环境富集对NSY小鼠自主神经活动的影响

Kentaro Kaneko, Akitoshi Chikamoto, Julia Chu-Ning Hsu, Ryota Tochinai, S. Sekizawa, M. Yamamoto, M. Kuwahara
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引用次数: 7

摘要

环境富集(EE)可以减轻实验动物的焦虑和压力,但对其对自主神经活动的影响知之甚少,尤其是在疾病动物模型中。糖尿病(DM)与心血管自主神经功能障碍有关,其特征是静息心率较高,心率变异性(HRV)较低。我们假设EE可以增强2型糖尿病小鼠的副交感神经活性,同时减少疾病进展。将遥测发射器植入NSY小鼠体内,以连续记录心电图(ECG)。动物被关在有或没有巢箱的笼子里作为EE。使用HRV的功率谱分析来评估自主神经活动。四周的EE可以增加高频(HF)功率,但在没有EE的情况下没有观察到变化。尽管动物在48周大时表现出糖耐量受损,但在对照组中观察到恶化的情况。这些结果表明,EE对于实验动物的长期饲养是必要的,并且可以通过增强副交感神经活动来降低NSY小鼠糖耐量受损的风险。在未来,人们需要增加副交感神经的活动,无论是什么方法,都能防止糖尿病恶化。
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Effects of environmental enrichment on autonomic nervous activity in NSY mice
Environmental enrichment (EE) can reduce anxiety and stress in experimental animals, while little is known about the influence on autonomic nervous activity especially in disease animal models. Diabetes mellitus (DM) is associated with cardiovascular autonomic dysfunction, which can be characterized by a higher resting heart rate and a lower heart rate variability (HRV). We hypothesized that EE can enhance parasympathetic nervous activity while reducing disease progression in type 2 diabetic mice. A telemetry transmitter was implanted in NSY mice to continuously record electrocardiograms (ECG). Animals were kept in a cage with or without a nest box as EE. The autonomic nervous activity was evaluated using power spectral analysis of HRV. Four weeks of EE could increase high frequency (HF) power, but no change was observed in the absence of EE. Although animals showed impaired glucose tolerance at 48 weeks of age regardless of EE, a worsen case was observed in control. These results indicate that EE can be necessary for long-term housing of experimental animals and may reduce the risk of impaired glucose tolerance in NSY mice by enhancing parasympathetic nervous activity. In future, it is demanded whether increasing parasympathetic nervous activity, whatever the method is, can prevent diabetes from worsening.
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