Chicken Interleukin 8(IL-8) ELISA Kit

SKU:BHE10500470
Overview
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Quantitative ELISA kit for measuring chicken Interleukin 8(IL-8) (CXCL8) in serum, plasma, and tissue homogenates to support immunology studies. Sensitivity 0.78 pg/mL, detection range 1.56 pg/mL–400 pg/mL, typical assay time 1–5 h.
Target IL-8
Species Gallus gallus (Chicken)
Sample Type(s) serum, plasma, tissue homogenates
Assay Type Competitive ELISA (quantitative)
Sensitivity 0.78 pg/mL
Detection Range 1.56 pg/mL-400 pg/mL
Assay Time 1-5h
Options selector
Catalog no. Size
CSB-E14191C-96T 96 T
CSB-E14191C-96TX5 96 T×5
CSB-E14191C-96TX10 96 T×10
Available Options

Select from the available variant options shown for this product. Availability and lead time can vary by option.

  • Options: Size (96 T, 96 T×10, 96 T×5).
  • Lead time: options listed as "In Stock at Manufacturer" typically ship in 5–7 business days; other statuses may take longer.
  • Storage: refer to the product datasheet for storage and handling.
  • Sales terms and conditions: Please review prior to ordering.
Field Specification
Mfr No CSB-E14191C
Alternative Names CXCL8 ELISA Kit; CEF4 ELISA Kit; EMF1 ELISA Kit; IL8 ELISA Kit; Interleukin-8 ELISA Kit; IL-8 ELISA Kit; 9E3 ELISA Kit; C-X-C motif chemokine 8 ELISA Kit; CEF-4 ELISA Kit; Chemokine ELISA Kit; C-X-C motif) ligand 8 ELISA Kit; Embryo fibroblast protein 1 ELISA Kit; EMF-1 ELISA Kit
Assay Time
  • 1-5h
Assay Type
  • Competitive ELISA (quantitative)
Detection Range 1.56 pg/mL-400 pg/mL
Detection Wavelength 450 nm
Product Type
  • ELISA Kits
Reactivity
  • Chicken
Sample Type(s) serum, plasma, tissue homogenates
Sensitivity 0.78 pg/mL
Species Gallus gallus (Chicken)
Target IL-8
UniProt # P08317

Background

Interleukin 8(IL-8) (CXCL8) is a biological molecule commonly studied in immunology research. It is commonly discussed as part of cytokine signaling that coordinates immune and inflammatory responses.

UniProt: P08317

Biological context

Researchers often monitor Interleukin 8(IL-8) 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 Interleukin 8(IL-8) 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, Interleukin 8(IL-8) may also appear under names such as CXCL8 and CEF4. 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 Interleukin 8(IL-8) participates in.

Can’t Find What You’re Looking For? We can help you source the best match or customize an ELISA solution for your study. Options may include alternative target synonyms, different species reactivity, sample type/matrix compatibility (serum/plasma/lysate/supernatant), assay format (sandwich/competitive), sensitivity/range, detection chemistry (colorimetric/fluorescent/chemiluminescent), plate format (pre-coated/uncoated, strips vs full plate), and bulk or custom packaging. Click Talk to a Scientist to submit a request form, email us at support@biohippo.com, or explore our Research Services for additional support. Our team will be in contact with you shortly.

Spleen transcriptomics reveals breed-specific mechanisms of Salmonella resistance under heat stress in chickens

Y Wang, Q Wang, Z Wang, X Li, MS Elsharkawy, Y Lu,Poultry Science,2025

Investigation of the Potential of Heterophil/Lymphocyte Ratio as a Biomarker to Predict Colonization Resistance and Inflammatory Response to Salmonella enteritidis Infection in Chicken

M Thiam,Pathogens,2023

Comparative Analysis of the Liver Transcriptome of Beijing You Chickens and Guang Ming Broilers under Salmonella enterica Serovar Typhimurium Infection

Z Wang,Microorganisms ,2022

The immunological effect and pharmacological interaction of tylvalosin with lactobacillus acidophilus during vaccination of chickens with NDV vaccine

MA Fadel,Advances in Animal and Veterinary Sciences,2021

Clostridium butyricum alone or combined with 1, 25‐dihydroxyvitamin D3 improved early‐stage broiler health by modulating intestinal flora

Y Yu,Journal of Applied Microbiology,2021

Enhanced cytokine expression and upregulation of inflammatory signaling pathways in broiler chickens affected by wooden breast myopathy

T Xing,J. Sci. Food Agric,2020

Effect of Acute Heat Stress on the mRNA Levels of Cytokines in Broiler Chickens Subjected to Embryonic Thermal Manipulation

Saleh KMM, et al,Animals,2019

Differences in expression of genes in the MyD88 and TRIF signalling pathways and methylation of TLR4 and TRIF in Tibetan chickens and DaHeng S03 chickens infected with Salmonella enterica serovar Enteritidis

Xiaocheng Li.et al,Veterinary Immunology and Immunopathology,2017

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