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  3. Vol. 7 No. 3 (2022): July 2022
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ISSN: 2538-2462

July 2022
Vol. 7 No. 3 (2022)

An Update on Precision Pain Medicine: Na+ Channel Disorders

  • A. Sassan Sabouri

Journal of Cellular & Molecular Anesthesia, Vol. 7 No. 3 (2022), , Page 137-138
https://doi.org/10.22037/jcma.v7i3.38851 Published 11 July 2022

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Abstract

Keywords:
  • Pain
  • Channelopathy
  • Precision Pain Medicine
  • PDF

How to Cite

1.
Sabouri AS. An Update on Precision Pain Medicine: Na+ Channel Disorders. J Cell Mol Anesth [Internet]. 2022Jul.11 [cited 2023Mar.27];7(3):137-8. Available from: https://journals.sbmu.ac.ir/jcma/article/view/38851
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References

1. Mohamad N, Mustafa N, Abu Bakar N, R. M, Mohd Adnan L, Ahmad N, et al. MDMA-Induced BV2 Microglial Cell Activation in Vitro. J Cell Mol Anesth. 2022;7(3):139-45.
2. Cox JJ, Reimann F, Nicholas AK, Thornton G, Roberts E, Springell K, et al. An SCN9A channelopathy causes congenital inability to experience pain. Nature. 2006;444(7121):894-8.
3. McDermott LA, Weir GA, Themistocleous AC, Segerdahl AR, Blesneac I, Baskozos G, et al. Defining the Functional Role of Na(V)1.7 in Human Nociception. Neuron. 2019;101(5):905-19.e8.
4. Novella SP, Hisama FM, Dib-Hajj SD, Waxman SG. A case of inherited erythromelalgia. Nat Clin Pract Neurol. 2007;3(4):229-34.
5. Lee JH, Park CK, Chen G, Han Q, Xie RG, Liu T, et al. A monoclonal antibody that targets a NaV1.7 channel voltage sensor for pain and itch relief. Cell. 2014;157(6):1393-404.
6. Waxman SG, Zamponi GW. Regulating excitability of peripheral afferents: emerging ion channel targets. Nat Neurosci. 2014;17(2):153-63.
7. Raouf R, Quick K, Wood JN. Pain as a channelopathy. J Clin Invest. 2010;120(11):3745-52.
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