Mouse TNF-α High Sensitivity ELISA Kit

$380.00$480.00

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TARGETSTNF
SPECIESMouse
Sample TypeSerum, plasma, cell culture supernatant, and other biological samples
Sample Volume20 μL
Sensitivity0.32 pg/mL
Range0.781 pg/mL – 50 pg/mL
Assay Time3.5 h
Recovery75% – 113%
Average Recovery0.91
Sample TypeSerum, plasma, cell culture supernatant, and other biological samples
Sample Volume20 μL
Sensitivity0.32 pg/mL
Range0.781 pg/mL – 50 pg/mL
Assay Time3.5 h
Recovery75% – 113%
Average Recovery0.91
Intra Precision4.6% – 4.9%
Inter-Precision5.7% – 8.8%
PlatformELISA
PlateDetachable 96-well plate
Size96T/48T
StorageIf the reagent kit is unopened, it should be stored at 4℃. However, if it has been opened, the standard solution should be stored at -20℃, while the other components should be stored at 4℃.
Delivery4℃ blue ice transportation
Components96-well polystyrene enzyme-linked immunosorbent assay (ELISA) plate coated with anti-TNF-α monoclonal antibody
Mouse TNF-α freeze-dried standard
TNF-α detect Antibody
Standard Diluent
HRP-labeled streptavidin
Signal enhancer concentrate
Signal enhancer diluent
Assay Buffer(10×)
Substrate TMB
Stop Solution
Washing Buffer(20×)
Sealing Film
Assay PrincipleThis kit utilizes the double antibody sandwich enzyme-linked immunosorbent assay (ELISA) detection technique.Specific anti-mouse TNF-α antibodies are precoated on a high-affinity ELISA plate.Standards and test samples are added to the wells of the ELISA plate. After incubation, the TNF-α present in the samples binds to the solid-phase antibodies. After washing to remove unbound substances, biotinylated detection antibodies are added and incubated. After washing to remove unbound biotinylated antibodies, streptavidin-HRP labeled with horseradish peroxidase is added. After washing again, a signal enhancer is added and incubated. After washing to remove unbound substances, Streptavidin-HRP is added once more. After washing, a colorimetric substrate, TMB, is added and the plate is incubated in the dark for color development. The intensity of the color reaction is directly proportional to the concentration of TNF-α in the samples. A stop solution is added to terminate the reaction, and the absorbance value is measured at a wavelength of 450 nm (with a reference wavelength range of 570-630 nm).

 

Targets

TNF

TNF Target Infomation Overview

  • Target Symbol: TNF, tumor necrosis factor
  • Gene Groups: Tumor necrosis factor superfamily
  • Alias: TNFSF2; DIF; TNF-alpha
  • Previous Names: TNFA
  • Alias Names: TNF superfamily, member 2; tumor necrosis factor (TNF superfamily, member 2)

TNF, tumor necrosis factor Target Infomation by Species

HumanMouseRat

Human TNF Target Information

  • Target Symbol: TNF, tumor necrosis factor
  • Alias:
    • APC1 protein
    • cachectin
    • DIF
    • TNF superfamily, member 2
    • TNF-a
    • TNF-alpha
    • TNF, macrophage-derived
    • TNF, monocyte-derived
    • TNFA
    • TNFSF2
    • TNLG1F
    • tumor necrosis factor alpha
    • tumor necrosis factor ligand 1F
    • tumor necrosis factor ligand superfamily member 2
    • tumor necrosis factor-alpha
  • NCBI_Gene: 7124
  • UniProtKB: P01375

Human TNF Predicted Functions

Enables several functions, including identical protein binding activity; protease binding activity; and signaling receptor binding activity. Involved in several processes, including negative regulation of macromolecule metabolic process; positive regulation of macromolecule metabolic process; and regulation of apoptotic process. Acts upstream of or within several processes, including regulation of cellular protein metabolic process; regulation of gene expression; and regulation of signal transduction. Located in cell surface; extracellular space; and membrane raft. Is integral component of plasma membrane. Implicated in several diseases, including artery disease (multiple); autoimmune disease (multiple); eye disease (multiple); lung disease (multiple); and skin disease (multiple). Biomarker of several diseases, including anemia (multiple); autoimmune disease (multiple); eye disease (multiple); kidney disease (multiple); and lung disease (multiple).

Mouse Tnf Target Information

Mouse Tnf Predicted Functions

Enables cytokine activity; protease binding activity; and tumor necrosis factor receptor binding activity. Involved in several processes, including endothelial cell apoptotic process; positive regulation of cell communication; and positive regulation of macromolecule metabolic process. Acts upstream of or within several processes, including apoptotic signaling pathway; positive regulation of intracellular signal transduction; and regulation of gene expression. Located in several cellular components, including external side of plasma membrane; phagocytic cup; and recycling endosome. Is expressed in several structures, including alimentary system; brain; integumental system; lung; and reproductive system. Used to study several diseases, including autoimmune disease (multiple); congestive heart failure; heart valve disease (multiple); idiopathic pulmonary fibrosis; and spondyloarthropathy. Human ortholog(s) of this gene implicated in several diseases, including artery disease (multiple); autoimmune disease (multiple); eye disease (multiple); lung disease (multiple); and skin disease (multiple). Orthologous to human TNF (tumor necrosis factor).

