断奶后的社会隔离通过抑制弓状Kisspeptin神经元的电活动改变青春期的到来

IF 3.2 2区 医学 Q2 ENDOCRINOLOGY & METABOLISM Neuroendocrinology Pub Date : 2024-01-01 Epub Date: 2024-01-25 DOI:10.1159/000535721
Sami Agus, Yavuz Yavuz, Deniz Atasoy, Bayram Yilmaz
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引用次数: 0

摘要

简介啮齿动物断奶后的社会隔离(PWSI)是生命早期的一种高级社会心理应激模式。一些社会心理应激,如约束和隔离,会破坏幼年和成年期的生殖生理。早期生活应激(ELS)对生殖中枢调控的影响机制有待阐明。我们利用电生理技术,结合对雌雄 Kiss1-Cre 小鼠青春期开始和发情周期的监测,研究了 PWSI 对弓状Kisspeptin(ARCKISS1)神经元功能的影响:方法:雌性小鼠在社会隔离期间通过阴道开口检查来监测青春期的到来。隔离后,用阴道细胞学方法监测雌性小鼠的发情周期。通过高架加迷宫试验测定小鼠的焦虑样行为。在Kiss1-Cre小鼠颅内注射AAV-GFP病毒后,采用膜片钳法研究PWSI对ARCKISS1神经元电生理学的影响:结果:我们发现雄性和雌性离体小鼠均表现出焦虑样行为。PWSI导致阴道开放延迟和发情周期延长。被隔离的雌雄小鼠 ARCKISS1 神经元的自发点燃率明显降低。被隔离的小鼠 ARCKISS1 神经元突触后抑制性电流的峰值振幅更高,而分组饲养的小鼠突触后兴奋性电流的频率更高:这些研究结果表明,PWSI 通过代谢和电生理途径改变了青春期前后的生殖生理。
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Postweaning Social Isolation Alters Puberty Onset by Suppressing Electrical Activity of Arcuate Kisspeptin Neurons.

Introduction: Postweaning social isolation (PWSI) in rodents is an advanced psychosocial stress model in early life. Some psychosocial stress, such as restrain and isolation, disrupts reproductive physiology in young and adult periods. Mechanisms of early-life stress effects on central regulation of reproduction need to be elucidated. We have investigated the effects of PWSI on function of arcuate kisspeptin (ARCKISS1) neurons by using electrophysiological techniques combining with monitoring of puberty onset and estrous cycle in male and female Kiss1-Cre mice.

Methods: Female mice were monitored for puberty onset with vaginal opening examination during social isolation. After isolation, the estrous cycle of female mice was monitored with vaginal cytology. Anxiety-like behavior of mice was determined by an elevated plus maze test. Effects of PWSI on electrophysiology of ARCKISS1 neurons were investigated by the patch clamp method after intracranial injection of AAV-GFP virus into arcuate nucleus of Kiss1-Cre mice after the isolation period.

Results: We found that both male and female isolated mice showed anxiety-like behavior. PWSI caused delay in vaginal opening and extension in estrous cycle length. Spontaneous-firing rates of ARCKISS1 neurons were significantly lower in the isolated male and female mice. The peak amplitude of inhibitory postsynaptic currents to ARCKISS1 neurons was higher in the isolated mice, while frequency of excitatory postsynaptic currents was higher in group-housed mice.

Conclusion: These findings demonstrate that PWSI alters pre- and postpubertal reproductive physiology through metabolic and electrophysiological pathways.

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来源期刊
Neuroendocrinology
Neuroendocrinology 医学-内分泌学与代谢
CiteScore
8.30
自引率
2.40%
发文量
50
审稿时长
6-12 weeks
期刊介绍: ''Neuroendocrinology'' publishes papers reporting original research in basic and clinical neuroendocrinology. The journal explores the complex interactions between neuronal networks and endocrine glands (in some instances also immunecells) in both central and peripheral nervous systems. Original contributions cover all aspects of the field, from molecular and cellular neuroendocrinology, physiology, pharmacology, and the neuroanatomy of neuroendocrine systems to neuroendocrine correlates of behaviour, clinical neuroendocrinology and neuroendocrine cancers. Readers also benefit from reviews by noted experts, which highlight especially active areas of current research, and special focus editions of topical interest.
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