Mahafuza Aktar, Ava Cardarelli, Victor May, Sayamwong E Hammack
{"title":"终纹床核中表达pac1的神经元的化学发生调节改变了雄性小鼠焦虑相关行为。","authors":"Mahafuza Aktar, Ava Cardarelli, Victor May, Sayamwong E Hammack","doi":"10.1037/bne0000632","DOIUrl":null,"url":null,"abstract":"<p><p>Pituitary adenylate cyclase-activating polypeptide (PACAP, <i>ADCYAP1</i>) is a highly conserved neuropeptide that plays essential roles in numerous physiological functions, and central PACAP signaling has been associated with mechanisms regulating stress-induced psychopathologies. PACAP binds to several receptor subtypes, including PAC1 (<i>ADCYAP1R1</i>), VPAC1 (<i>VIPR1</i>), and VPAC2 (<i>VIPR2</i>), to activate several signaling cascades that can alter neuronal excitability and enhance indices of neuroplasticity, and much of our prior work has suggested that the anxiogenic effects of bed nucleus of the stria terminalis (BNST) PACAP depend on the activation of PAC1 receptors. To complement our previous work that evaluated the roles of BNST PACAP expression and secretion in anxiety-related responses, we employed in the current work chemogenetic approaches in male PAC1-Ires-Cre mice to directly and specifically modulate the activities of BNST PAC1 receptor-expressing neurons. Inhibition of BNST PAC1 receptor neuron activity with clozapine-N-oxide significantly increased open arm exploration without reducing total locomotor activity; conversely, stimulating BNST PAC1 receptor function significantly reduced open arm exploratory activities. In sum, these data are consistent with our prior work suggesting a key role for BNST PACAP receptor activation in anxiety and stress; further, these observations importantly clarify the neural circuits involved in anxiety-like behaviors. (PsycInfo Database Record (c) 2025 APA, all rights reserved).</p>","PeriodicalId":8739,"journal":{"name":"Behavioral neuroscience","volume":" ","pages":""},"PeriodicalIF":1.5000,"publicationDate":"2025-09-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Chemogenetic modulation of PAC1-expressing neurons in the bed nucleus of the stria terminalis (BNST) alters anxiety-related behaviors in male mice.\",\"authors\":\"Mahafuza Aktar, Ava Cardarelli, Victor May, Sayamwong E Hammack\",\"doi\":\"10.1037/bne0000632\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Pituitary adenylate cyclase-activating polypeptide (PACAP, <i>ADCYAP1</i>) is a highly conserved neuropeptide that plays essential roles in numerous physiological functions, and central PACAP signaling has been associated with mechanisms regulating stress-induced psychopathologies. PACAP binds to several receptor subtypes, including PAC1 (<i>ADCYAP1R1</i>), VPAC1 (<i>VIPR1</i>), and VPAC2 (<i>VIPR2</i>), to activate several signaling cascades that can alter neuronal excitability and enhance indices of neuroplasticity, and much of our prior work has suggested that the anxiogenic effects of bed nucleus of the stria terminalis (BNST) PACAP depend on the activation of PAC1 receptors. To complement our previous work that evaluated the roles of BNST PACAP expression and secretion in anxiety-related responses, we employed in the current work chemogenetic approaches in male PAC1-Ires-Cre mice to directly and specifically modulate the activities of BNST PAC1 receptor-expressing neurons. Inhibition of BNST PAC1 receptor neuron activity with clozapine-N-oxide significantly increased open arm exploration without reducing total locomotor activity; conversely, stimulating BNST PAC1 receptor function significantly reduced open arm exploratory activities. In sum, these data are consistent with our prior work suggesting a key role for BNST PACAP receptor activation in anxiety and stress; further, these observations importantly clarify the neural circuits involved in anxiety-like behaviors. 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引用次数: 0
摘要
垂体腺苷酸环化酶激活多肽(垂体腺苷酸环化酶激活多肽,ADCYAP1)是一种高度保守的神经肽,在许多生理功能中起重要作用,中枢PACAP信号通路与应激诱导的精神病理调节机制有关。PACAP与几种受体亚型结合,包括PAC1 (ADCYAP1R1)、VPAC1 (VIPR1)和VPAC2 (VIPR2),激活几种信号级联反应,从而改变神经元的兴奋性并增强神经可塑性指标,我们之前的许多工作表明,终纹床核PACAP的焦虑作用依赖于PAC1受体的激活。为了补充我们之前评估BNST PACAP表达和分泌在焦虑相关反应中的作用的工作,我们在目前的工作中使用雄性PAC1- ires - cre小鼠的化学发生方法来直接和特异性调节BNST PAC1受体表达神经元的活动。氯氮平- n -氧化物抑制BNST PAC1受体神经元活性可显著增加张开臂探查,但不降低总运动活性;相反,刺激BNST PAC1受体功能会显著降低张开臂的探索活动。总之,这些数据与我们之前的工作一致,表明BNST PACAP受体激活在焦虑和压力中起关键作用;此外,这些观察结果重要地阐明了与类焦虑行为有关的神经回路。(PsycInfo Database Record (c) 2025 APA,版权所有)。
Chemogenetic modulation of PAC1-expressing neurons in the bed nucleus of the stria terminalis (BNST) alters anxiety-related behaviors in male mice.
Pituitary adenylate cyclase-activating polypeptide (PACAP, ADCYAP1) is a highly conserved neuropeptide that plays essential roles in numerous physiological functions, and central PACAP signaling has been associated with mechanisms regulating stress-induced psychopathologies. PACAP binds to several receptor subtypes, including PAC1 (ADCYAP1R1), VPAC1 (VIPR1), and VPAC2 (VIPR2), to activate several signaling cascades that can alter neuronal excitability and enhance indices of neuroplasticity, and much of our prior work has suggested that the anxiogenic effects of bed nucleus of the stria terminalis (BNST) PACAP depend on the activation of PAC1 receptors. To complement our previous work that evaluated the roles of BNST PACAP expression and secretion in anxiety-related responses, we employed in the current work chemogenetic approaches in male PAC1-Ires-Cre mice to directly and specifically modulate the activities of BNST PAC1 receptor-expressing neurons. Inhibition of BNST PAC1 receptor neuron activity with clozapine-N-oxide significantly increased open arm exploration without reducing total locomotor activity; conversely, stimulating BNST PAC1 receptor function significantly reduced open arm exploratory activities. In sum, these data are consistent with our prior work suggesting a key role for BNST PACAP receptor activation in anxiety and stress; further, these observations importantly clarify the neural circuits involved in anxiety-like behaviors. (PsycInfo Database Record (c) 2025 APA, all rights reserved).