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A subset of spinal dorsal horn interneurons crucial for gating touch-evoked pain-like behavior.
Tashima, Ryoichi; Koga, Keisuke; Yoshikawa, Yu; Sekine, Misuzu; Watanabe, Moeka; Tozaki-Saitoh, Hidetoshi; Furue, Hidemasa; Yasaka, Toshiharu; Tsuda, Makoto.
Affiliation
  • Tashima R; Department of Life Innovation, Graduate School of Pharmaceutical Sciences, Kyushu University, 812-8582 Fukuoka, Japan.
  • Koga K; Department of Life Innovation, Graduate School of Pharmaceutical Sciences, Kyushu University, 812-8582 Fukuoka, Japan.
  • Yoshikawa Y; Department of Neurophysiology, Hyogo College of Medicine, 663-8501 Nishinomiya, Japan.
  • Sekine M; Department of Life Innovation, Graduate School of Pharmaceutical Sciences, Kyushu University, 812-8582 Fukuoka, Japan.
  • Watanabe M; Department of Molecular and System Pharmacology, Graduate School of Pharmaceutical Sciences, Kyushu University, 812-8582 Fukuoka, Japan.
  • Tozaki-Saitoh H; Department of Life Innovation, Graduate School of Pharmaceutical Sciences, Kyushu University, 812-8582 Fukuoka, Japan.
  • Furue H; Department of Life Innovation, Graduate School of Pharmaceutical Sciences, Kyushu University, 812-8582 Fukuoka, Japan.
  • Yasaka T; Department of Life Innovation, Graduate School of Pharmaceutical Sciences, Kyushu University, 812-8582 Fukuoka, Japan.
  • Tsuda M; Department of Molecular and System Pharmacology, Graduate School of Pharmaceutical Sciences, Kyushu University, 812-8582 Fukuoka, Japan.
Proc Natl Acad Sci U S A ; 118(3)2021 01 19.
Article in En | MEDLINE | ID: mdl-33431693
ABSTRACT
A cardinal, intractable symptom of neuropathic pain is mechanical allodynia, pain caused by innocuous stimuli via low-threshold mechanoreceptors such as Aß fibers. However, the mechanism by which Aß fiber-derived signals are converted to pain remains incompletely understood. Here we identify a subset of inhibitory interneurons in the spinal dorsal horn (SDH) operated by adeno-associated viral vectors incorporating a neuropeptide Y promoter (AAV-NpyP+) and show that specific ablation or silencing of AAV-NpyP+ SDH interneurons converted touch-sensing Aß fiber-derived signals to morphine-resistant pain-like behavioral responses. AAV-NpyP+ neurons received excitatory inputs from Aß fibers and transmitted inhibitory GABA signals to lamina I neurons projecting to the brain. In a model of neuropathic pain developed by peripheral nerve injury, AAV-NpyP+ neurons exhibited deeper resting membrane potentials, and their excitation by Aß fibers was impaired. Conversely, chemogenetic activation of AAV-NpyP+ neurons in nerve-injured rats reversed Aß fiber-derived neuropathic pain-like behavior that was shown to be morphine-resistant and reduced pathological neuronal activation of superficial SDH including lamina I. These findings suggest that identified inhibitory SDH interneurons that act as a critical brake on conversion of touch-sensing Aß fiber signals into pain-like behavioral responses. Thus, enhancing activity of these neurons may offer a novel strategy for treating neuropathic allodynia.
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Full text: 1 Database: MEDLINE Main subject: Touch Perception / Spinal Cord Dorsal Horn / Interneurons / Neuralgia Type of study: Prognostic_studies Limits: Animals Language: En Journal: Proc Natl Acad Sci U S A Year: 2021 Type: Article Affiliation country: Japan

Full text: 1 Database: MEDLINE Main subject: Touch Perception / Spinal Cord Dorsal Horn / Interneurons / Neuralgia Type of study: Prognostic_studies Limits: Animals Language: En Journal: Proc Natl Acad Sci U S A Year: 2021 Type: Article Affiliation country: Japan