Key result
Baroreceptors modulate non-cardiovascular functions including pain, sleep, and cognition alongside cardiovascular homeostasis.
Why the study?
There is increasing recognition that baroreceptors modulate non-cardiovascular physiological responses, including pain perception, sleep, consciousness, and cognition, beyond their established role in cardiovascular homeostasis.
Understanding baroreceptor-mediated effects on cardiac and extra-cardiac autonomic activities may help identify novel treatment modalities for conditions like chronic pain, sleep disorders, and cognitive impairment.
May support baroreceptor-targeted therapies for pain and sleep disorders; leaves open confirmation in interventional trials.
Baroreceptors are mechanosensitive elements of the peripheral nervous system that maintain cardiovascular homeostasis by coordinating the responses to external and internal environmental stressors. While it is well known that carotid and cardiopulmonary baroreceptors modulate sympathetic vasomotor and parasympathetic cardiac neural autonomic drive, to avoid excessive fluctuations in vascular tone and maintain intravascular volume, there is increasing recognition that baroreceptors also modulate a wide range of non-cardiovascular physiological responses via projections from the nucleus of the solitary tract to regions of the central nervous system, including the spinal cord. These projections regulate pain perception, sleep, consciousness, and cognition. In this article, we summarize the physiology of baroreceptor pathways and responses to baroreceptor activation with an emphasis on the mechanisms influencing cardiovascular function, pain perception, consciousness, and cognition. Understanding baroreceptor-mediated effects on cardiac and extra-cardiac autonomic activities will further our understanding of the pathophysiology of multiple common clinical conditions, such as chronic pain, disorders of consciousness (e.g., abnormalities in sleep-wake), and cognitive impairment, which may result in the identification and implementation of novel treatment modalities.
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Suárez-Roca et al. (2021) conducted a review in Baroreceptor physiology. Baroreceptors modulate a wide range of non-cardiovascular physiological responses, including pain perception, sleep, consciousness, and cognition, in addition to cardiovascular homeostasis.
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