| Field | Specification |
|---|---|
| Mfr No | |
| Alternative Names | IFNG ELISA Kit; Interferon gamma ELISA Kit; BoIFNG ELISA Kit; IFN-gamma ELISA Kit |
| Assay Time | |
| Assay Type | |
| Detection Range | |
| Detection Wavelength | |
| Product Type | |
| Reactivity | |
| Sample Type(s) | serum, plasma, tissue homogenates |
| Sensitivity | |
| Species | |
| Target | |
| UniProt # |
Background
Interferon γ (IFNG) is a biological molecule commonly studied in immunology research. It is commonly used as a molecular readout in mechanistic and biomarker-focused studies.
UniProt: P07353
Biological context
Researchers often monitor Interferon γ in serum, plasma, and tissue homogenates to better understand themes such as innate and adaptive immune responses, cytokine signaling networks, and host–pathogen interactions. In many model systems, measured levels can shift with physiology, experimental perturbation, or disease-associated changes, making careful biological interpretation important.
Interpreting changes in measured levels
Depending on sample matrix and study design, increases or decreases in Interferon γ may reflect differences in expression, secretion, turnover, or compartmentalization rather than a single mechanism. Interpretation is typically strengthened by evaluating related molecules (for example, cytokines, chemokines, acute-phase proteins, and immune-cell activation markers) and by keeping pre-analytical variables consistent across groups.
Nomenclature
In publications and databases, Interferon γ may also appear under names such as IFNG and Interferon gamma. When comparing studies, confirm that the reported analyte refers to the same molecule and species context.
Why ELISA data are widely used
ELISA is a common approach for quantitative measurement of proteins and biomarkers in complex samples, enabling comparisons across experimental groups and time points. When integrating results with other readouts, consider species biology, sample type, and the broader pathway context that Interferon γ participates in.
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Impact of Nigella sativa meal on blood metabolites and immune status of growing lambs
HA Nasr, FA Eldeeb, A Ahmed,Journal of Advanced Veterinary and Animal Research,2025
Trace element and cytokine imbalances in calves with dermatophytosis
HG Lee, A Cho, UH Kim, S An, YJ Do, C Choe,Korean Journal of Veterinary Service,2024
Unleashing lactoferrin's antidepressant potential through the PI3K/Akt/mTOR pathway in chronic restraint stress rats
HH Ahmed,Food & function,2023
Dynamics of oxidative stress and immune responses in neonatal calves during diarrhea
ZL Fu,Journal of dairy science,2024
The relationship between serum cytokine profile and vitamin D in calves with neonatal diarrhea
M Caliskan,Cytokine,2023
Association of the MACROD2 rs6110695 A>G polymorphism with an increasing WBC count in a Korean population
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The effect of staphylococcal mastitis including resistant strains on serum procalcitonin, neopterin, acute phase response and stress biomarkers in Holstein dairy cows
W El-Deeb,PeerJ,2021
Protective immune response against P32 oncogenic peptide-pulsed PBMCs in mouse models of breast cancer
M Dehghan-Manshadi,Environmental Science and Pollution Research,2021
Complete genome sequence and antimicrobial activity of Bacillus velezensis JT3-1, a microbial germicide isolated from yak feces
Y Li,3 Biotech,2020
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SB Kim,CAAS Agricultural Journals,2020
Immune Responses of Cattle to Theileria orientalis Infection and Seasonal Change
Changyong Choe, et al,International Journal of Applied Research in Veterinary Medicine,2018
Kinetics of Interferon gamma and Interleukin-21 response following foot and mouth disease virus infection
Ajay Kumar Sharma .et al,Microbial Pathogenesis,2018
Kinetics of selected plasma cytokines during innate-adaptive immune response transition in adult cattle infected with the bovine ephemeral fever virus
R. Barigye.et al,Veterinary Microbiology,2016
Dietary effects of lutein-fortified chlorella on milk components of Holstein cows.
Jeon JY.et al,Springerplus.,2016