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BDNF ELISA Kit

This Mouse BDNF ELISA Kit is a Colorimetric ELISA Kit designed to quantify Mouse BDNF.
Rockland
Catalog No. ABIN6719745
Supplier Product No.: koa0148

Quick Overview for BDNF ELISA Kit (ABIN6719745)

Target

See all BDNF ELISA Kits
BDNF (Brain-Derived Neurotrophic Factor (BDNF))

Reactivity

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Mouse

Detection Method

Colorimetric

Method Type

Sandwich ELISA

Detection Range

31.2 pg/mL - 2000 pg/mL

Application

ELISA

Sample Type

Cell Culture Supernatant, Plasma (EDTA - heparin - citrate), Serum
  • Minimum Detection Limit

    31.2 pg/mL

    Supplier Product No.

    koa0148

    Supplier

    Rockland

    Purpose

    Mouse BDNF Sandwich ELISA Kit for Quantitative Detection

    Brand

    AccuSignal™

    Analytical Method

    Quantitative

    Specificity

    Production: Natural and recombinant mouse BDNF. There is no detectable cross-reactivity with other relevant proteins.

    Sensitivity

    < 15 pg/mL

    Components

    • Antibody-coated 96-well plate
    • Target Protein Standard
    • Detection antibody
    • Detection reagent
    • Diluent buffers
    • Wash buffers
    • Substrate Solution
    • Stop solutions
    • Adhesive covers
  • Application Notes

    ELISA_Dilution: 31.2 pg/mL-2000 pg/mL

    Application_Note: Useful in Sandwich ELISA for Quantitative Detection of Antigen. Aliquot 0.1 mL per well of the 2000pg/mL,1000pg/mL, 500pg/mL, 250pg/mL, 125pg/mL, 62.5pg/mL, 31.2pg/mL mouse BDNF standard solutions into the precoated 96-well plate. Add 0.1 mL of the sample diluent buffer into the control well (Zero well). Add 0.1 mL of each properly diluted sample of mouse cell culture supernates, serum or plasma(heparin, EDTA, citrate) to each empty well. It is recommended that each mouse BDNF standard solution and each sample be measured in duplicate.

    Comment

    Standard: Expression system for standard: sf21, Immunogen sequence: H129-R247

    Sample Volume

    100 μL

    Plate

    Pre-coated

    Restrictions

    For Research Use only
  • Storage

    4 °C,-20 °C

    Storage Comment

    Store vials at 4°C prior to opening. Centrifuge product if not completely clear after standing at room temperature. This product is stable for 6 months at 4°C as an undiluted liquid. Dilute only prior to immediate use. For extended storage freeze at -20°C or below for 12 months. Avoid cycles of freezing and thawing.

    Expiry Date

    12 months
  • Target See all BDNF ELISA Kits

    BDNF (Brain-Derived Neurotrophic Factor (BDNF))

    Alternative Name

    BDNF

    Background

    Synonyms: Abrineurin, ANON2, Brain derived neurotrophic factor, BULN2, MGC34632, Neurotrophin

    Background: Brain-derived neurotrophic factor(BDNF) is a prosurvival factor induced by cortical neurons that is necessary for survival of striatal neurons in the brain. It is a secreted protein with the molecular weight of 27.8 kDa, consisting of 247 amino acids. It is known to promote neuronal survival and differentiation. BDNF shares substantial amino acid sequence identity with nerve growth factor(NGF). BDNF and neurotrophin-3(NT-3) are two recently cloned neurotrophic factors that are homologous to NGF. mRNA products of the BDNF and NT-3 genes are detected in the adult human brain, suggesting that these proteins are involved in the maintenance of the adult nervous system. BDNF and other neurotrophins are critically involved in long-term potentiation(LTP). BDNF-mediated LTP is induced postsynaptically. BDNF has trophic effects on serotonergic(5-HT) neurons in the central nervous system. BDNF has an essential maintenance function in the regulation of anxiety-related behavior and in food intake through central mediators in both the basal and fasted state. It plays a role in treating breathing disorders such as respiratory insufficiency after spinal injury. The mature form of BDNF is identical in all mammals examined, and the gene encoding human BDNF to chromosome 11, band p13.

    Gene ID

    12064

    NCBI Accession

    NP_001041604

    UniProt

    P21237

    Pathways

    RTK Signaling, Synaptic Membrane, Feeding Behaviour, Dicarboxylic Acid Transport, Regulation of long-term Neuronal Synaptic Plasticity
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