Antibodies that detect CD25 can be used in several scientific applications, including Flow Cytometry, Western Blot, Immunohistochemistry (Paraffin), Immunohistochemistry (Frozen) and Functional assay. These antibodies target CD25 in Human, Mouse, Rat, Non-human primate and Canine samples. Our CD25 monoclonal, polyclonal, recombinant monoclonal and recombinant polyclonal antibodies are developed in Mouse, Rat, Rabbit and Goat. These antibodies have been verified by Cell treatment, IP-MS, Relative expression and Neutralization to confirm specificity to CD25. Find the CD25 antibody that fits your needs. Choose from 1 of 152 CD25 antibodies, which have been validated in experiments with 2276 publications and 1164 images featured in our data gallery.
Browse primary antibodies for WB, Flow, IHC, ICC/IF, ELISA, IP, and other applications. Antibodies with Advanced Verification data have been validated for specificity to ensure that the antibody binds to the antigen stated. If you cannot find the antibody you're looking for, contact us today to develop custom antibodies for specific targets, species and applications.
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CD25 (IL2 receptor alpha chain/IL2RA) is a cytokine that plays a role in the proliferation of T and B lymphocytes. The receptor of this cytokine (IL2RA) is a heterotrimeric protein complex with a gamma chain also shared by interleukin 4 (IL4) and interleukin 7 (IL7). IL2RA, IL2R beta chain (IL2RB), and the IL2R gamma chain (IL2RG), constitute the high-affinity IL2 receptor. Homodimeric IL2RA chains result in low-affinity receptor, while homodimeric IL2RB chains produce a medium-affinity receptor. The expression of IL2 in mature thymocytes is monoallelic, which represents an unusual regulatory mode for controlling the precise expression of a single gene. IL2 is primarily produced by mature T cells. IL2 plays an important role as a growth factor, differentiation factor, and regulator of cell death. IL-2 stimulates the proliferation of B cells, augments natural killer cell activity, and inhibits granulocyte macrophage colony formation. The targeted disruption of a similar gene in mice leads to ulcerative colitis-like disease, which suggests a role in the immune response to antigenic stimuli. Mutations in this gene are associated with interleukin 2 receptor alpha deficiency.
ADA; ADA1; Adenosine aminohydrolase; adenosine deaminase; CD25; CD25 antigen; cytokine receptor; IDDM10; IL 2 RA; IL 2 receptor; IL 2R; IL 2R subunit alpha; IL2 RA; IL2 RA antibody; IL2 receptor; il-2 receptor alpha; IL-2 Receptor alpha chain; IL-2 receptor alpha subunit; IL2 receptor subunit alpha; IL-2 receptor subunit alpha; IL2R; IL-2R alpha; IL-2R alpha chain; IL2R subunit alpha; IL-2R subunit alpha; Il2ra; IL-2RA; IL-2-RA; IL2-RA; Il2ra antibody; IL2RAC; IMD41; interleukin 2 receptor; interleukin 2 receptor alpha chain; interleukin 2 receptor subunit alpha; interleukin 2 receptor, alpha; interleukin 2 receptor, alpha chain; interleukin-2 receptor alpha; interleukin-2 receptor alpha chain; interleukin-2 receptor alpha subunit; interleukin-2 receptor beta chain; Interleukin2 receptor subunit alpha; interleukin-2 receptor subunit alpha; Ly-43; p55; p55 chain; sIL 2R; soluble IL 2 receptor; TAC antigen; TCGFR
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