Equine CXCL10 (IP-10) ELISA

Catalog Number:
DIY0696E
Availability:
In stock
Application:
ELISA
100% Homology:
Equus caballus (horse), Equus przewalskii (Przewalski's horse)

Components

UsageQuantityComponentSize
Detection Antibody50 µgPBB0423E-050
Standard5 µgRP0058E-005
Capture Antibody100 µgPB0418E-1001 Pack (<= 10 Plates)
Capture Antibody100 µg X 2PB0418E-1001 Pack (<= 20 Plates)
  • The Equine CXCL10 (Interferon Gamma-Induced Protein 10, IP-10) ELISA is designed for the quantitative measurement of equine CXCL10 in cell culture supernatants. With minor modifications to the assay procedure, this ELISA may also be used to measure CXCL10 in additional biological sample types reported in the literature, including serum, plasma, synovial fluid, 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: Equine CXCL10 has been detected in serum (~40-700 pg/mL), plasma (~35-650 pg/mL), synovial fluid (~60-900 pg/mL), and PBMC culture supernatants (~100-1500 pg/mL under stimulation conditions), although levels vary depending on immune activation, infection, or experimental treatment. Interferon Gamma-Induced Protein 10 (CXCL10/IP-10) is a chemokine primarily produced by monocytes, macrophages, endothelial cells, and fibroblasts in response to interferon gamma (IFN-γ) signaling. It functions to recruit activated T cells, NK cells, and monocytes to sites of inflammation and plays a key role in Th1-driven immune responses, antiviral defense, and immune surveillance. Measurement of CXCL10 is widely used to assess cell-mediated immunity, inflammatory signaling, and interferon pathway activation in horses and related species. CXCL10 serves as an important biomarker of immune activation, disease progression, and vaccine response, supporting studies in equine immunology, comparative immunology, and translational research. Why measure Equine CXCL10: Measuring CXCL10 provides insight into Th1-driven immune responses, chemotactic signaling, and interferon pathway activation. Quantifying CXCL10 helps evaluate infection-induced immune responses, vaccine efficacy, and immunomodulatory treatments, making it a valuable tool for both basic and applied research in equine immunology. CXCL10 is a member of the CXC chemokine family, which also includes CXCL9 and CXCL11, all contributing to immune cell recruitment and inflammatory responses. 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
Equine CXCL10 (C-X-C motif chemokine ligand 10), also known as IP-10 (Interferon gamma–induced protein 10), is a proinflammatory chemokine belonging to the CXC chemokine family, which also includes CXCL9 (MIG) and CXCL11 (I-TAC) that regulate T-cell recruitment during antiviral and inflammatory immune responses. In horses (Equus caballus), CXCL10 is produced by macrophages, dendritic cells, epithelial cells, endothelial cells, and fibroblasts in response to interferon-γ (IFN-γ), viral infection, or inflammatory cytokines. CXCL10 signals primarily through the chemokine receptor CXCR3, which is expressed on activated T lymphocytes, natural killer (NK) cells, and other immune cells, promoting chemotaxis and activation of these immune cells at sites of infection or inflammation. In equine health, CXCL10 contributes to immune responses against viral and bacterial pathogens, including equine herpesvirus (EHV) infections and equine influenza virus, where recruitment of Th1-type T cells is important for antiviral immunity. Horses are also used as animal models for respiratory viral diseases, and CXCL10-mediated recruitment of CXCR3⁺ T cells in the respiratory tract has been studied to better understand interferon-driven immune responses, airway inflammation, and host–pathogen interactions relevant to both veterinary and comparative respiratory disease research.

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