Chicken IFN gamma ELISA

Catalog Number:
DIY0684C
Availability:
In stock
Application:
ELISA
100% Homology:
Gallus gallus (chicken)

Components

UsageQuantityComponentSize
Detection Antibody50 µgPBB0448C-050
Standard5 µgRP0115C-005
Capture Antibody100 µgPB0442C-1001 Pack (<= 10 Plates)
Capture Antibody100 µg X 2PB0442C-1001 Pack (<= 20 Plates)
  • The Chicken IFN-γ (Interferon-gamma) ELISA is designed for the quantitative measurement of chicken IFN-γ in cell culture supernatants. With minor modifications to the assay procedure, this ELISA may also be used to measure IFN-γ in additional biological sample types reported in the literature, including serum, plasma, peripheral blood mononuclear cell (PBMC) culture supernatants, and tissue homogenates or lysates, depending on the experimental model and physiological context. This flexibility supports a wide range of immunology and translational research applications. Reported measurements: Chicken IFN-γ has been detected in serum (~0.1-5 ng/mL), plasma (~0.05-2 ng/mL), and PBMC culture supernatants (~10-200 pg/mL under stimulation conditions), although levels vary depending on immune activation, infection, or experimental treatment. Interferon-gamma (IFN-γ) is a type II interferon primarily produced by activated T lymphocytes and natural killer (NK) cells. It plays a central role in cell-mediated immunity, antiviral defense, macrophage activation, and Th1 immune responses. Measurement of IFN-γ is widely used to assess immune activation, vaccine response, infection progression, and inflammatory signaling in chicken and related species. IFN-γ serves as an important biomarker of adaptive immune activation, antiviral defense, and disease progression, supporting studies in avian immunology, comparative immunology, and translational research. Why measure IFN-γ: Quantifying IFN-γ provides critical insight into cell-mediated immunity and the activation of Th1-driven immune pathways. It is commonly used to evaluate vaccine efficacy, immune responses to infection, and immunomodulatory therapies in poultry research. IFN-γ is a member of the type II interferon family, which includes other interferons involved in antiviral responses, immune modulation, and macrophage activation. The kit contains a capture antibody, detection antibody, and recombinant protein standard for assay development. These antibodies have been validated to function together in an ELISA format using the provided standard. Optimal buffers, antibody concentrations, incubation times, temperatures, and assay conditions have not been predetermined, allowing researchers to optimize assay sensitivity and dynamic range based on their specific sample type and experimental requirements. The quantities of kit components are not matched, and individual components may be purchased separately. This product is for research use only and is manufactured in the USA.
Storage Conditions2°C to 8°C or -20°C
Country Of OriginUSA
Chicken Interferon-Gamma (IFN-γ) is the sole type II interferon in chickens (Gallus gallus) and is produced primarily by activated CD4⁺ and CD8⁺ T lymphocytes as well as natural killer (NK)-like cells, where it plays a central role in cell-mediated (Th1-type) immunity. IFN-γ signals through the IFN-γ receptor complex (IFNGR1/IFNGR2), activating JAK/STAT1 pathways and inducing genes involved in macrophage activation, enhanced antigen presentation via upregulation of MHC class I and II molecules, and promotion of cytotoxic T-cell responses. In poultry health, IFN-γ is critical for defense against intracellular pathogens and economically significant diseases such as avian influenza virus, Newcastle disease virus, Marek’s disease virus, Salmonella spp., Eimeria spp. (coccidiosis), and Mycobacterium avium, where robust Th1 responses contribute to pathogen control and vaccine-induced protection. Altered or insufficient IFN-γ responses can impact disease susceptibility, growth performance, and flock health. In research settings, chickens serve as important models for avian viral oncogenesis (Marek’s disease), mucosal immunity, and vaccine development, and characterization of chicken IFN-γ supports studies of T-cell biology, host–pathogen interactions, immune correlates of protection, and comparative cell-mediated immunity relevant to both veterinary and broader immunological research.

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