A hypothalamic VMPO-supraoptic vasopressin circuit mediates procalcitonin-induced fluid imbalance
Wei Lin, Tingjun Liu, Jinfeng Huang, Lanxiang Li, Dejiao Xu, Taian Liu, Mengqi Li, Zhen Mao, Yi Wen, Jiajia Guo, Zhonghua Lu, Jin Bao, Robert K. Naumann, Hong Wang
Journal:Cell Reports
IF:7.7
DOI:10.1016/j.celrep.2026.117516
PMID:42284142
Published:2026-06-11
research field:神经科学内分泌学免疫学传染病学生理学
Abstract
Sepsis is a life-threatening condition characterized by infection-induced organ dysfunction, with fluid imbalance and cardiovascular instability as cardinal features. Although circulating procalcitonin (PCT) is widely used as a diagnostic and prognostic marker in sepsis, its pathophysiological role remains poorly understood. Here, we identify a central neural circuit through which PCT directly disrupts fluid homeostasis: systemic PCT crosses the blood-brain barrier, activates calcitonin receptors, and depolarizes the Oprk1-expressing neurons in the ventromedial preoptic nucleus of the hypothalamus (VMPO O prk1 ). In vivo , PCT administration induces polydipsia and polyuria—phenotypes recapitulated by chemogenetic stimulation of VMPO O prk1 neurons. We demonstrate that VMPO O prk1 neurons project to and activate arginine vasopressin (AVP)-expressing neurons in the supraoptic nucleus (SON AVP ), leading to increased blood pressure. Together, our findings define a PCT-sensitive VMPO O prk1 →SON AVP neural circuit that integrates fluid balance and cardiovascular regulation. Our data highlight critical role of the brain in coordinating organ pathophysiology during infection.
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