IEEE Trans Neural Syst Rehabil Eng. 2019 Oct;27(10):2034-2043. doi: 10.1109/TNSRE.2019.2942398. Epub 2019 Sep 23.
Recent studies showed that the carotid sinus nerve (CSN) and the sympathetic nervous system (SNS) are overactivated in type 2 diabetes and that restoring the correct CSN neural activity can re-establish the proper metabolism. However, a robust characterization of the relationship between CSN and SNS neural activities and metabolism in type 2 diabetes is still missing. Here, we investigated the relationship between neural activity of CSN and SNS in control rats and in rats with diet-induced type 2 diabetes and the animal condition during metabolic challenges. We found that the diabetic condition can be discriminated on the basis of CSN and SNS neural activities due to a high-frequency shift in both spectra. This shift is suppressed in the SNS in case of CSN denervation, confirming the role of CSN in driving sympathetic overactivation in type 2 diabetes. Interestingly, the Inter-Burst-Intervals (IBIs) calculated from CSN bursts strongly correlate with perturbations in glycaemia levels. This finding, held for both control and diabetic rats, indicates the possibility of detecting metabolic information from neural recordings even in pathological conditions. Our results suggest that CSN activity could serve as a marker to monitor glycaemic alterations and, therefore, it could be used for closed-loop control of CSN neuromodulation. This paves the way to the development of novel and effective bioelectronic therapies for type 2 diabetes.
最近的研究表明,2 型糖尿病患者的颈动脉窦神经 (CSN) 和交感神经系统 (SNS) 过度活跃,恢复 CSN 神经活动的正常可重新建立适当的代谢。然而,CSN 和 SNS 神经活动与 2 型糖尿病代谢之间的关系仍缺乏强有力的特征描述。在这里,我们研究了 CSN 和 SNS 在对照大鼠和饮食诱导的 2 型糖尿病大鼠中的神经活动之间的关系,以及在代谢挑战期间动物的状况。我们发现,由于两种频谱的高频移位,糖尿病状态可以基于 CSN 和 SNS 神经活动来区分。在 CSN 去神经支配的情况下,这种移位被抑制,这证实了 CSN 在驱动 2 型糖尿病中交感神经过度激活中的作用。有趣的是,从 CSN 爆发中计算出的 Inter-Burst-Intervals (IBIs) 与血糖水平的波动强烈相关。这一发现适用于对照和糖尿病大鼠,表明即使在病理条件下,也有可能从神经记录中检测到代谢信息。我们的研究结果表明,CSN 活性可以作为监测血糖变化的标志物,因此可以用于 CSN 神经调节的闭环控制。这为 2 型糖尿病的新型有效生物电子疗法的发展铺平了道路。