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Anti-Human Nav1.7 Reference Antibody (Duke anti-Nav1.7, RUO) (HS929016)

Anti-Human Nav1.7 Reference Antibody (Duke anti-Nav1.7, RUO)
Anti-Human Nav1.7 Reference Antibody (Duke anti-Nav1.7, RUO)
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Overview
Catalog No.HS929016
Description
Anti-Human SCN9A/Nav1.7 Antibody (Duke anti-NAv1.7) (HS929016) is a research-grade recombinant antibody targeting Sodium channel protein type 9 subunit alpha. Produced in mammalian cells with native-like glycosylation.
Highlights
  • Research Grade — For PK/PD studies, assay development, and ADA research.
  • Native Glycosylation — Mammalian expression ensures native-like patterns.
Species reactivityHuman
ApplicationsELISA, Bioactivity: FACS, Functional assay, Research in vivo
Host speciesHuman
IsotypeIgG
Clone IDDuke anti-Nav1.7
Expression system Mammalian cells
Clonality Monoclonal
Target Sodium channel protein type 9 subunit alpha, NENA, Neuroendocrine sodium channel, Sodium channel protein type IX subunit alpha, SCN9A, Voltage-gated sodium channel subunit alpha Nav1.7, PN1, Peripheral sodium channel 1, hNE-Na
Endotoxin level < 10 EU/mg
Purity >95% purity as determined by SDS-PAGE.
Purification Protein A/G purified from cell culture supernatant.
Accession Q15858
Form Liquid
Storage buffer 0.01M PBS pH 7.4

Please refer to the specific buffer information in the hardcopy of datasheet or the lot-specific COA.

Stability and Storage Use a manual defrost freezer and avoid repeated freeze thaw cycles. Store at 2 to 8°C for frequent use. Store at -20 to -80°C for twelve months from the date of receipt.
Background

Sodium channel protein type 9 subunit alpha (SCN9A/Nav1.7) is a ~226 kDa protein. Pore-forming subunit of Nav1.7, a voltage-gated sodium (Nav) channel that directly mediates the depolarizing phase of action potentials in excitable membranes. Navs, also called VGSCs (voltage-gated sodium channels) or VDSCs (voltage-dependent sodium channels), operate by switching between closed and open conformations depending on the voltage difference across the membrane. In the open conformation they allow Na(+) ions to selectively pass through the pore, along their electrochemical gradient. The influx of Na(+) ions provokes membrane depolarization, initiating the propagation of electrical signals throughout cells and tissues. Nav1.7 plays a crucial role in controlling the excitability and action potential propagation from nociceptor neurons, thereby contributing to the sensory perception of pain.

1. Cummins, TR. et al. (2004) The Journal of neuroscience : the official journal of the Society for Neuroscience 24, 8232-6. PMID: 15385606
2. Choi, JS. et al. (2006) Neurology 67, 1563-7. PMID: 16988069
3. Fertleman, CR. et al. (2006) Neuron 52, 767-74. PMID: 17145499
4. Cox, JJ. et al. (2006) Nature 444, 894-8. PMID: 17167479
5. Han, C. et al. (2009) Brain : a journal of neurology 132, 1711-22. PMID: 19369487
6. Eberhardt, M. et al. (2014) The Journal of biological chemistry 289, 1971-80. PMID: 24311784
7. Tan, ZY. et al. (2014) FEBS letters 588, 3964-9. PMID: 25240195
8. Ahuja, S. et al. (2015) Science (New York, N.Y.) 350, aac5464. PMID: 26680203
9. Klugbauer, N. et al. (1995) The EMBO journal 14, 1084-90. PMID: 7720699
Note For research use only. Not suitable for clinical or therapeutic use.
Isotype Control Human IgG1 Recombinant Isotype Control Antibody (13R4) (HV080507)
Images
  • Anti-Human Nav1.7 Reference Antibody (Duke anti-Nav1.7, RUO)

    SDS-PAGE

    SDS-PAGE for Research Grade Anti-Human SCN9A/Nav1.7 Antibody (Duke anti-Nav1.7)

References
Formula
Mass (g) = Concentration (mol/L) × Volume (L) × MW (g/mol)
Enter any 2 of Mass, Concentration, Volume + Molecular Weight to solve for the unknown.
Mass
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Concentration
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Volume
Molecular Weight *
g/mol
Formula
C₁ × V₁ = C₂ × V₂
Enter any 3 of the 4 values to solve for the unknown.
Stock Solution
C₁ (Stock Conc.)
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V₁ (Stock Vol.)
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Working Solution
C₂ (Working Conc.)
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V₂ (Working Vol.)
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