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Citations to this article

CNS myeloid cells critically regulate heat hyperalgesia
Stefanie Kälin, … , Christian Witzel, Frank L. Heppner
Stefanie Kälin, … , Christian Witzel, Frank L. Heppner
Published April 10, 2018
Citation Information: J Clin Invest. 2018;128(7):2774-2786. https://doi.org/10.1172/JCI95305.
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Research Article Neuroscience Article has an altmetric score of 4

CNS myeloid cells critically regulate heat hyperalgesia

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Abstract

Activation of non-neuronal microglia is thought to play a causal role in spinal processing of neuropathic pain. To specifically investigate microglia-mediated effects in a model of neuropathic pain and overcome the methodological limitations of previous approaches exploring microglia function upon nerve injury, we selectively ablated resident microglia by intracerebroventricular ganciclovir infusion into male CD11b-HSVTK–transgenic mice, which was followed by a rapid, complete, and persistent (23 weeks) repopulation of the CNS by peripheral myeloid cells. In repopulated mice that underwent sciatic nerve injury, we observed a normal response to mechanical stimuli, but an absence of thermal hypersensitivity ipsilateral to the injured nerve. Furthermore, we found that neuronal expression of calcitonin gene–related peptide (CGRP), which is a marker of neurons essential for heat responses, was diminished in the dorsal horn of the spinal cord in repopulated mice. These findings identify distinct mechanisms for heat and mechanical hypersensitivity and highlight a crucial contribution of CNS myeloid cells in the facilitation of noxious heat.

Authors

Stefanie Kälin, Kelly R. Miller, Roland E. Kälin, Marina Jendrach, Christian Witzel, Frank L. Heppner

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Total citations by year

Year: 2025 2022 2021 2019 Total
Citations: 1 1 2 2 6
Citation information
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Citations to this article (6)

Title and authors Publication Year
Relationship Between Lumbar Multifidus Morphometry and Pain/Disability in Individuals With Chronic Nonspecific Low Back Pain After Considering Demographics, Fear‐Avoidance Beliefs, Insomnia, and Spinal Degenerative Changes
Pinto SM, Cheung JP, Samartzis D, Karppinen J, Zheng Y, Pang MY, Fortin M, Wong AY
JOR Spine 2025
Restorative therapy using microglial depletion and repopulation for central nervous system injuries and diseases.
Shi W, Zhang J, Shang Z, Zhang Y, Xia Y, Fu H, Yu T
Frontiers in immunology 2022
Identification of sensory and motor nerve fascicles by immunofluorescence staining after peripheral nerve injury
X Zhou, J Du, L Qing, T Mee, X Xu, Z Wang, C Xu, X Jia
Journal of Translational Medicine 2021
Blockade of spinal dopamine D1/D2 receptor suppresses activation of NMDA receptor through Gαq and Src kinase to attenuate chronic bone cancer pain
WL Dai, YN Bao, JF Fan, B Ma, SS Li, WL Zhao, BY Yu, JH Liu
Journal of Advanced Research 2021
CXCL12/CXCR4 signaling contributes to neuropathic pain via central sensitization mechanisms in a rat spinal nerve ligation model
ZY Liu, ZW Song, SW Guo, JS He, SY Wang, JG Zhu, HL Yang, JB Liu
CNS Neuroscience & Therapeutics 2019
Microglia Express Mu Opioid Receptor: Insights From Transcriptomics and Fluorescent Reporter Mice
T Maduna, E Audouard, D Dembélé, N Mouzaoui, D Reiss, D Massotte, C Gaveriaux-Ruff
Frontiers in Psychiatry 2019

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