Rat Vanilloid R1/TRPV1 Antibody Summary
RASLDSEESESPPQENSC
Accession # O35433
Applications
Please Note: Optimal dilutions should be determined by each laboratory for each application. General Protocols are available in the Technical Information section on our website.
Scientific Data
Vanilloid R1/TRPV1 in Rat Dorsal Root Ganglion. Vanilloid R1/TRPV1 was detected in perfusion fixed frozen sections of rat dorsal root ganglion using 15 µg/mL Goat Anti-Rat Vanilloid R1/TRPV1 Antigen Affinity-purified Polyclonal Antibody (Catalog # AF3066) overnight at 4 °C. Tissue was stained (red) and counterstained (green). View our protocol for Fluorescent IHC Staining of Frozen Tissue Sections.
Vanilloid R1/TRPV1 in Rat Brain. Vanilloid R1/TRPV1 was detected in perfusion fixed frozen sections of rat brain using Rat Vanilloid R1/TRPV1 Antigen Affinity-purified Polyclonal Antibody (Catalog # AF3066) at 15 µg/mL overnight at 4 °C. Tissue was stained using the NorthernLights™ 557-conjugated Anti-Goat IgG Secondary Antibody (yellow; Catalog # NL001) and counterstained with DAPI (blue). View our protocol for Fluorescent IHC Staining of Frozen Tissue Sections.
Reconstitution Calculator
Preparation and Storage
- 12 months from date of receipt, -20 to -70 °C as supplied.
- 1 month, 2 to 8 °C under sterile conditions after reconstitution.
- 6 months, -20 to -70 °C under sterile conditions after reconstitution.
Background: Vanilloid R1/TRPV1
VR1, also known as TRPV1 (Transient Receptor Potential Vanilloid 1) and capsaicin receptor, is a 115 kDa integral membrane ion channel that has six transmembrane domains and contains intracellular N-and C-termini. It contributes to normal pain and temperature sensation and also has a “sensory-effector” function. By alternative splicing, at least three VR1 isoforms are known. The sequence of residues 4-21 of rat VR1 is 78% and 28% identical to that of mouse and human VR1, respectively.
Product Datasheets
Citations for Rat Vanilloid R1/TRPV1 Antibody
R&D Systems personnel manually curate a database that contains references using R&D Systems products. The data collected includes not only links to publications in PubMed, but also provides information about sample types, species, and experimental conditions.
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Citations: Showing 1 - 8
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Peripheral Inflammatory Hyperalgesia Depends on P2X7 Receptors in Satellite Glial Cells
Authors: Amanda Ferreira Neves, Felipe Hertzing Farias, Silviane Fernandes de Magalhães, Dionéia Araldi, Marco Pagliusi, Claudia Herrera Tambeli et al.
Frontiers in Physiology
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Implantation of hyaluronic acid hydrogel prevents the pain phenotype in a rat model of intervertebral disc injury.
Authors: Mohd ISa IL, Abbah Sa, Kilcoyne M et al.
Sci Adv
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Synaptic connectivity of the TRPV1-positive trigeminal afferents in the rat lateral parabrachial nucleus
Authors: Su Bin An, Yi Sul Cho, Sook Kyung Park, Yun Sook Kim, Yong Chul Bae
Frontiers in Cellular Neuroscience
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Transient receptor potential melastatin-7 in the rat dorsal root ganglion
Authors: T Yajima, T Sato, H Hosokawa, T Kondo, H Ichikawa
Journal of chemical neuroanatomy, 2022-09-17;125(0):102163.
Species: Rat
Sample Types: Whole Tissue
Applications: IHC -
Transient receptor potential melastatin-3 in the rat sensory ganglia of the trigeminal, glossopharyngeal and vagus nerves
Authors: T Yajima, T Sato, K Shimazaki, H Ichikawa
J. Chem. Neuroanat., 2019-01-10;96(0):116-125.
Species: Rat
Sample Types: Whole Tissue
Applications: IHC -
Mediation of movement-induced breakthrough cancer pain by IB4 binding nociceptors in rats
Authors: J Havelin, I Imbert, D Sukhtankar, B Remeniuk, I Pelletier, J Gentry, A Okun, T Tiutan, F Porreca, T King
J. Neurosci., 2017-04-24;0(0):.
Species: Rat
Sample Types: Whole Tissue
Applications: IHC -
Subgroup-elimination transcriptomics identifies signaling proteins that define subclasses of TRPV1-positive neurons and a novel paracrine circuit.
Authors: Isensee J, Wenzel C, Buschow R, Weissmann R, Kuss A, Hucho T
PLoS ONE, 2014-12-31;9(12):e115731.
Species: Rat
Sample Types: Whole Cells
Applications: IHC-Fr -
Anthrax toxins regulate pain signaling and can deliver molecular cargoes into ANTXR2+ DRG sensory neurons
Authors: NJ Yang, J Isensee, DV Neel, AU Quadros, HB Zhang, J Lauzadis, SM Liu, S Shiers, A Belu, S Palan, S Marlin, J Maignel, A Kennedy-Cu, VS Tong, M Moayeri, P Röderer, A Nitzsche, M Lu, BL Pentelute, O Brüstle, V Tripathi, KA Foster, TJ Price, RJ Collier, SH Leppla, M Puopolo, BP Bean, TM Cunha, T Hucho, IM Chiu
Nature Neuroscience, 2021-12-20;0(0):.
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