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1 expression of Na+/2HCO3- co-transporters, or voltage-dependent Na+ channels.
2 on sGC but is explained by a novel action on voltage-dependent Na(+) channels.
3 n (mu-CTX) specifically occludes the pore of voltage-dependent Na(+) channels.
4 xtracellular GABA was normalized by blocking voltage-dependent Na+ channels and provided increased to
5                                     Although voltage-dependent Na(+) channels are abundantly expresse
6                                              Voltage-dependent Na(+) channels are crucial for electri
7                                              Voltage-dependent Na+ channels are one potential target
8 el cDNA from human brain which encodes a non-voltage-dependent Na+ channel (BNC1).
9 dose dependently elevated NAc glutamate in a voltage-dependent Na+ channel-dependent manner.
10  domains) and asymmetric architecture of the voltage-dependent Na+ channel has hindered determination
11           Recovery from fast inactivation in voltage-dependent Na+ channels is associated with a slow
12 in GPe neurons are not fully understood, but voltage-dependent Na+ channels must play an important ro
13       Two of these functionally expressed as voltage-dependent Na(+) channels (Na(V)PZ from Paracoccu
14                 Dendritic expression of fast voltage-dependent Na(+) channels (NaF channels) can enha
15              Upon prolonged depolarizations, voltage-dependent Na+ channels open and subsequently ina
16                  The cytoplasmic side of the voltage-dependent Na+ channel pore is putatively formed
17  of Ranvier, colocalizing with ankyrin-G and voltage-dependent Na+ channels throughout the CNS and PN
18 n of the myocardium, which causes a block of voltage-dependent Na+ channels throughout the myocardial

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