AbstractWe investigated whether cell alkalinization via activation of Na+/H+ exchange is involved in the stimulation of Na+ conductance and Na+,K+-ATPase in rat hepatocytes under hypertonic stress. Osmolarity was increased from 300 to 400 mOsm/l at constant extracellular pH (7.4), whereas osmotically induced cell alkalinization (0.3 pH units in HCO3−-free solutions) was mimicked by increasing extracellular pH from 7.4 to 7.8 in normosmotic solutions. In intracellular recordings with conventional and ion-sensitive microelectrodes, hypertonic stress led to a transient shift in the voltage response to low Na+ solutions (95% in exchange for choline) by −4.3±0.8 mV and a continuous increase in cell Na+ from 13.7±1.8 to 18.6±3.0 mmol/l within 8 m...
A stable intracellular ionic environment is necessary for hepatocytes to function normally. Thus, du...
Amiloride-sensitive Na+-H+ exchange has been identified in basolateral membrane vesicles from rat li...
The model of "chemical hypoxia" with KCN plus iodoacetic acid mimics the ATP depletion and reductive...
AbstractWe investigated whether cell alkalinization via activation of Na+/H+ exchange is involved in...
We studied the effects of hypertonic stress on ion transport and cell volume regulation (regulatory ...
We studied the effects of hypertonic stress on ion transport and cell volume regulation (regulatory ...
We studied the effects of hypertonic stress on ion transport and cell volume regulation (regulatory ...
Recent observations suggest that hepatocytes exhibit basolateral electrogenic Na+-coupled HCO3- tran...
Recent observations suggest that hepatocytes exhibit basolateral electrogenic Na+-coupled HCO3- tran...
Recent observations suggest that hepatocytes exhibit basolateral electrogenic Na+-coupled HCO3- tran...
Recent observations suggest that hepatocytes exhibit basolateral electrogenic Na+-coupled HCO3- tran...
Endocytic vesicles are acidified by an electrogenic proton pump and a parallel chloride conductance;...
AbstractUnder hypertonic conditions, solitary rat hepatocytes in primary culture shrink and subseque...
Amiloride-sensitive Na+-H+ exchange has been identified in basolateral membrane vesicles from rat li...
A stable intracellular ionic environment is necessary for hepatocytes to function normally. Thus, du...
A stable intracellular ionic environment is necessary for hepatocytes to function normally. Thus, du...
Amiloride-sensitive Na+-H+ exchange has been identified in basolateral membrane vesicles from rat li...
The model of "chemical hypoxia" with KCN plus iodoacetic acid mimics the ATP depletion and reductive...
AbstractWe investigated whether cell alkalinization via activation of Na+/H+ exchange is involved in...
We studied the effects of hypertonic stress on ion transport and cell volume regulation (regulatory ...
We studied the effects of hypertonic stress on ion transport and cell volume regulation (regulatory ...
We studied the effects of hypertonic stress on ion transport and cell volume regulation (regulatory ...
Recent observations suggest that hepatocytes exhibit basolateral electrogenic Na+-coupled HCO3- tran...
Recent observations suggest that hepatocytes exhibit basolateral electrogenic Na+-coupled HCO3- tran...
Recent observations suggest that hepatocytes exhibit basolateral electrogenic Na+-coupled HCO3- tran...
Recent observations suggest that hepatocytes exhibit basolateral electrogenic Na+-coupled HCO3- tran...
Endocytic vesicles are acidified by an electrogenic proton pump and a parallel chloride conductance;...
AbstractUnder hypertonic conditions, solitary rat hepatocytes in primary culture shrink and subseque...
Amiloride-sensitive Na+-H+ exchange has been identified in basolateral membrane vesicles from rat li...
A stable intracellular ionic environment is necessary for hepatocytes to function normally. Thus, du...
A stable intracellular ionic environment is necessary for hepatocytes to function normally. Thus, du...
Amiloride-sensitive Na+-H+ exchange has been identified in basolateral membrane vesicles from rat li...
The model of "chemical hypoxia" with KCN plus iodoacetic acid mimics the ATP depletion and reductive...