Apelin-13 regulates electrical activity in the globus pallidus and induces postural changes in rats
The globus pallidus is the relay nucleus of the basal ganglia, and changes in its electrical activity can cause motor impairment. Apelin-13 is widely distributed in the central and peripheral nervous systems. It has been demonstrated that apelin-13 plays important roles in the regulation of blood pr...
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Wolters Kluwer Medknow Publications
2021-01-01
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doaj-a194e1ad3d6a49308628e95fab90890d2021-03-31T07:34:02ZengWolters Kluwer Medknow PublicationsNeural Regeneration Research1673-53742021-01-0116112264226810.4103/1673-5374.310694Apelin-13 regulates electrical activity in the globus pallidus and induces postural changes in ratsYing WangYan XueCui LiuLei ChenThe globus pallidus is the relay nucleus of the basal ganglia, and changes in its electrical activity can cause motor impairment. Apelin-13 is widely distributed in the central and peripheral nervous systems. It has been demonstrated that apelin-13 plays important roles in the regulation of blood pressure and other non-motor functions. However, its role in motor function has rarely been reported. In the present study, apelin-13 (10 μM/100 μM) was injected into the globus pallidus of rats. The results showed that apelin-13 increased the spontaneous discharges in the majority of pallidal neurons. However, an apelin-13-induced inhibitory effect on the firing rate was also observed in a few pallidal neurons. In postural tests, after the systemic administration of haloperidol, unilateral pallidal injection of apelin-13 caused a contralateral deflection. Together, these findings suggest that apelin-13 regulates the electrical activity of pallidal neurons and thus participates in central motor control in rats. The study was approved by the Animal Ethics Committee of Qingdao University (approval No. 20200615Wistar0451003020) on June 15, 2020.http://www.nrronline.org/article.asp?issn=1673-5374;year=2021;volume=16;issue=11;spage=2264;epage=2268;aulast=Wangapelin-13; basal ganglion; electrophysiology; firing rate; globus pallidus; microinjection; motor behavior; movement disorder |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ying Wang Yan Xue Cui Liu Lei Chen |
spellingShingle |
Ying Wang Yan Xue Cui Liu Lei Chen Apelin-13 regulates electrical activity in the globus pallidus and induces postural changes in rats Neural Regeneration Research apelin-13; basal ganglion; electrophysiology; firing rate; globus pallidus; microinjection; motor behavior; movement disorder |
author_facet |
Ying Wang Yan Xue Cui Liu Lei Chen |
author_sort |
Ying Wang |
title |
Apelin-13 regulates electrical activity in the globus pallidus and induces postural changes in rats |
title_short |
Apelin-13 regulates electrical activity in the globus pallidus and induces postural changes in rats |
title_full |
Apelin-13 regulates electrical activity in the globus pallidus and induces postural changes in rats |
title_fullStr |
Apelin-13 regulates electrical activity in the globus pallidus and induces postural changes in rats |
title_full_unstemmed |
Apelin-13 regulates electrical activity in the globus pallidus and induces postural changes in rats |
title_sort |
apelin-13 regulates electrical activity in the globus pallidus and induces postural changes in rats |
publisher |
Wolters Kluwer Medknow Publications |
series |
Neural Regeneration Research |
issn |
1673-5374 |
publishDate |
2021-01-01 |
description |
The globus pallidus is the relay nucleus of the basal ganglia, and changes in its electrical activity can cause motor impairment. Apelin-13 is widely distributed in the central and peripheral nervous systems. It has been demonstrated that apelin-13 plays important roles in the regulation of blood pressure and other non-motor functions. However, its role in motor function has rarely been reported. In the present study, apelin-13 (10 μM/100 μM) was injected into the globus pallidus of rats. The results showed that apelin-13 increased the spontaneous discharges in the majority of pallidal neurons. However, an apelin-13-induced inhibitory effect on the firing rate was also observed in a few pallidal neurons. In postural tests, after the systemic administration of haloperidol, unilateral pallidal injection of apelin-13 caused a contralateral deflection. Together, these findings suggest that apelin-13 regulates the electrical activity of pallidal neurons and thus participates in central motor control in rats. The study was approved by the Animal Ethics Committee of Qingdao University (approval No. 20200615Wistar0451003020) on June 15, 2020. |
topic |
apelin-13; basal ganglion; electrophysiology; firing rate; globus pallidus; microinjection; motor behavior; movement disorder |
url |
http://www.nrronline.org/article.asp?issn=1673-5374;year=2021;volume=16;issue=11;spage=2264;epage=2268;aulast=Wang |
work_keys_str_mv |
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