S. Marinelli et al., Pharmacological identification of the K+ currents mediating the hypoglycemic hyperpolarization of rat midbrain dopaminergic neurones, NEUROPHARM, 39(6), 2000, pp. 1021-1028
Hypoglycemia (zero glucose) initially depolarized the membrane and increase
d the spontaneous firing of rat midbrain dopaminergic neurones (more than 5
0%) intracellularly recorded in an in vitro slice preparation. Under single
-electrode voltage-clamp mode (V-h -55 mV), this transient phase correlated
with an inward current of -18 pA. In all the cells tested (n=30), an inhib
ition fully developed over 16.9 min of hypoglycemia and was associated with
a hyperpolarization of the membrane (7.7 mV) or outward current (95.6 pA).
Upon re-application of a control solution (glucose 10 mM) a rebound hyperp
olarization/outward current developed. The depression of firing was only se
en when the artificial cerebrospinal fluid (ACSF) contained less than 1 mM
glucose. In addition, the period of time required to block the spontaneous
activity decreased, by diminishing the extracellular concentration of gluco
se from 1 to 0 mM. The hypoglycemia-induced outward current was associated
with an increase in membrane conductance and reversed polarity at -100.4 mV
, close to the reversal potential of K+. The post-hypoglycemic outward curr
ent was not associated with an increase in membrane conductance and did not
reverse. The K+-ATP channel blockers, tolbutamide (300 mu M-1 mM) and glib
enclamide (3-30 mu M) reduced the hypoglycemia-induced inhibition. In addit
ion, the blocker of the Ca++-activated K+-channels, charybdotoxin (100-400
nM) partially counteracted the hypoglycemic hyperpolarization. Furthermore,
barium (100-300 mu M) fully antagonized the hypoglycemia-induced inhibitio
n. The post-hypoglycemic hyperpolarization/outward current was not observed
in cells treated with the Na+/K+ ATPase pump inhibitor strophanthidin (1-3
mu M) Our data suggest that midbrain dopaminergic cells respond to glucose
deprivation with a hyperpolarization generated by the opening of several K
+ channels (sulphonylurea-sensitive, charybdotoxin-sensitive and sulphonylu
rea and charybdotoxin-insensitive) and by the activation of the Na+/K+ ATPa
se pump after the hypoglycemic period. (C) 2000 Published by Elsevier Scien
ce Ltd. All rights reserved.