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Mouse anti-Human IL-2 Antibody (S-3677)

Mouse anti-Human IL-2 Antibody (S-3677)

Catalog Number: S0B7095 Application: FCM Reactivity: Hu Conjugation: Unconjugated Brand: Starter
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Regular price $175 USD
Regular price Sale price $175 USD
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Product Details

Product Specification


Host Mouse
Antigen IL-2
Synonyms Interleukin-2; IL2
Location Secreted
Accession P60568
Clone Number S-3677
Antibody Type Mouse mAb
Isotype Mouse IgG1, κ
Isotype Control Invivo mouse IgG1 isotype control
Application FCM
Reactivity Hu
Purification Protein G
Concentration 5 mg/ml
Purity >95%(Determined by SDS-PAGE)
Endotoxin <1EU/mg
Conjugation Unconjugated
Physical Appearance Liquid
Storage Buffer

PBS pH7.4, containing no preservative

Stability & Storage

2 to 8 °C for 2 weeks under sterile conditions;
-20 °C for 3 months under sterile conditions;
-80 °C for 24 months under sterile conditions.
Please avoid repeated freeze-thaw cycles.

Background

Interleukin-2 (IL-2) is a pivotal cytokine primarily secreted by activated CD4+ T helper cells and, to a lesser extent, by CD8+ cytotoxic T cells, playing a central role in the regulation of the immune system’s growth, differentiation, and homeostasis. Often referred to as T-cell growth factor, IL-2 exerts its biological effects by binding to a specific cell-surface receptor complex composed of three subunits: CD25 (IL-2Rα), CD122 (IL-2Rβ), and CD137 (IL-2Rγc), with the high-affinity trimeric receptor being crucial for robust signal transduction via the JAK-STAT pathway. This signaling cascade promotes the proliferation and survival of antigen-stimulated T cells, enhances the cytotoxic activity of natural killer (NK) cells, and supports the development and maintenance of regulatory T cells (Tregs), which are essential for preventing autoimmunity and maintaining peripheral tolerance. Due to its potent immunostimulatory properties, recombinant IL-2 has been clinically utilized as an immunotherapy agent for treating metastatic renal cell carcinoma and malignant melanoma, although its therapeutic application is often limited by significant systemic toxicity, prompting ongoing research into engineered variants or targeted delivery systems that can selectively enhance anti-tumor immunity while minimizing adverse effects on healthy tissues.