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A modified FLIT-B model of trigeminal neuralgia reveals anterior cingulate cortex involvement in anxiety-like behavior in mice
by
Ye, Weiyi
, Tang, Lei
, Lu, Dihan
, Deng, Jing
, Lian, Xiaoqin
, Xie, Taoxia
, Zhao, Sijing
, Chen, Qian
, Chen, Chen
, Yang, Kunxin
, Shen, Shiqian
, Fu, Mei
, Zhou, Na
, Gao, Tongtong
, Feng, Xia
in
Activity patterns
/ Amygdala
/ Animal models
/ Animals
/ Anterior cingulate cortex
/ Anxiety
/ Anxiety - physiopathology
/ Behavior
/ Behavior, Animal - physiology
/ Brain
/ c-Fos protein
/ Calcium imaging
/ Chronic pain
/ Comorbidity
/ Compression
/ Cortex (cingulate)
/ Demyelination
/ Disease Models, Animal
/ Functional plasticity
/ Glass beads
/ Grooming
/ Gyrus Cinguli - physiopathology
/ Hippocampus
/ Internal Medicine
/ Learning curves
/ Male
/ Medicine
/ Medicine & Public Health
/ Mice
/ Mice, Inbred C57BL
/ Neuralgia
/ Neuroimaging
/ Neurology
/ Neurons
/ Orofacial pain
/ Pain
/ Pain Medicine
/ Phenotypes
/ Photometry
/ Somatosensory cortex
/ Structure-function relationships
/ Surgery
/ Surgical outcomes
/ Trigeminal nerve
/ Trigeminal nerve root compression
/ Trigeminal neuralgia
/ Trigeminal Neuralgia - pathology
/ Trigeminal Neuralgia - physiopathology
/ Trigeminal Neuralgia - psychology
2026
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A modified FLIT-B model of trigeminal neuralgia reveals anterior cingulate cortex involvement in anxiety-like behavior in mice
by
Ye, Weiyi
, Tang, Lei
, Lu, Dihan
, Deng, Jing
, Lian, Xiaoqin
, Xie, Taoxia
, Zhao, Sijing
, Chen, Qian
, Chen, Chen
, Yang, Kunxin
, Shen, Shiqian
, Fu, Mei
, Zhou, Na
, Gao, Tongtong
, Feng, Xia
in
Activity patterns
/ Amygdala
/ Animal models
/ Animals
/ Anterior cingulate cortex
/ Anxiety
/ Anxiety - physiopathology
/ Behavior
/ Behavior, Animal - physiology
/ Brain
/ c-Fos protein
/ Calcium imaging
/ Chronic pain
/ Comorbidity
/ Compression
/ Cortex (cingulate)
/ Demyelination
/ Disease Models, Animal
/ Functional plasticity
/ Glass beads
/ Grooming
/ Gyrus Cinguli - physiopathology
/ Hippocampus
/ Internal Medicine
/ Learning curves
/ Male
/ Medicine
/ Medicine & Public Health
/ Mice
/ Mice, Inbred C57BL
/ Neuralgia
/ Neuroimaging
/ Neurology
/ Neurons
/ Orofacial pain
/ Pain
/ Pain Medicine
/ Phenotypes
/ Photometry
/ Somatosensory cortex
/ Structure-function relationships
/ Surgery
/ Surgical outcomes
/ Trigeminal nerve
/ Trigeminal nerve root compression
/ Trigeminal neuralgia
/ Trigeminal Neuralgia - pathology
/ Trigeminal Neuralgia - physiopathology
/ Trigeminal Neuralgia - psychology
2026
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A modified FLIT-B model of trigeminal neuralgia reveals anterior cingulate cortex involvement in anxiety-like behavior in mice
by
Ye, Weiyi
, Tang, Lei
, Lu, Dihan
, Deng, Jing
, Lian, Xiaoqin
, Xie, Taoxia
, Zhao, Sijing
, Chen, Qian
, Chen, Chen
, Yang, Kunxin
, Shen, Shiqian
, Fu, Mei
, Zhou, Na
, Gao, Tongtong
, Feng, Xia
in
Activity patterns
/ Amygdala
/ Animal models
/ Animals
/ Anterior cingulate cortex
/ Anxiety
/ Anxiety - physiopathology
/ Behavior
/ Behavior, Animal - physiology
/ Brain
/ c-Fos protein
/ Calcium imaging
/ Chronic pain
/ Comorbidity
/ Compression
/ Cortex (cingulate)
/ Demyelination
/ Disease Models, Animal
/ Functional plasticity
/ Glass beads
/ Grooming
/ Gyrus Cinguli - physiopathology
/ Hippocampus
/ Internal Medicine
/ Learning curves
/ Male
/ Medicine
/ Medicine & Public Health
/ Mice
/ Mice, Inbred C57BL
/ Neuralgia
/ Neuroimaging
/ Neurology
/ Neurons
/ Orofacial pain
/ Pain
/ Pain Medicine
/ Phenotypes
