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Elabscience

SKU:E-AB-F1122D

PE Anti-Mouse CD45.2 Antibody[104.2]

PE Anti-Mouse CD45.2 Antibody[104.2]

Regular price $200.00 USD
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PE Anti-Mouse CD45.2 Antibody[104.2]

The PE Anti-Mouse CD45.2 Antibody[104.2] is a highly specific and reliable tool designed for the detection and analysis of CD45.2 expression in mouse samples. This antibody is conjugated with phycoerythrin (PE), a fluorescent dye known for its exceptional brightness and stability, ensuring accurate and consistent results.

CD45.2, also known as leukocyte common antigen (LCA), is a transmembrane protein expressed on the surface of all nucleated hematopoietic cells. It plays a crucial role in the regulation of immune responses and cell signaling. The PE Anti-Mouse CD45.2 Antibody[104.2] specifically targets CD45.2, allowing for precise identification and characterization of leukocyte populations in various research applications.

This antibody has been extensively validated and optimized for flow cytometry, a widely used technique for analyzing and sorting cells based on their surface markers. With its exceptional specificity and sensitivity, the PE Anti-Mouse CD45.2 Antibody[104.2] enables researchers to accurately discriminate CD45.2-positive cells from other cell types, facilitating in-depth investigations into immune cell subsets and their functions.

The PE conjugation of this antibody provides several advantages. PE is known for its high fluorescence intensity, allowing for easy detection even at low expression levels. Additionally, PE exhibits excellent photostability, ensuring consistent signal intensity throughout the experiment. The PE Anti-Mouse CD45.2 Antibody[104.2] is supplied in a ready-to-use format, eliminating the need for time-consuming conjugation procedures and ensuring convenience and reproducibility.

In summary, the PE Anti-Mouse CD45.2 Antibody[104.2] is a reliable and efficient tool for the detection and analysis of CD45.2 expression in mouse samples. Its exceptional specificity, sensitivity, and PE conjugation make it an ideal choice for flow cytometry-based studies, enabling researchers to gain valuable insights into the immune system and its functions.

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