Multi-species (Zebrafish, Stickleback) IL-4 ELISA

Catalog Number:
DIY1977Z
Availability:
In stock
Application:
ELISA
100% Homology:
Danio rerio (zebrafish), Gasterosteus aculeatus (three-spined stickleback)

Components

UsageQuantityComponentSize
Detection Antibody50 µgKPB1976Z-050
Standard5 µgRP1034Z-005
Capture Antibody100 µgKP1975Z-1001 Pack (<= 10 Plates)
Capture Antibody100 µg X 2KP1975Z-1001 Pack (<= 20 Plates)
  • The Zebrafish IL-4 (IL-4/13-like) ELISA is designed for the quantitative measurement of interleukin-4-like cytokine in zebrafish (Danio rerio) cell culture supernatants and can also be used to measure IL-4-like proteins in additional biological sample types reported in the literature, including whole-body lysates, tissue homogenates, and embryo or larval extracts, with minor protocol modifications recommended to optimize performance across different matrices. The zebrafish IL-4/13-like protein sequence is identical to that of Gasterosteus aculeatus (three-spined stickleback), enabling this assay to be used for accurate detection in both species. In teleost fish, IL-4/13-like cytokines (commonly referred to as IL-4/13A and IL-4/13B) are functional homologs of mammalian IL-4 and IL-13 and are produced primarily by T helper-like lymphocytes and innate lymphoid cells, where they regulate type 2 immune responses, macrophage alternative activation, mucus production, and mucosal immunity. These cytokines signal through receptor complexes analogous to the mammalian IL-4 receptor system and play key roles in host defense against helminth and protozoan infections, allergic-type inflammation, tissue repair, and regeneration. Basal IL-4/13-like expression in healthy fish is typically low or near the limit of detection, but levels increase significantly following parasitic infection, allergen exposure, chemical-induced inflammation, wounding, or experimental immune stimulation, depending on developmental stage and experimental conditions. In developmental biology, comparative immunology, and aquatic disease research, IL-4/13-like cytokines serve as important biomarkers of Th2-type immune polarization, macrophage alternative activation, mucosal immune responses, and host-pathogen interactions in zebrafish and stickleback model systems. The ELISA kit contains a capture antibody, detection antibody, and recombinant zebrafish IL-4/13-like protein standard validated for use together in an ELISA format; kit components are not supplied in matched quantities and may be purchased separately. This product is for research use only, not for use in diagnostic or therapeutic procedures, and is manufactured in the USA.
Storage Conditions2°C to 8°C or -20°C
Country Of OriginUSA
Zebrafish (Danio rerio) and Three-Spined Stickleback (Gasterosteus aculeatus) possess IL-4/13–like cytokines that are functional homologs of mammalian IL-4 and IL-13 and share highly conserved structural and functional features between these teleost species. Due to ancestral genome duplication events in ray-finned fish, both zebrafish and stickleback encode IL-4/13A and IL-4/13B paralogs, which collectively mediate type 2–like immune responses. These cytokines signal through receptor complexes homologous to IL-4Rα/IL-13R–type chains and activate STAT6-dependent pathways, promoting alternative (M2-like) macrophage polarization, modulation of pro-inflammatory cytokine production (e.g., il1b and tnfa), enhancement of epithelial barrier function, and support of tissue repair processes. In both species, IL-4/13–like cytokines are induced during helminth infection, mucosal inflammation, and tissue injury, where they contribute to immune regulation and resolution of inflammation. Zebrafish and stickleback are widely used models in immunology, evolutionary biology, and host–parasite interaction studies, and characterization of their IL-4/13–like signaling pathways provides insight into the evolutionary origins of Th2-type immunity. As conserved regulators of type 2–associated immune responses, IL-4/13–like cytokines in these species support comparative research into macrophage plasticity, mucosal immunity, and cytokine network evolution relevant to vertebrate inflammatory and allergic diseases.

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