| Field | Specification |
|---|---|
| Mfr No | |
| Alternative Names | IgA|Immunoglobulin A |
| Assay Time | |
| Detection Method | |
| Detection Range | |
| Product Type | |
| Reactivity | |
| Sample Type(s) | Serum, Plasma, Cell Culture Supernatant, cell or tissue lysate, Other liquid samples |
| Sensitivity | |
| Species | |
| Storage | |
| Target |
Background
chicken IgA (Immunoglobulin A) is a molecular target commonly studied in immunology research. Circulating plasma proteins support transport, buffering, and homeostatic processes in blood and extracellular fluids.
Biological role and mechanism
The biological role of IgA is typically understood in terms of its molecular category and interaction network. Depending on the model system, it may participate in cell–cell communication, intracellular signaling, enzymatic processing, or regulation of gene expression programs. Mechanistic interpretation is often strengthened by considering upstream regulators and downstream readouts rather than relying on a single marker.
Expression and abundance of IgA can vary by tissue, cell type, and physiological state. In many systems, levels are influenced by factors such as developmental stage, immune activation, metabolic status, and cellular stress. Because sample matrix and pre-analytical handling can affect measured concentrations, interpretation is typically strongest when experiments keep collection and processing consistent across groups.
Nomenclature and related terms
IgA (Immunoglobulin A) may also be referenced as IgA and Immunoglobulin A in the literature or in databases. When comparing results across studies, confirm that the reported analyte refers to the same molecule, species context, and molecular form (e.g., precursor vs mature protein, or soluble vs membrane-associated forms).
Why it matters in research
- Understanding how IgA relates to innate and adaptive immune responses, cytokine signaling networks, host–pathogen interactions, and immune cell activation and trafficking in immunology research.
- Interpreting shifts in IgA levels alongside other pathway components or complementary markers.
- Connecting molecular changes to phenotypes such as inflammation, remodeling, metabolism shifts, or cell-state transitions (context-dependent).
Molecular forms and interpretation
For some targets, isoforms, proteolytic processing, or post-translational modifications (such as phosphorylation or glycosylation) can influence function and apparent abundance. If multiple molecular forms are expected in your model, align interpretation with the form most relevant to the biological question.
Disease and translational relevance
IgA has been investigated across diverse physiological and disease contexts, and changes in its abundance have been reported in areas aligned with immunology studies. These associations are interpreted as research findings rather than diagnostic or therapeutic claims, and they should be evaluated alongside model-specific covariates and study design.
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Effects of Anticoccidial Vaccination and Taraxacum officinale Extract on the Growth Performance, Biochemical Parameters, Immunity, and Intestinal Morphology of Eimeria-Challenged Chickens
IF: 3.2 Journal: Life Author: Department of Animal Nutrition and Feed Science, National Research Institute of Animal Production, 32-083 Balice, Poland Cited Date: 2023-09-22
Effects of injection of bacterial peptides and CpG-ODN on serovar Heidelberg infection in specific pathogen-free (SPF) chicks
IF: 2.8 Journal: Avian Pathology Author: Department of Preventive Veterinary Medicine, Veterinary School, Federal University of Minas Gerais (UFMG), Belo Horizonte, MG 31270-901, Brazil Cited Date: 2024-01-26
Immune Parameters in Chickens Treated with Antibiotics and Probiotics during Early Life
IF: 2.752 Journal: Animals Cited Date: 2022-05-05
Comparative Effects of Using New Multi-Strain Synbiotics on Chicken Growth Performance, Hematology, Serum Biochemistry and Immunity
IF: 2.323 Journal: Animals Cited Date: 2020-09-02
In ovo Injection of a Galacto-Oligosaccharide Prebiotic in Broiler Chickens Submitted to Heat-Stress: Impact on Transcriptomic Profile and Plasma Immune Parameters
IF: 1.832 Journal: Animals Cited Date: 2019-12-02