Literature DB >> 31815915

Dexpramipexole blocks Nav1.8 sodium channels and provides analgesia in multiple nociceptive and neuropathic pain models.

Matteo Urru1, Mirko Muzzi1, Elisabetta Coppi2, Giuseppe Ranieri1, Daniela Buonvicino1, Emidio Camaioni3, Raffaele Coppini2, Anna Maria Pugliese2, Brian Tanaka4, Mark Estacion4, Stephen G Waxman4, Sulayman D Dib-Hajj4, Alberto Chiarugi1.   

Abstract

Selective targeting of sodium channel subtypes Nav1.7, Nav1.8, and Nav1.9, preferentially expressed by peripheral nociceptors, represents a unique opportunity to develop analgesics devoid of central side effects. Several compounds that target Nav1.7 and Nav1.8 with different degrees of selectivity have been developed and are currently being tested in clinical trials for multiple pain indications. Among these chemicals, benzothiazole-like compounds emerged as potent sodium channel blockers. We evaluated the effects of dexpramipexole, a benzothiazole-bearing drug with pleiotypic neuroactive properties and a good safety profile in humans, on sodium conductances of dorsal root ganglia neurons, as well as in multiple nociceptive and neuropathic pain models. Dexpramipexole blocks TTX-resistant sodium conductances in cultured rat dorsal root ganglion neurons with an IC50 of 294.4 nM, suggesting selectivity towards Nav1.8. In keeping with this, dexpramipexole does not affect sodium currents in dorsal root ganglion neurons from Nav1.8 null mice and acquires binding pose predicted to overlap that of the Nav1.8 channel-selective blocker A-8034637. The drug provides analgesia when parenterally, orally, or topically applied in inflammatory and visceral mouse pain models, as well as in mice affected by neuropathic pain induced by oxaliplatin, nerve constriction, or diabetes. Pain reduction in mice occurs at doses consistent with those adopted in clinical trials. The present findings confirm the relevance of selective targeting of peripheral Nav1.8 channels to pain therapy. In light of the excellent tolerability of dexpramipexole in humans, our results support its translational potential for treatment of pain.

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Year:  2020        PMID: 31815915     DOI: 10.1097/j.pain.0000000000001774

Source DB:  PubMed          Journal:  Pain        ISSN: 0304-3959            Impact factor:   6.961


  8 in total

1.  Intrathecal pramipexole and selegiline for sensory and motor block in rats.

Authors:  Chun-Chang Yeh; An-Kuo Chou; Yu-Wen Chen; Ching-Hsia Hung; Chong-Chi Chiu; Jhi-Joung Wang; Guan-Cheng Zhu
Journal:  Pharmacol Rep       Date:  2022-05-13       Impact factor: 3.024

Review 2.  Chemotherapy-Induced Peripheral Neuropathy: Mechanisms and Therapeutic Avenues.

Authors:  Esther H Bae; Mark K Greenwald; Ann G Schwartz
Journal:  Neurotherapeutics       Date:  2021-10-21       Impact factor: 6.088

3.  DNA Microarray Analysis of Differential Gene Expression in the Dorsal Root Ganglia of Four Different Neuropathic Pain Mouse Models.

Authors:  Hiroyuki Yokoyama; Takashi Hirai; Tetsuya Nagata; Mitsuhiro Enomoto; Hidetoshi Kaburagi; Li Leiyo; Takayuki Motoyoshi; Toshitaka Yoshii; Atsushi Okawa; Takanori Yokota
Journal:  J Pain Res       Date:  2020-11-20       Impact factor: 3.133

Review 4.  From Riluzole to Dexpramipexole via Substituted-Benzothiazole Derivatives for Amyotrophic Lateral Sclerosis Disease Treatment: Case Studies.

Authors:  Serge Mignani; Jean-Pierre Majoral; Jean-François Desaphy; Giovanni Lentini
Journal:  Molecules       Date:  2020-07-22       Impact factor: 4.411

Review 5.  Peripheral Neuropathic Pain: From Experimental Models to Potential Therapeutic Targets in Dorsal Root Ganglion Neurons.

Authors:  Ti-Yen Yeh; I-Wei Luo; Yu-Lin Hsieh; To-Jung Tseng; Hao Chiang; Sung-Tsang Hsieh
Journal:  Cells       Date:  2020-12-21       Impact factor: 6.600

6.  Role of voltage-gated sodium channels in axonal signal propagation of trigeminal ganglion neurons after infraorbital nerve entrapment.

Authors:  Yatendra Mulpuri; Toru Yamamoto; Ichiro Nishimura; Igor Spigelman
Journal:  Neurobiol Pain       Date:  2022-01-21

7.  Dexpramipexole Attenuates White Matter Injury to Facilitate Locomotion and Motor Coordination Recovery via Reducing Ferroptosis after Intracerebral Hemorrhage.

Authors:  Bo Wang; Xuyang Zhang; Jun Zhong; Shi Wang; Chao Zhang; Mingxi Li; Quan Hu; Shuhong Wang; Lin Chen; Weixiang Chen; Hongfei Ge; Hua Feng
Journal:  Oxid Med Cell Longev       Date:  2022-08-04       Impact factor: 7.310

8.  Cilostazol Ameliorates Peripheral Neuropathic Pain in Streptozotocin-Induced Type I Diabetic Rats.

Authors:  Kuang-I Cheng; Hung-Chen Wang; Kuang-Yi Tseng; Yi-Hsuan Wang; Chung-Yu Chang; Yi-Jing Chen; Chung-Sheng Lai; Dar-Ren Chen; Lin-Li Chang
Journal:  Front Pharmacol       Date:  2022-01-18       Impact factor: 5.810

  8 in total

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