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Key Features

Purified Anti-Mouse F4/80 Antibody [CI:A3-1] (AGEL0042)

SKU AGEL0042
Product Type Antibody
Antibody Type Monoclonal Antibody
Reactivity Mouse
Host Species Rat
Isotype IgG2b
Clone CI:A3-1
Conjugation Unconjugated
Applications FC
Applications IF
€25 - €63
Global Shipping: 80+ Countries
White Glove Service: Available upon request
Batch Consistency: Contact Sales
Distributors: 60+ Countries

Description

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Purified Anti-Mouse F4/80 Antibody [CI:A3-1]

The Mouse F4/80 Monoclonal Antibody (CI:A3-1) is meticulously designed for research involving F4/80, a key cell surface molecule extensively expressed on tissue macrophages and implicated in immune regulation. This monoclonal antibody, produced in mice, is highly specific to mouse F4/80 and is validated for use in flow cytometry and immunohistochemistry applications. It binds specifically to the F4/80 protein, facilitating precise detection and analysis across various cell types, making it an ideal choice for studies in immunology and cancer research.F4/80, also known as EMR1 (Epidermal Growth Factor-like Module Containing Mucin-like Hormone Receptor-like 1), plays a crucial role in macrophage function and immune homeostasis by regulating inflammation and promoting tissue repair. Its significance in immune response modulation makes F4/80 a valuable target for research into diseases such as cancer, autoimmune disorders, and chronic inflammatory conditions.

The Mouse F4/80 Monoclonal Antibody (CI:A3-1) is vital for researchers seeking to understand macrophage biology and develop therapies that harness or modulate immune function.By enabling accurate and sensitive detection of F4/80, this antibody supports comprehensive studies of immune response pathways, contributing to the advancement of therapeutic strategies for autoimmune diseases, chronic inflammatory conditions, and cancer. Understanding the activity of F4/80 is crucial for the development of novel immunotherapies that leverage or modulate macrophage function in various disease contexts. This antibody is essential for advancing research in immunology and cancer.

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