PReTI Laboratory, UR 24184, University of Poitiers, Poitiers, France.
Wyss Center for Bio and Neuroengineering, Campus Biotech, Geneva, Switzerland.
Heart Rhythm. 2022 Aug;19(8):1352-1362. doi: 10.1016/j.hrthm.2022.04.012. Epub 2022 Apr 18.
The intrinsic cardiac nervous system (ICNS) refers to clusters of neurons, located within the heart, that participate in the neuronal regulation of cardiac functions and that are involved in the initiation of cardiac arrhythmias. Therefore, deciphering its role in cardiac physiology and physiopathology is mandatory.
The aim of this study was to provide a phenotypic, electrophysiological, and pharmacological characterization of the mouse ICNS, which is still poorly characterized.
Global cardiac innervation and phenotypic diversity were investigated using immunohistochemistry on cleared murine hearts and on tissue sections. The patch clamp technique was used for the electrophysiological and pharmacological characterization of isolated mouse intracardiac neurons.
We have identified the expression of 7 distinct neuronal markers within the mouse ICNS, thus proving the neurochemical diversity of this network. Of note, it was the first time that the existence of neurons expressing the calcium-binding protein calbindin, neuropeptide Y, and cocaine and amphetamine regulated transcript peptide was described in the mouse. Electrophysiology studies also revealed the existence of 4 different neuronal populations on the basis of their electrical behavior. Finally, we showed that these neurons can be modulated by several neuromodulators.
This study showed that the mouse ICNS presents a molecular and functional complexity similar to other species and is therefore a suitable model to decipher the role of individual neuronal subtypes regarding the modulation of cardiac function and the initiation of cardiac arrhythmias.
固有心脏神经系统(ICNS)是指位于心脏内的神经元簇,参与心脏功能的神经元调节,并参与心律失常的发生。因此,解析其在心脏生理学和病理生理学中的作用是必不可少的。
本研究旨在对小鼠 ICNS 进行表型、电生理和药理学特征分析,因为目前对其了解甚少。
使用清除后的鼠心和组织切片上的免疫组织化学方法研究心脏的整体神经支配和表型多样性。使用膜片钳技术对分离的小鼠心内神经元进行电生理和药理学特征分析。
我们在小鼠 ICNS 中鉴定出 7 种不同的神经元标记物,从而证明了该网络的神经化学多样性。值得注意的是,这是首次在小鼠中描述表达钙结合蛋白钙调蛋白、神经肽 Y 和可卡因-安非他明调节转录肽的神经元的存在。电生理学研究还根据其电生理特性揭示了 4 种不同的神经元群体的存在。最后,我们表明这些神经元可以被多种神经调质调节。
本研究表明,小鼠 ICNS 具有与其他物种相似的分子和功能复杂性,因此是一个合适的模型,可以解析个体神经元亚型在调节心脏功能和引发心律失常方面的作用。