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Astrocytes modulate brainstem respiratory rhythm-generating circuits and determine exercise capacity

机译:星状细胞调节脑干呼吸节律产生回路并确定运动能力

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摘要

Astrocytes are implicated in modulation of neuronal excitability and synaptic function, but it remains unknown if these glial cells can directly control activities of motor circuits to influence complex behaviors in vivo. This study focused on the vital respiratory rhythm-generating circuits of the preBötzinger complex (preBötC) and determined how compromised function of local astrocytes affects breathing in conscious experimental animals (rats). Vesicular release mechanisms in astrocytes were disrupted by virally driven expression of either the dominant-negative SNARE protein or light chain of tetanus toxin. We show that blockade of vesicular release in preBötC astrocytes reduces the resting breathing rate and frequency of periodic sighs, decreases rhythm variability, impairs respiratory responses to hypoxia and hypercapnia, and dramatically reduces the exercise capacity. These findings indicate that astrocytes modulate the activity of CNS circuits generating the respiratory rhythm, critically contribute to adaptive respiratory responses in conditions of increased metabolic demand and determine the exercise capacity.
机译:星形胶质细胞参与神经元兴奋性和突触功能的调节,但尚不清楚这些胶质细胞是否可以直接控制运动回路的活动以影响体内复杂行为。这项研究集中于preBötzinger复合体(preBötC)的重要呼吸节律产生回路,并确定了局部星形胶质细胞功能受损如何影响有意识的实验动物(大鼠)的呼吸。病毒驱动的显性阴性SNARE蛋白或破伤风毒素轻链的表达破坏了星形胶质细胞中的囊泡释放机制。我们显示,在preBötC星形胶质细胞中,水泡释放的阻滞降低了静息呼吸的频率和周期性叹气的频率,降低了心律变异性,损害了对缺氧和高碳酸血症的呼吸反应,并显着降低了运动能力。这些发现表明,星形胶质细胞调节产生呼吸节律的中枢神经系统回路的活动,在代谢需求增加的情况下,对适应性呼吸反应起关键作用,并决定运动能力。

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