PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
April 26, 2019Nature Communications205 citationsOpen Access

Identification of peripheral neural circuits that regulate heart rate using optogenetic and viral vector strategies

PRPradeep S. RajendranRCRosemary C. ChallisCFCharless C. Fowlkes

Key Result

Optogenetic stimulation of cholinergic neurons in the inferior pulmonary vein-ganglionated plexus and noradrenergic neurons in the craniomedial right stellate ganglion specifically modulated heart rate in mice.

Structured PICO

P
Population
Adult male and female mice used in a basic science study to map peripheral parasympathetic and sympathetic neural circuits controlling heart rate.
I
Intervention
Optogenetic stimulation of the vagus nerve and cholinergic neurons in an intrinsic cardiac ganglion
C
Comparator
Electrical stimulation of the vagus nerve
O
Outcome
Heart rate response (change in heart rate and temporal characteristics)surrogate

Optogenetic mapping of cardiac circuits reveals that the heart rate response to optogenetic versus electrical stimulation of the vagus nerve displays different temporal characteristics, providing new insights into the peripheral neural regulation of heart rate.

Limitations

  • Incomplete expression or optical capture could affect results
  • Unable to directly visualize synapses

Abstract

Heart rate is under the precise control of the autonomic nervous system. However, the wiring of peripheral neural circuits that regulate heart rate is poorly understood. Here, we develop a clearing-imaging-analysis pipeline to visualize innervation of intact hearts in 3D and employed a multi-technique approach to map parasympathetic and sympathetic neural circuits that control heart rate in mice. We identify cholinergic neurons and noradrenergic neurons in an intrinsic cardiac ganglion and the stellate ganglia, respectively, that project to the sinoatrial node. We also report that the heart rate response to optogenetic versus electrical stimulation of the vagus nerve displays different temporal characteristics and that vagal afferents enhance parasympathetic and reduce sympathetic tone to the heart via central mechanisms. Our findings provide new insights into neural regulation of heart rate, and our methodology to study cardiac circuits can be readily used to interrogate neural control of other visceral organs.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Rajendran et al. (2019) studied Healthy (neural circuit mapping). Optogenetic stimulation vs. Electrical stimulation / baseline was evaluated on Heart rate response. Optogenetic stimulation of cholinergic neurons in the inferior pulmonary vein-ganglionated plexus and noradrenergic neurons in the craniomedial right stellate ganglion specifically modulated heart rate in mice.

synapsesocial.com/papers/6a2084f82e4175c6d5f41f75https://doi.org/10.1038/s41467-019-09770-1
Ask AI
Helpful
Bookmark
Share
View Full Paper