TY - JOUR
T1 - Activation of presynaptic 5-HT3 receptors facilitates glutamatergic synaptic inputs to area postrema neurons in rat brain slices
AU - Funahashi, Makoto
AU - Mitoh, Y.
AU - Matsuo, Ryuji
PY - 2004/10
Y1 - 2004/10
N2 - Whole-cell voltage-clamp recordings were performed to investigate the serotonergic modulation of neurotransmitter release onto rat area postrema neurons in vitro. The bath application of serotonin (5-HT; 50 μM) or phenylbiguanide (PBA; 50 μM), a potent 5-HT3 receptor agonist, increased the frequency of spontaneous excitatory postsynaptic currents (sEPSCs) or miniature EPSCs (mEPSCs) in 35 of 83 neurons (42%). These increases occurred in all electrophysiological cell classes. No cells exhibited a decrease in EPSC frequency. The majority of responding cells showed no inward currents during the application of serotonergic agonists (n = 34/35). However, the amplitude of MEPSCS was increased in 11/11 cells with 5-HT or 3/11 cells with PBA. 1CS-205,930, a potent 5-HT3 receptor antagonist, markedly suppressed the 5-HT-induced facilitation of SEPSCS (n = 5) or MEPSCS (n = 5). An increase in the frequency of MEPSCS after PBA exposure was found, even with media containing Cd2+ (50 μM) or zero Ca2+. MEPSCS and evoked EPSCs were completely blocked in media containing the non-NMDA ionotropic receptor antagonist, CNQX (10 μM), indicating that EPSCs were glutamate events. These results suggest that glutamate release is increased in the area postrema by presynaptic 5-HT3 receptor activation. Furthermore, we present evidence that 5-HT3 receptor activation may be able to directly release glutamate from terminals, bypassing a requirement for voltage-dependent calcium entry into terminals. Such a mechanism may contribute to the chemosensitive function of area postrema neurons.
AB - Whole-cell voltage-clamp recordings were performed to investigate the serotonergic modulation of neurotransmitter release onto rat area postrema neurons in vitro. The bath application of serotonin (5-HT; 50 μM) or phenylbiguanide (PBA; 50 μM), a potent 5-HT3 receptor agonist, increased the frequency of spontaneous excitatory postsynaptic currents (sEPSCs) or miniature EPSCs (mEPSCs) in 35 of 83 neurons (42%). These increases occurred in all electrophysiological cell classes. No cells exhibited a decrease in EPSC frequency. The majority of responding cells showed no inward currents during the application of serotonergic agonists (n = 34/35). However, the amplitude of MEPSCS was increased in 11/11 cells with 5-HT or 3/11 cells with PBA. 1CS-205,930, a potent 5-HT3 receptor antagonist, markedly suppressed the 5-HT-induced facilitation of SEPSCS (n = 5) or MEPSCS (n = 5). An increase in the frequency of MEPSCS after PBA exposure was found, even with media containing Cd2+ (50 μM) or zero Ca2+. MEPSCS and evoked EPSCs were completely blocked in media containing the non-NMDA ionotropic receptor antagonist, CNQX (10 μM), indicating that EPSCs were glutamate events. These results suggest that glutamate release is increased in the area postrema by presynaptic 5-HT3 receptor activation. Furthermore, we present evidence that 5-HT3 receptor activation may be able to directly release glutamate from terminals, bypassing a requirement for voltage-dependent calcium entry into terminals. Such a mechanism may contribute to the chemosensitive function of area postrema neurons.
KW - 5-HT receptor
KW - Area postrema
KW - Brain slice
KW - Glutamatergic transmission
KW - Presynaptic terminal
KW - Whole cell recording
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U2 - 10.1358/mf.2004.26.8.863726
DO - 10.1358/mf.2004.26.8.863726
M3 - Article
C2 - 15605121
AN - SCOPUS:9644276829
SN - 0379-0355
VL - 26
SP - 615
EP - 622
JO - Methods and Findings in Experimental and Clinical Pharmacology
JF - Methods and Findings in Experimental and Clinical Pharmacology
IS - 8
ER -