/ Photometry
/ Somatosensory cortex
/ Structure-function relationships
/ Surgery
/ Surgical outcomes
/ Trigeminal nerve
/ Trigeminal nerve root compression
/ Trigeminal neuralgia
/ Trigeminal Neuralgia - pathology
/ Trigeminal Neuralgia - physiopathology
/ Trigeminal Neuralgia - psychology
2026
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A modified FLIT-B model of trigeminal neuralgia reveals anterior cingulate cortex involvement in anxiety-like behavior in mice
Journal Article
A modified FLIT-B model of trigeminal neuralgia reveals anterior cingulate cortex involvement in anxiety-like behavior in mice
2026
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Overview
Background
Trigeminal neuralgia (TN) is a debilitating orofacial pain disorder characterized by paroxysmal, lancinating pain and prominent affective comorbidities. Increasing evidence suggests that chronic TN involves abnormal plasticity in supraspinal pain circuits. However, the lack of animal models that faithfully recapitulate key clinical features of TN has limited mechanistic investigations of these central processes. Here, building upon our previously established foramen lacerum impingement of the trigeminal nerve root (FLIT) model, we developed an improved glass bead-based version (FLIT-B) that enables reproducible and controlled compression of the trigeminal nerve root and facilitates investigation of supraspinal mechanisms in TN.
Methods
In the FLIT-B model, calibrated glass beads were implanted through the foramen lacerum to compress the trigeminal nerve root. Behavioral assays were used to assess sensory and affective phenotypes, while histological analyses evaluated trigeminal nerve pathology. To examine supraspinal circuit alterations, neuronal activation in the primary somatosensory barrel field (S1BF), anterior cingulate cortex (ACC), amygdala, and hippocampus was assessed using c-Fos immunostaining. Structural and functional changes in excitatory neurons, particularly in the ACC, were further analyzed using AAV-mediated labeling, in vivo fiber photometry, and two-photon calcium imaging in both sham and FLIT-B mice.
Results
FLIT-B mice exhibited spontaneous pain-like behaviors, including asymmetric facial grimacing and peri-orbital hair loss associated with excessive grooming, suggesting persistent orofacial discomfort. Histological analyses confirmed consistent trigeminal nerve root demyelination. c-Fos staining and calcium imaging revealed widespread activation of the S1BF, ACC, amygdala, and hippocampus, with the ACC showing the highest degree of activation, particularly in spontaneous activity patterns. Morphological analyses demonstrated significant dendritic remodeling in excitatory neurons of the ACC and S1BF. Chemogenetic inhibition of ACC excitatory neurons significantly alleviated both pain-like and anxiety-like behaviors.
Conclusions
The FLIT-B model provides a reproducible and clinically relevant rodent model of TN by compression of the trigeminal nerve root at an anatomically relevant site. Using this model, we identify ACC-centered structural and functional plasticity as a key supraspinal substrate linking chronic trigeminal pain to affective disturbances.
Publisher
Springer Milan,Springer Nature B.V,BMC
Subject
/ Amygdala
/ Animals
/ Anxiety
/ Behavior
/ Behavior, Animal - physiology
/ Brain
/ Grooming
/ Gyrus Cinguli - physiopathology
/ Male
/ Medicine
/ Mice
/ Neurons
/ Pain
/ Structure-function relationships
/ Surgery
/ Trigeminal nerve root compression
/ Trigeminal Neuralgia - pathology
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