Department of Health Sciences and Sport Medicine, Hungarian University of Sports Science, 1123 Budapest, Hungary.
Int J Mol Sci. 2023 Apr 11;24(8):7038. doi: 10.3390/ijms24087038.
Heart rate variability is a useful measure for monitoring the autonomic nervous system. Heart rate variability measurements have gained significant demand not only in science, but also in the public due to the fairly low price and wide accessibility of the Internet of things. The scientific debate about one of the measures of heart rate variability, i.e., what low-frequency power is reflecting, has been ongoing for decades. Some schools reason that it represents the sympathetic loading, while an even more compelling reasoning is that it measures how the baroreflex modulates the cardiac autonomic outflow. However, the current opinion manuscript proposes that the discovery of the more precise molecular characteristics of baroreceptors, i.e., that the Piezo2 ion channel containing vagal afferents could invoke the baroreflex, may possibly resolve this debate. It is long known that medium- to high-intensity exercise diminishes low-frequency power to almost undetectable values. Moreover, it is also demonstrated that the stretch- and force-gated Piezo2 ion channels are inactivated in a prolonged hyperexcited state in order to prevent pathological hyperexcitation. Accordingly, the current author suggests that the almost undetectable value of low-frequency power at medium- to high-intensity exercise reflects the inactivation of Piezo2 from vagal afferents in the baroreceptors with some Piezo1 residual activity contribution. Consequently, this opinion paper highlights how low-frequency power of the heart rate variability could represent the activity level of Piezo2 in baroreceptors.
心率变异性是监测自主神经系统的一种有用方法。由于物联网的价格相当低且广泛普及,心率变异性测量不仅在科学界,而且在公众中都得到了广泛的需求。关于心率变异性的一个测量指标,即低频功率反映的内容,科学界已经争论了几十年。一些学派认为它代表了交感神经的负荷,而更有说服力的观点是,它衡量了压力反射如何调节心脏自主神经输出。然而,目前的观点文章提出,对压力感受器的更精确的分子特征的发现,即包含迷走传入的 Piezo2 离子通道可能引发压力反射,可能解决这一争论。人们早就知道,中高强度运动将低频功率降低到几乎无法检测的水平。此外,还证明了在长时间的过度兴奋状态下,伸展和力门控的 Piezo2 离子通道失活,以防止病理性兴奋过度。因此,作者建议,中高强度运动时低频功率几乎无法检测到,这反映了压力感受器中的 Piezo2 失活,而 Piezo1 仍有一定的活性。因此,本观点文章强调了心率变异性的低频功率如何代表压力感受器中 Piezo2 的活性水平。