Vagal blood volume receptors compensate for haemorrhage and posture change

Z Zhikai Liu S Shan Lu I Isabela A. Haskell M Michael S. Schappe M Maša Josipović S Soohong Min A AbdulRasheed A. Alabi J Jingyi Chi M Minseon Kim S Stephen D. Liberles

Abstract

Abstract Cranial nerves densely innervate the heart and vasculature, with sensory neurons reporting on blood pressure, respiratory gases and tissue damage 1 . The roles of arterial baroreceptors in systemic physiology are well appreciated 2 , but the functions of vagal cardiac mechanoreceptors have been more difficult to parse, in part due to the closed-loop structure of the cardiovascular system. Here we use genetic tools in mice to identify a small group of neurons that are acutely sensitive to circulating blood volume and initiate a reflex that compensates for decreased filling of the heart in an upright posture and haemorrhage. Vagal PIEZO2 neurons form characteristic end-net endings in the heart, lower blood pressure in response to optogenetic stimulation and display blood-volume-dependent responses with every heartbeat that are time-locked to atrial and ventricular systole. Knockout of Piezo2 and/or ablation of PIEZO2 neurons in vagal ganglia eliminates this heartbeat-coupled nerve activity, causes orthostatic hypotension and compromises cardiovascular stability during trauma-induced blood loss. Together, these findings demonstrate that vagal mechanoreceptors monitor the cardiac cycle and initiate a blood-volume-dependent reflex that defends the constancy of circulation.

Article Details

Journal Nature
Volume / Issue Vol. 651, Issue 8107
Published March 26, 2026
Pages 1068-1076
ISSN 0028-0836
Publisher Nature Portfolio

Journal Info

Nature

Nature Portfolio

ISSN: 0028-0836 Health Sciences

Authors (10)

Z

Zhikai Liu

S

Shan Lu

I

Isabela A. Haskell

M

Michael S. Schappe

M

Maša Josipović

S

Soohong Min

A

AbdulRasheed A. Alabi

J

Jingyi Chi

M

Minseon Kim

S

Stephen D. Liberles