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Elabscience

SKU:E-AB-F1024D-20Tests

PE Anti-Mouse CD272 Antibody[PK18.6]

PE Anti-Mouse CD272 Antibody[PK18.6]

Regular price $200.00 USD
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The PE Anti-Mouse CD272 Antibody [PK18.6] is a highly specific and reliable tool designed for the detection and analysis of CD272 expression in mouse samples. This antibody is conjugated with the phycoerythrin (PE) fluorochrome, which provides excellent sensitivity and fluorescence intensity for flow cytometry applications.

CD272, also known as B and T lymphocyte attenuator (BTLA), is a cell surface receptor that plays a crucial role in regulating immune responses. It is predominantly expressed on T cells, B cells, and dendritic cells. The PE Anti-Mouse CD272 Antibody [PK18.6] specifically recognizes the extracellular domain of CD272, allowing for precise identification and characterization of CD272-expressing cells.

With its high specificity and sensitivity, this antibody enables researchers to investigate the role of CD272 in immune regulation, immune tolerance, and autoimmune diseases. It can be used in various experimental settings, including immunophenotyping, cell sorting, and functional studies. The PE conjugation ensures bright and distinct staining, facilitating accurate analysis and interpretation of flow cytometry data.

The PE Anti-Mouse CD272 Antibody [PK18.6] is manufactured under strict quality control standards to ensure consistent performance and reproducibility. It is validated for use in flow cytometry applications and has been extensively tested on a variety of mouse tissues and cell lines. Each lot of antibody is accompanied by a detailed technical datasheet, providing comprehensive information on recommended protocols and optimal working conditions.

In summary, the PE Anti-Mouse CD272 Antibody [PK18.6] is a valuable tool for researchers studying immune regulation and related fields. Its high specificity, sensitivity, and PE conjugation make it an ideal choice for flow cytometry-based experiments, enabling accurate and reliable analysis of CD272 expression in mouse samples.
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