TY - JOUR
T1 - Nesfatin-1 decreases excitability of dopaminergic neurons in the substantia nigra
AU - Li, Chen
AU - Zhang, Fang
AU - Shi, Limin
AU - Zhang, Haoyun
AU - Tian, Zibin
AU - Xie, Junxia
AU - Jiang, Hong
PY - 2014/3
Y1 - 2014/3
N2 - Nesfatin-1, a newly discovered satiety molecule which reduces feeding behavior, has been recognized as a unique regulatory neuropeptide with its multiple roles, both central and peripheral. However, whether it had neuronal modulation effect on dopaminergic neurons is largely unknown. In the present study, using whole-cell patch clamp under current-clamp mode, we investigate the effects of nesfatin-1 on the electrical activity of rat nigral dopaminergic neurons. Nesfatin-1 could produce a resting membrane potential hyperpolarization on the majority of dopaminergic neurons tested. The spike frequency decreased by 23.13 ± 5.93 and 43.20 ± 5.56 % in 5-nM and 10-nM nesfatin-1 groups, respectively. These effects persisted in the presence of ionotropic glutamate and GABA receptor antagonists. Our study suggests that nesfatin-1 postsynaptically inhibits the electrical activity of nigral dopaminergic neurons.
AB - Nesfatin-1, a newly discovered satiety molecule which reduces feeding behavior, has been recognized as a unique regulatory neuropeptide with its multiple roles, both central and peripheral. However, whether it had neuronal modulation effect on dopaminergic neurons is largely unknown. In the present study, using whole-cell patch clamp under current-clamp mode, we investigate the effects of nesfatin-1 on the electrical activity of rat nigral dopaminergic neurons. Nesfatin-1 could produce a resting membrane potential hyperpolarization on the majority of dopaminergic neurons tested. The spike frequency decreased by 23.13 ± 5.93 and 43.20 ± 5.56 % in 5-nM and 10-nM nesfatin-1 groups, respectively. These effects persisted in the presence of ionotropic glutamate and GABA receptor antagonists. Our study suggests that nesfatin-1 postsynaptically inhibits the electrical activity of nigral dopaminergic neurons.
KW - Dopaminergic neurons
KW - Excitability
KW - Nesfatin-1
KW - Substantia nigra
UR - https://www.scopus.com/pages/publications/84894303156
U2 - 10.1007/s12031-013-0169-3
DO - 10.1007/s12031-013-0169-3
M3 - 文章
C2 - 24222376
AN - SCOPUS:84894303156
SN - 0895-8696
VL - 52
SP - 419
EP - 424
JO - Journal of Molecular Neuroscience
JF - Journal of Molecular Neuroscience
IS - 3
ER -