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Species Sex and Individual Differences in the Vasotocin/Vasopressin System: Relationship to Neurochemical Signaling in the Social Behavior Neural Network

机译:血管毒素/加压素系统中的物种性别和个体差异:与社会行为神经网络中神经化学信号的关系

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摘要

Arginine-vasotocin(AVT)/arginine vasopressin (AVP) are members of the AVP/oxytocin (OT) superfamily of peptides that are involved in the regulation of social behavior, social cognition and emotion. Comparative studies have revealed that AVT/AVP and their receptors are found throughout the “Social Behavior Neural Network” and display the properties expected from a signaling system that controls social behavior (i.e., species, sex and individual differences and modulation by gonadal hormones and social factors). Neurochemical signaling within the SBNN likely involves a complex combination of synaptic mechanisms that co-release multiple chemical signals (e.g., classical neurotransmitters and AVT/AVP as well as other peptides) and non-synaptic mechanisms (i.e., volume transmission). Crosstalk between AVP/OT peptides and receptors within the SBNN is likely. A better understanding of the functional properties of neurochemical signaling in the SBNN will allow for a more refined examination of the relationships between this peptide system and species, sex and individual differences in sociality.
机译:精氨酸血管紧张素(AVT)/精氨酸加压素(AVP)是肽的AVP /催产素(OT)超家族的成员,参与调节社会行为,社会认知和情感。比较研究表明,在整个“社会行为神经网络”中都发现了AVT / AVP及其受体,并显示了控制社会行为(即物种,性别和个体差异以及性腺激素和社交调节)的信号系统的预期特性。因素)。 SBNN中的神经化学信号传导可能涉及突触机制的复杂组合,这些机制共同释放多种化学信号(例如经典神经递质和AVT / AVP以及其他肽)和非突触机制(即体积传递)。 SBNN内AVP / OT肽与受体之间可能发生串扰。更好地了解SBNN中神经化学信号传导的功能特性,可以更精细地检查这种肽系统与物种,性别和社会个体差异之间的关系。

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