伏隔核LEAP2的可视化及其在安非他明诱导的运动活动中的作用。

IF 2.9 3区 医学 Q2 NEUROSCIENCES
Seohyeon Lee, Ga Young Yoo, Hyung Shin Yoon, Jeong-Hoon Kim
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引用次数: 0

摘要

伏隔核(NAcc)是大脑奖赏回路中的一个关键区域,介导对安非他明(AMPH)等精神兴奋剂的反应,包括运动活动。这种作用已知通过在该区域表达的生长激素分泌受体(GHSR)的促生长素(ghrelin)增强。最近,肝脏表达的抗菌肽2 (LEAP2)被确定为GHSR的另一种抗胃饥饿素作用的配体。基于其拮抗作用,我们假设LEAP2调节amph诱导的NAcc运动活动。为了验证这一点,我们首先证实了该NAcc中存在LEAP2蛋白,并观察到其荧光信号主要定位于神经元,包括中棘神经元(msn)。然后,我们研究了LEAP2微注射是否会改变amph诱导的运动活动。我们的研究结果表明,LEAP2以剂量依赖的方式抑制急性amph诱导的运动活动。然而,慢性AMPH暴露后,其抑制作用不存在,这表明LEAP2对AMPH诱导的运动活动的影响取决于药物暴露的生理状态。这些结果为了解LEAP2在amph诱导的运动活动中的状态依赖性调节作用提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Visualization of the existence of LEAP2 in the nucleus accumbens and its role in amphetamine-induced locomotor activity.

Visualization of the existence of LEAP2 in the nucleus accumbens and its role in amphetamine-induced locomotor activity.

Visualization of the existence of LEAP2 in the nucleus accumbens and its role in amphetamine-induced locomotor activity.

The nucleus accumbens (NAcc) is a key brain region in reward circuitry, mediating responses to psychostimulants, such as amphetamine (AMPH), including locomotor activity. This effect is known to be enhanced by the orexigenic neuropeptide ghrelin acting through growth hormone-secretagogue receptors (GHSR) expressed in the region. Recently, liver-expressed antimicrobial peptide 2 (LEAP2) was identified as another ligand for GHSR that opposes ghrelin's action. Based on its antagonism, we hypothesized that LEAP2 modulates AMPH-induced locomotor activity in the NAcc. To examine this, we first confirmed the presence of LEAP2 protein in this NAcc and observed that its fluorescent signals were predominantly localized in neurons, including medium spiny neurons (MSNs). We then investigated whether LEAP2 microinjection alters AMPH-induced locomotor activity. Our findings showed that LEAP2 inhibited acute AMPH-induced locomotor activity in a dose-dependent manner. However, its inhibitory effects were absent following chronic AMPH exposure, indicating that the effect of LEAP2 on AMPH-induced locomotor activity varies depending on drug-exposed physiological status. These results provide new insights into a state-dependent regulatory role of LEAP2 in AMPH-induced locomotor activity.

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来源期刊
Molecular Brain
Molecular Brain NEUROSCIENCES-
CiteScore
7.30
自引率
0.00%
发文量
97
审稿时长
>12 weeks
期刊介绍: Molecular Brain is an open access, peer-reviewed journal that considers manuscripts on all aspects of studies on the nervous system at the molecular, cellular, and systems level providing a forum for scientists to communicate their findings. Molecular brain research is a rapidly expanding research field in which integrative approaches at the genetic, molecular, cellular and synaptic levels yield key information about the physiological and pathological brain. These studies involve the use of a wide range of modern techniques in molecular biology, genomics, proteomics, imaging and electrophysiology.
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