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Endogenous vasopressin, innate anxiety, and the emission of pro-social 50-kHz ultrasonic vocalizations during social play behavior in juvenile rats

机译:内源性加压素,先天性焦虑以及青少年大鼠社交活动中社交前50 kHz超声发声的产生

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Although the involvement of the neuropeptide arginine vasopressin (AVP) in rodent social interaction is already extensively characterized, little is known about its role in social communication. Rats communicate in the ultrasonic range by means of ultrasonic vocalizations (USV). Depending on developmental stage and affective state, rats emit various distinct types of USV, with appetitive 50-kHz USV being induced by positive social interactions, like juvenile social play, probably serving an affiliative communicative function, namely to (re)establish or induce social proximity. In rats and mice selectively bred for low (LAB) and high (HAB) anxietyrelated behavior, the emission of isolation-induced distress USV during maternal deprivation as pups correlates with innate high levels of hypothalamic AVP availability. Moreover, male LAB and HAB rats express deficits in social approach towards conspecifics, together with high and/or abnormal forms of aggression when confronted with harmless opponents, possibly due to a lack of social communication skills. The aim of this study was therefore (1) to investigate and characterize social play behavior and concomitant pro-social 50-kHz USV emission in male and female, juvenile LAB and HAB rats and to compare them to non-selected Wistar (NAB) rats; and (2) to link these findings pharmacologically to the central AVP system via applying an AVP la receptor (V1aR) antagonist (0.75 mu g; Manning compound) or synthetic AVP (1 ng) into the lateral ventricle of male juvenile NAB rats. Our results show that reduced social play behavior in highly anxious male and female, juvenile HAB rats is accompanied by low amounts of pro-social 50-kHzUSV, as compared to respective LAB and NAB rats, possibly reflecting a lack of positive affective states in expectation of or following social interactions in these individuals. Secondly, although synthetic AVP did not alter social play behavior and pro-social 50-kHz USV, we demonstrated for the first time that a blockade of the central AVP system not only reduces juvenile social play behavior, but at the same time pro-social 50-kHz USV emission rates, indicating an involvement of the social neuropeptide in regulating affiliative communication in rodents. (C) 2015 Elsevier Ltd. All rights reserved.
机译:尽管已经广泛地描述了神经肽精氨酸加压素(AVP)在啮齿动物社交中的参与,但对其在社交中的作用知之甚少。大鼠通过超声波发声(USV)在超声波范围内进行交流。根据发育阶段和情感状态,大鼠会发出各种不同类型的USV,而积极的社会互动(如青少年社交活动)则可能诱发具有竞争性的50 kHz USV,这可能起到辅助沟通功能,即(重新)建立或诱导社交接近。在为低(LAB)和高(HAB)焦虑相关行为而选择性繁殖的大鼠和小鼠中,母鼠剥夺幼崽期间隔离诱发的窘迫USV的排放与先天高水平的下丘脑AVP的利用能力相关。此外,雄性LAB和HAB大鼠在面对无害的对手时会表现出对特定物种的社交方式的缺陷,以及高度和/或异常的侵略形式,这可能是由于缺乏社交沟通技巧所致。因此,本研究的目的是(1)研究和表征雄性,雌性,幼年LAB和HAB大鼠的社交行为和伴随的亲社会50 kHz USV发射,并将其与未选择的Wistar(NAB)大鼠进行比较; (2)通过将AVP 1a受体(V1aR)拮抗剂(0.75μg; Manning化合物)或合成AVP(1 ng)应用于雄性NAB幼鼠的侧脑室,将这些发现与药理学联系起来。我们的结果表明,与单独的LAB和NAB大鼠相比,高度焦虑的雄性和雌性幼年HAB大鼠社交行为减少,伴随着少量的亲社会50-kHzUSV,这可能反映了预期中缺乏积极的情感状态这些人中的社交互动或与之互动。其次,尽管合成AVP并没有改变社交游戏行为和亲社交50 kHz USV,但我们首次证明了对中央AVP系统的封锁不仅减少了青少年的社交游戏行为,而且同时降低了亲社交行为50 kHz USV发射速率,表明社交神经肽参与了啮齿动物的亲缘关系调节。 (C)2015 Elsevier Ltd.保留所有权利。

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