Rat Tnf Target Information

  • Target Symbol: Tnf, tumor necrosis factor
  • Alias:
    • cachectin
    • LOC103694380
    • MGC124630
    • RATTNF
    • TNF-a
    • TNF-alpha
    • Tnfa
    • tumor necrosis factor (TNF superfamily, member 2)
    • tumor necrosis factor alpha
    • tumor necrosis factor ligand superfamily member 2
    • tumor necrosis factor superfamily member 2
    • tumor necrosis factor superfamily, member 2
    • tumor necrosis factor-alpha
    • tumor necrosis factor-like
  • NCBI_Gene: 24835
  • UniProtKB: P16599

Rat Tnf Predicted Functions

Enables tumor necrosis factor receptor binding activity. Involved in several processes, including positive regulation of cell communication; positive regulation of macromolecule metabolic process; and positive regulation of neuron death. Located in several cellular components, including external side of plasma membrane; extracellular space; and neuronal cell body. Used to study several diseases, including cerebrovascular disease (multiple); liver disease (multiple); peptic esophagitis; perinatal necrotizing enterocolitis; and periventricular leukomalacia. Biomarker of several diseases, including brain disease (multiple); congestive heart failure (multiple); inflammatory bowel disease (multiple); lung disease (multiple); and non-alcoholic fatty liver disease (multiple). Human ortholog(s) of this gene implicated in several diseases, including artery disease (multiple); autoimmune disease (multiple); eye disease (multiple); lung disease (multiple); and skin disease (multiple). Orthologous to human TNF (tumor necrosis factor).

TNF Target News

    3.3
    GPR34 knockdown relieves cognitive deficits and suppresses neuroinflammation in Alzheimer’s disease via the ERK/NF-κB signal
    NEUROSCIENCE
    4
    Network pharmacology and in vivo studies reveal the neuroprotective effects of paeoniflorin on Alzheimer’s disease
    Heliyon
    6.7
    Design, synthesis and biological evaluation of carbamate derivatives incorporating multifunctional carrier scaffolds as pseudo-irreversible cholinesterase inhibitors for the treatment of Alzheimer’s disease
    EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY
    3.6
    Pen Yan Jing Tablets Alleviates Pelvic Inflammatory Disease by Inhibiting Akt/NF-κB Pathway
    International Journal of Medical Sciences
    7.7
    GLI1 facilitates collagen-induced arthritis in mice by collaborative regulation of DNA methyltransferases
    eLife
    6.058
    Heat shock factor 1 promotes neurite outgrowth and suppresses inflammation in the severed spinal cord of geckos
    Neural Regeneration Research
    3.4
    TIFA contributes to periodontitis in diabetic mice via activating the NF‑κB signaling pathway
    Molecular Medicine Reports
    5.4
    Enhancing the Treatment of Uncontrolled Inflammation through the Targeted Delivery of TPCA-1-Loaded Nanoparticles
    Pharmaceutics
    4.967
    Effects of Pine Pollen Polysaccharides and Sulfated Polysaccharides on Ulcerative Colitis and Gut Flora in Mice
    Polymers
    3.7
    Blocking BAFF Alleviates Hepatic Fibrosis in Schistosoma japonicum-Infected Mice
    Pathogens
    5.9
    Potent Intestinal Mucosal Barrier Enhancement of Nostoc commune Vaucher Polysaccharide Supplementation Ameliorates Acute Ulcerative Colitis in Mice Mediated by Gut Microbiota
    Nutrients
    6.706
    The Antitumor Potential of λ-Carrageenan Oligosaccharides on Gastric Carcinoma by Immunomodulation
    Nutrients
    4.6
    Platycodonis Radix Alleviates LPS-Induced Lung Inflammation through Modulation of TRPA1 Channels
    MOLECULES
    4.6
    Triterpenoid and Coumarin Isolated from Astilbe grandis with Anti-Inflammatory Effects through Inhibiting the NF-κB Pathway in LPS-Induced RAW264.7 Cells
    MOLECULES
    4.6
    Atractylone in the Atractylodes macrocephala Rhizoma Essential Oil and Its Anti-Inflammatory Activity
    MOLECULES
    4.927
    Synthesis, Structural Elucidation, and Anti-Inflammatory Activity of a Water-Soluble Derivative of Arctiin
    MOLECULES
    Allergic Reaction
    Cardiovascular Disease (Hypertension & Atherosclerosis & Acute Myocardial Infarction & Coronary Heart Disease)
    Eye Diseases (Glaucoma & Cataract)
    Lung Disease (Asthma & COPD)
    Multiple Sclerosis
    Nervous System Diseases (Depression & Alzheimer & Epilepsy & Parkinson)
    Obesity Diabetes
    Osteoarthrosis & Rheumatoid Arthritis
    Osteoporosis
    Sepsis
    Systemic Lupus Erythematosus
    Transplantation
    Tumor Marker

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