A Hypothalamic Oxytocinergic–Sympathetic Axis Couples Anxiety Dysregulation With Impaired Tendon–Bone Repair

ABSTRACT Rotator cuff injury (RCI) is frequently accompanied by psychological comorbidities, particularly anxiety‐related symptoms, which predict poor functional recovery, yet the central mechanisms linking affective disturbance to impaired tendon–bone healing remain unclear. Here, by integrating clinical neuroimaging, imaging transcriptomics, and mechanistic animal experiments, we identify hypothalamic paraventricular nucleus (PVN) oxytocinergic (OXT) neurons as a critical central node coordinating emotional regulation and bone–tendon interface (BTI) repair. In patients with RCI, resting‐state fMRI (rs‐fMRI) revealed reduced hypothalamic spontaneous activity that was inversely correlated with anxiety severity. Imaging transcriptomic analyses further linked these functional alterations to spatially concordant gene expression programs enriched in oxytocin signaling. In mouse models, retrograde viral tracing and spatial transcriptomics identified PVN OXT neurons as the predominant labeled population within a polysynaptic PVN–IML–SCG sympathetic pathway connected to the subchondral bone region of the rotator cuff enthesis. In vivo local field potential recordings confirmed a reduction in PVN neuronal activity that peaked at four weeks post‐injury and recovered thereafter, paralleling the behavioral time course. Chemogenetic inhibition of PVN OXT neurons induced anxiety‐like behaviors and impaired BTI healing, whereas their activation alleviated anxiety and enhanced structural and biomechanical recovery. Together, these findings support a working model in which a PVN OXT– sympathetic‐shoulder axis links anxiety dysregulation to musculoskeletal healing through a hypothalamic–sympathetic pathway, providing a framework for integrated neuromodulatory and tissue‐targeted interventions in RCI.

Authors

Institutions

Publication Details

Journal
Advanced Science
Published
2026-10-06
DOI
https://doi.org/10.1002/advs.78190
Primary Topic
Shoulder Injury and Treatment
Type
article
Field-Weighted Citation Impact
0.00
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
OCT
article

A Hypothalamic Oxytocinergic–Sympathetic Axis Couples Anxiety Dysregulation With Impaired Tendon–Bone Repair

Tingmo Huang, Liyang Wan, Ranran Du, Shen Liu et al.
Advanced Science
Shoulder Injury and Treatment
article

A Hypothalamic Oxytocinergic–Sympathetic Axis Couples Anxiety Dysregulation With Impaired Tendon–Bone Repair

Tingmo Huang, Liyang Wan, Ranran Du, Shen Liu, Jianzhong Hu, Tao Zhang, Hengshuo Zhang, Liyue Zeng, Hongbin Lu
article en

Abstract

ABSTRACT Rotator cuff injury (RCI) is frequently accompanied by psychological comorbidities, particularly anxiety‐related symptoms, which predict poor functional recovery, yet the central mechanisms linking affective disturbance to impaired tendon–bone healing remain unclear. Here, by integrating clinical neuroimaging, imaging transcriptomics, and mechanistic animal experiments, we identify hypothalamic paraventricular nucleus (PVN) oxytocinergic (OXT) neurons as a critical central node coordinating emotional regulation and bone–tendon interface (BTI) repair. In patients with RCI, resting‐state fMRI (rs‐fMRI) revealed reduced hypothalamic spontaneous activity that was inversely correlated with anxiety severity. Imaging transcriptomic analyses further linked these functional alterations to spatially concordant gene expression programs enriched in oxytocin signaling. In mouse models, retrograde viral tracing and spatial transcriptomics identified PVN OXT neurons as the predominant labeled population within a polysynaptic PVN–IML–SCG sympathetic pathway connected to the subchondral bone region of the rotator cuff enthesis. In vivo local field potential recordings confirmed a reduction in PVN neuronal activity that peaked at four weeks post‐injury and recovered thereafter, paralleling the behavioral time course. Chemogenetic inhibition of PVN OXT neurons induced anxiety‐like behaviors and impaired BTI healing, whereas their activation alleviated anxiety and enhanced structural and biomechanical recovery. Together, these findings support a working model in which a PVN OXT– sympathetic‐shoulder axis links anxiety dysregulation to musculoskeletal healing through a hypothalamic–sympathetic pathway, providing a framework for integrated neuromodulatory and tissue‐targeted interventions in RCI.

Advanced Science
Xiangya Hospital Central South University (CN)
Openalex Percentile: Top 9%
Shoulder Injury and Treatment
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.