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Citations to this article

Reducing CXCR4-mediated nociceptor hyperexcitability reverses painful diabetic neuropathy
Nirupa D. Jayaraj, … , Richard J. Miller, Daniela M. Menichella
Nirupa D. Jayaraj, … , Richard J. Miller, Daniela M. Menichella
Published March 13, 2018
Citation Information: J Clin Invest. 2018;128(6):2205-2225. https://doi.org/10.1172/JCI92117.
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Research Article Neuroscience Article has an altmetric score of 17

Reducing CXCR4-mediated nociceptor hyperexcitability reverses painful diabetic neuropathy

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Abstract

Painful diabetic neuropathy (PDN) is an intractable complication of diabetes that affects 25% of patients. PDN is characterized by neuropathic pain and small-fiber degeneration, accompanied by dorsal root ganglion (DRG) nociceptor hyperexcitability and loss of their axons within the skin. The molecular mechanisms underlying DRG nociceptor hyperexcitability and small-fiber degeneration in PDN are unknown. We hypothesize that chemokine CXCL12/CXCR4 signaling is central to this mechanism, as we have shown that CXCL12/CXCR4 signaling is necessary for the development of mechanical allodynia, a pain hypersensitivity behavior common in PDN. Focusing on DRG neurons expressing the sodium channel Nav1.8, we applied transgenic, electrophysiological, imaging, and chemogenetic techniques to test this hypothesis. In the high-fat diet mouse model of PDN, we were able to prevent and reverse mechanical allodynia and small-fiber degeneration by limiting CXCR4 signaling or neuronal excitability. This study reveals that excitatory CXCR4/CXCL12 signaling in Nav1.8-positive DRG neurons plays a critical role in the pathogenesis of mechanical allodynia and small-fiber degeneration in a mouse model of PDN. Hence, we propose that targeting CXCR4-mediated DRG nociceptor hyperexcitability is a promising therapeutic approach for disease-modifying treatments for this currently intractable and widespread affliction.

Authors

Nirupa D. Jayaraj, Bula J. Bhattacharyya, Abdelhak A. Belmadani, Dongjun Ren, Craig A. Rathwell, Sandra Hackelberg, Brittany E. Hopkins, Herschel R. Gupta, Richard J. Miller, Daniela M. Menichella

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 Total
Citations: 2 8 10 8 7 7 3 2 47
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Citations to this article (47)

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Novel drugs affecting diabetic peripheral neuropathy.
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Iranian Journal of Basic Medical Sciences 2024
Keratinocyte-Derived Exosomes in Painful Diabetic Neuropathy
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bioRxiv 2024
Local keratinocyte-nociceptor interactions enhance obesity-mediated small fiber neuropathy via NGF-TrkA-PI3K signaling axis.
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Transcriptomic analysis of human sensory neurons in painful diabetic neuropathy reveals inflammation and neuronal loss
B Hall, E Macdonald, M Cassidy, S Yun, M Sapio, P Ray, M Doty, P Nara, M Burton, S Shiers, A Ray-Chaudhury, A Mannes, T Price, M Iadarola, A Kulkarni
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