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Elabscience

SKU:E-AB-F1181UD-100μg

PE Anti-Mouse CD326 Antibody[ G8.8]

PE Anti-Mouse CD326 Antibody[ G8.8]

Regular price $200.00 USD
Regular price Sale price $200.00 USD
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The PE Anti-Mouse CD326 Antibody [G8.8] is a highly specific and reliable tool designed for the detection and analysis of CD326 expression in mouse samples. This antibody is conjugated with the phycoerythrin (PE) fluorochrome, which provides excellent sensitivity and fluorescence intensity for flow cytometry applications.

CD326, also known as EpCAM (Epithelial Cell Adhesion Molecule), is a transmembrane glycoprotein that plays a crucial role in cell adhesion and signaling. It is widely expressed in epithelial tissues and has been implicated in various physiological and pathological processes, including embryogenesis, tissue regeneration, and cancer progression.

The PE Anti-Mouse CD326 Antibody [G8.8] exhibits exceptional specificity towards mouse CD326, ensuring accurate and reliable results. It has been extensively validated for flow cytometry analysis of various mouse tissues, including epithelial tissues, tumors, and stem cells.

With its bright PE fluorescence and low background staining, this antibody enables precise identification and quantification of CD326-positive cells in complex samples. Its high affinity and sensitivity allow for the detection of low-abundance CD326-expressing cells, making it an invaluable tool for researchers studying epithelial biology, cancer research, and stem cell characterization.

The PE Anti-Mouse CD326 Antibody [G8.8] is supplied in a convenient format, ready for immediate use. It is provided in a liquid formulation, ensuring ease of handling and minimizing the risk of sample contamination. Each vial contains sufficient antibody for multiple experiments, ensuring cost-effectiveness and consistent results.

In summary, the PE Anti-Mouse CD326 Antibody [G8.8] is a highly specific, sensitive, and reliable tool for the detection and analysis of CD326 expression in mouse samples. Its exceptional performance in flow cytometry applications makes it an essential reagent for researchers in various fields, facilitating advancements in epithelial biology, cancer research, and stem cell studies.
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