Aug 2026· Frontiers in Neural Circuits· Vol 20· 0 citations· 47 references
Medicine
TL;DR
It is demonstrated that the vagus nerve (VN), a principal afferent pathway for interoceptive signaling, also affects PVT neuronal activity in mice, and plays a pivotal role in linking vagus nerve-related bodily states to emotional responses.
Abstract
Interoceptive signals reflecting internal bodily states influence emotional processing. The paraventricular thalamus (PVT) constitutes a key node within the interoceptive network, monitoring circulating humoral factors in the ventricles, and is thus considered to link interoceptive signals to emotion-related behaviors. Here, we demonstrate that the vagus nerve (VN), a principal afferent pathway for interoceptive signaling, also affects PVT neuronal activity in mice. Left vagus nerve stimulation (VNS) induced pronounced c-Fos expression in PVT neurons and elicited transient increases and decreases in neuronal spike rates across all PVT subregions. These VNS-responsive neuronal populations were distinct from those exhibiting transient-to-sustained delayed responses following lipopolysaccharide injection after vagotomy, which selectively activates VN-independent pathways, including humoral factors. VNS-responsive PVT neurons projected to limbic structures and modulated anxiety-like behavior. Taken together, these findings demonstrate that PVT neuronal populations integrate and relay interoceptive signals across multiple pathways and timescales, thereby playing a pivotal role in linking vagus nerve-related bodily states to emotional responses.
The central medial thalamic nucleus (CM), a key component of the thalamic intralaminar nuclei, receives nociceptive inputs from the lateral parabrachial nucleus and is implicated in pain processing. However, the specific neuronal subtypes and downstream pathways that mediate these functions remain poorly defined. Here,...
ABSTRACT Objective The paraventricular nucleus of the hypothalamus (PVN) is a central hub integrating neuroendocrine, autonomic, and behavioral responses. Corticotropin‐releasing hormone (CRH) neurons in the PVN (PVNCRH) play a pivotal role in stress responses, anxiety, and motivation. However, the brain‐wide monosynap...
The brain monitors peripheral immune activity via vagus nerve sensory neurons, whose cell bodies lie in the nodose ganglia and project to the brainstem dorsal vagal complex. This relay activates neural circuits mediating infection-related behavioral changes, such as sickness behavior. In severe inflammation like sepsis...
Lena Bourhy, Carine Moigneu, Alice Dupin et al.· Cell Reports· 0 citations
ABSTRACT Background The thalamus serves as a critical relay hub for transmitting peripheral nociceptive information to the cerebral cortex and plays a central role in the sensory, motor, affective, and cognitive dimensions of pain processing. However, the dynamic response patterns of distinct thalamic nuclei during sti...
Yao-Hua Liu, Tian-Yu Zhao, Jin Cheng et al.· CNS Neuroscience & Therapeut...· 0 citations
The supramammillary nucleus (SuM) is known to promote active, approach-oriented behaviors by engaging ventral tegmental area (VTA) dopamine neurons projecting to the nucleus accumbens (NAc), primarily via a glutamatergic SuM→medial septum (MS) pathway. However, the role of other SuM projections in this process remains...
Yosuke Arima, Zengyou Ye, Coleman B. Calva et al.· bioRxiv· 0 citations
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