Swine TNF alpha ELISA

Catalog Number:
DIY0732S
Availability:
In stock
Application:
ELISA
100% Homology:
Sus scrofa (pig)

Components

UsageQuantityComponentSize
Detection Antibody50 µgPBB0318S-050
Standard5 µgRP0080S-005
Capture Antibody100 µgPB0317S-1001 Pack (<= 10 Plates)
Capture Antibody100 µg X 2PB0317S-1001 Pack (<= 20 Plates)
  • The Swine TNF-α (Tumor Necrosis Factor Alpha) ELISA is designed for the quantitative measurement of swine TNF-α in cell culture supernatants and can also be used to measure TNF-α in additional biological sample types reported in the literature, including serum, plasma, tissue lysates, and bronchoalveolar lavage fluid, supporting a wide range of immunology, inflammation, and translational research applications. TNF-α is a pro-inflammatory cytokine primarily produced by activated macrophages, monocytes, and T cells, and it plays a central role in innate immunity, inflammation, apoptosis, and the regulation of immune responses. In swine models, TNF-α is widely studied in the context of infectious disease, sepsis, vaccine response, autoimmune disorders, and acute and chronic inflammation, where its expression reflects the magnitude and dynamics of inflammatory immune activation. Measurement of TNF-α provides valuable insight into inflammatory signaling, disease progression, and therapeutic efficacy. Reported measurements of swine TNF-α have detected basal serum and plasma levels of approximately 10-100 pg/mL, with substantially elevated levels-often 500-2,000 pg/mL-following immune stimulation, infection, or inflammatory challenge, and measurable expression has also been observed in tissue lysates from inflamed or infected organs. The kit contains a capture antibody, detection antibody, and recombinant protein standard for assay development, and 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
Swine Tumor Necrosis Factor Alpha (TNF-α) (also known as TNF or cachectin) is a proinflammatory cytokine that plays a central role in innate immune responses, inflammation, and host defense against pathogens in pigs (Sus scrofa). TNF-α is a member of the tumor necrosis factor (TNF) superfamily, which includes related cytokines such as TNF-β (lymphotoxin-α), Fas ligand (FasL), CD40 ligand (CD40L), and TRAIL, molecules that regulate immune signaling, apoptosis, and inflammatory pathways. In pigs, TNF-α is primarily produced by activated macrophages, monocytes, dendritic cells, and T lymphocytes in response to infection, endotoxin exposure, or tissue injury. TNF-α exerts its biological effects by binding to TNF receptors TNFR1 (p55) and TNFR2 (p75), activating intracellular signaling pathways including NF-κB, MAPK, and caspase-mediated pathways, which regulate cytokine production, immune cell activation, apoptosis, and inflammatory responses. In swine health, TNF-α is involved in immune responses to bacterial, viral, and parasitic infections, including porcine reproductive and respiratory syndrome virus (PRRSV), African swine fever virus (ASFV), and bacterial respiratory pathogens, where it contributes to inflammatory defense and activation of innate immunity. However, excessive TNF-α production can contribute to systemic inflammation, fever, and tissue damage during severe infections. Because pigs are widely used as large-animal models for human immunology and infectious disease, swine TNF-α is extensively studied in veterinary immunology, respiratory disease research, and translational biomedical models, providing insights into cytokine regulation and inflammatory responses relevant to both animal health and human disease.

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