Mouse IFN-γ ELISA Kit

$350.00$450.00

TARGETSIFNG
SPECIESMouse
Sample TypeSerum, plasma, cell culture supernatant, and other biological samples
Sample Volume50 μL
Sensitivity0.83 pg/mL
Range23.44 pg/mL – 1500 pg/mL
Assay Time3.5 h
Recovery90% – 108%
Average Recovery1.01
Sample TypeSerum, plasma, cell culture supernatant, and other biological samples
Sample Volume50 μL
Sensitivity0.83 pg/mL
Range23.44 pg/mL – 1500 pg/mL
Assay Time3.5 h
Recovery90% – 108%
Average Recovery1.01
Intra Precision4.6% – 7.0%
Inter-Precision3.2% – 4.7%
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-IFN-γ monoclonal antibody
Mouse IFN-γ freeze-dried standard
IFN-γ detect Antibody
Standard 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 IFN-γ antibodies are precoated on a high-affinity ELISA plate. Standard samples, test samples, and biotinylated detection antibodies are added to the wells of the ELISA plate. After incubation, IFN-γ present in the samples binds to the solid-phase antibodies and the detection antibodies. After washing to remove unbound substances, streptavidin-HRP labeled with horseradish peroxidase is added. 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 IFN-γ 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

IFNG

IFNG Target Infomation Overview

  • Target Symbol: IFNG, interferon gamma
  • Gene Groups: Interferons

IFNG, interferon gamma Target Infomation by Species

HumanMouseRat

Human IFNG Target Information

Human IFNG Predicted Functions

Predicted to enable cytokine activity. Involved in several processes, including positive regulation of cell death; positive regulation of cell differentiation; and positive regulation of macromolecule metabolic process. Acts upstream of or within several processes, including positive regulation of gene expression; positive regulation of protein phosphorylation; and response to virus. Located in extracellular region. Implicated in several diseases, including ataxia telangiectasia; autoimmune disease (multiple); eczema herpeticum; factor VIII deficiency; and leukemia (multiple). Biomarker of several diseases, including acute retinal necrosis syndrome; allergic rhinitis; autoimmune disease (multiple); nephritis (multiple); and otitis media (multiple).

Mouse Ifng Target Information

Mouse Ifng Predicted Functions

Enables cytokine activity. Involved in several processes, including cell surface receptor signaling pathway; positive regulation of macromolecule metabolic process; and regulation of generation of precursor metabolites and energy. Acts upstream of or within several processes, including CD8-positive, alpha-beta T cell differentiation involved in immune response; defense response to other organism; and positive regulation of macromolecule metabolic process. Located in external side of plasma membrane and extracellular space. Is expressed in several structures, including adipose tissue; alimentary system; genitourinary system; hemolymphoid system gland; and nervous system. Used to study several diseases, including aplastic anemia; hepatitis; malaria; medulloblastoma; and type 1 diabetes mellitus. Human ortholog(s) of this gene implicated in several diseases, including allergic rhinitis; ataxia telangiectasia; autoimmune disease (multiple); eczema herpeticum; and leukemia (multiple). Orthologous to human IFNG (interferon gamma).

Rat Ifng Target Information

Rat Ifng Predicted Functions

Predicted to enable cytokine activity. Involved in several processes, including negative regulation of cell population proliferation; positive regulation of NMDA glutamate receptor activity; and positive regulation of macromolecule metabolic process. Located in several cellular components, including extracellular space; neuron projection; and perikaryon. Used to study several diseases, including Chagas disease; allergic conjunctivitis; allergic rhinitis; renal fibrosis; and ureteral obstruction. Biomarker of several diseases, including abdominal aortic aneurysm; autoimmune thyroiditis; pulpitis; tongue squamous cell carcinoma; and visual epilepsy. Human ortholog(s) of this gene implicated in several diseases, including ataxia telangiectasia; autoimmune disease (multiple); eczema herpeticum; factor VIII deficiency; and leukemia (multiple). Orthologous to human IFNG (interferon gamma).

IFNG Target News

[catlist tags=”ifng” template=targetnews thumbnail=yes thumbnail_class=”related-post-media clr” thumbnail_size=833]

6.706
The Antitumor Potential of λ-Carrageenan Oligosaccharides on Gastric Carcinoma by Immunomodulation
Nutrients
4.927
Lipid Mediators Metabolic Chaos of Asthmatic Mice Reversed by Rosmarinic Acid
MOLECULES
4.927
Synergistic Antitumor Effect of Grifola frondose Polysaccharide—Protein Complex in Combination with Cyclophosphamide in H22 Tumor-Bearing Mice
MOLECULES
5.561
Heat-Killed Bifidobacterium longum BBMN68 in Pasteurized Yogurt Alleviates Mugwort Pollen-Induced Allergic Airway Responses through Gut Microbiota Modulation in a Murine Model
Foods
5.988
Olmesartan alleviates SARS-CoV-2 envelope protein induced renal fibrosis by regulating HMGB1 release and autophagic degradation of TGF-β1
Frontiers in Pharmacology
5.988
The influence of Hyssopus cuspidatus Boriss extract on lipid mediators metabolism network in asthmatic mice
Frontiers in Pharmacology
7.3
Toxoplasma gondii gra5 deletion mutant protects hosts against Toxoplasma gondii infection and breast tumors
Frontiers in Immunology
5.7
Protective efficacy of Toxoplasma gondii GRA12 or GRA7 recombinant proteins encapsulated in PLGA nanoparticles against acute Toxoplasma gondii infection in mice
Frontiers in Cellular and Infection Microbiology
7.033
Surface Engineering of HEK293 Cell-Derived Extracellular Vesicles for Improved Pharmacokinetic Profile and Targeted Delivery of IL-12 for the Treatment of Hepatocellular Carcinoma
International Journal of Nanomedicine
4.026
Dissolving Microneedle Arrays as a Hepatitis B Vaccine Delivery System Adjuvanted by APC-Targeted Poly (Lactic-co-Glycolic Acid) (PLGA) Nanoparticles
AAPS PHARMSCITECH
10.9
Targeting and cytotoxicity of chimeric antigen receptor T cells grafted with PD1 extramembrane domain
Experimental Hematology & Oncology
7.4
TIMELESS upregulates PD-L1 expression and exerts an immunosuppressive role in breast cancer
Journal of Translational Medicine
7.4
Inhalable CAR-T cell-derived exosomes as paclitaxel carriers for treating lung cancer
Journal of Translational Medicine
10.2
Synergetic regulation of cancer cells and exhausted T cells to fight cold tumors with a fluorinated EGCG-based nanocomplex
JOURNAL OF NANOBIOTECHNOLOGY
10.2
Autophagy-amplifying nanoparticles evoke immunogenic cell death combined with anti-PD-1/PD-L1 for residual tumors immunotherapy after RFA
JOURNAL OF NANOBIOTECHNOLOGY
37.3
Hsa_circ_0136666 stimulates gastric cancer progression and tumor immune escape by regulating the miR-375/PRKDC Axis and PD-L1 phosphorylation
Molecular Cancer
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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