in human uterine tissue and plays a significant role in modulating myometrial cell membrane potential and excitability. The objective of this study was to investigate the involvement of BK(Ca) channel function in the response of human myometrial cells to hCG. Single electrophysiological BK(Ca) channel recordings from freshly dispersed myocytes were obtained in the presence and absence of increasing hCG concentrations. Isometri...
Two populations, Ca(2+)-dependent (BKCa) and Ca(2+)-independent K+ (BK) channels of large conductanc...
The large-conductance voltage- and Ca2+-activated K+ channel (BKCa) is an important regulator of mem...
The contractility of the human uterus is under the fine control of a variety of interacting bioactiv...
The uterorelaxant effect of human chorionic gonadotropin (hCG) is regarded as an important mediator ...
The uterorelaxant effect of human chorionic gonadotropin (hCG) is regarded as an important mediator ...
Large-conductance, calcium-sensitive potassium channels (BK(Ca)) are found at high density in the pr...
Large-conductance, calcium-sensitive potassium channels (BK(Ca)) are found at high density in the pr...
Abstract Background PGF2alpha exerts a significant contractile effect on myometrium and is central t...
Context: beta(3)-Adrenoreceptor modulation in human myometrium during pregnancy is linked functional...
Context: beta(3)-Adrenoreceptor modulation in human myometrium during pregnancy is linked functional...
The conversion of the electrically silent pregnant uterus to highly excitable at term represents a d...
Two populations, Ca(2+)-dependent (BKCa) and Ca(2+)-independent K+ (BK) channels of large conductanc...
Two populations, Ca(2+)-dependent (BKCa) and Ca(2+)-independent K+ (BK) channels of large conductanc...
The conversion of the electrically silent pregnant uterus to highly excitable at term represents a d...
The conversion of the electrically silent pregnant uterus to highly excitable at term represents a d...
Two populations, Ca(2+)-dependent (BKCa) and Ca(2+)-independent K+ (BK) channels of large conductanc...
The large-conductance voltage- and Ca2+-activated K+ channel (BKCa) is an important regulator of mem...
The contractility of the human uterus is under the fine control of a variety of interacting bioactiv...
The uterorelaxant effect of human chorionic gonadotropin (hCG) is regarded as an important mediator ...
The uterorelaxant effect of human chorionic gonadotropin (hCG) is regarded as an important mediator ...
Large-conductance, calcium-sensitive potassium channels (BK(Ca)) are found at high density in the pr...
Large-conductance, calcium-sensitive potassium channels (BK(Ca)) are found at high density in the pr...
Abstract Background PGF2alpha exerts a significant contractile effect on myometrium and is central t...
Context: beta(3)-Adrenoreceptor modulation in human myometrium during pregnancy is linked functional...
Context: beta(3)-Adrenoreceptor modulation in human myometrium during pregnancy is linked functional...
The conversion of the electrically silent pregnant uterus to highly excitable at term represents a d...
Two populations, Ca(2+)-dependent (BKCa) and Ca(2+)-independent K+ (BK) channels of large conductanc...
Two populations, Ca(2+)-dependent (BKCa) and Ca(2+)-independent K+ (BK) channels of large conductanc...
The conversion of the electrically silent pregnant uterus to highly excitable at term represents a d...
The conversion of the electrically silent pregnant uterus to highly excitable at term represents a d...
Two populations, Ca(2+)-dependent (BKCa) and Ca(2+)-independent K+ (BK) channels of large conductanc...
The large-conductance voltage- and Ca2+-activated K+ channel (BKCa) is an important regulator of mem...
The contractility of the human uterus is under the fine control of a variety of interacting bioactiv...