Us Stock Fuca1 Polyclonal Antibody Store At -20°c Money-back Guarantee [e2tJ7qGF]
FUCA1 Polyclonal Antibody: High-Quality Research Tool Introducing our FUCA1 Polyclonal Antibody, a powerful tool for researchers seeking to study fucose-containing glycoproteins and glycolipids. This antibody is designed to provide exceptional specif
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FUCA1 Polyclonal Antibody: High-Quality Research Tool
Introducing our FUCA1 Polyclonal Antibody, a powerful tool for researchers seeking to study fucose-containing glycoproteins and glycolipids. This antibody is designed to provide exceptional specificity and sensitivity, making it ideal for various applications. With its convenient storage at -20°C and long shelf life, the FUCA1 Polyclonal Antibody ensures easy access and consistent performance in your laboratory.- High specificity for human and mouse targets
- Applications include WB and IHC
- Produced by affinity purification for enhanced purity
Key Features and Specifications
The FUCA1 Polyclonal Antibody is developed using recombinant human FUCA1 protein as the immunogen, ensuring high affinity and specificity. This rabbit monoclonal antibody is conjugated to IgG, offering reliable results across different experimental settings. Here are some of its key features and specifications:- Isotype: IgG
- Host: Rabbit
- Reactivity: Human, Mouse
- Applications: WB, IHC
- Cellular Localization: Lysosome
- Concentration: 0.7 mg/mL
- Buffer: Phosphate buffered solution, pH 7.4, containing 0.05% stabilizer and 50% glycerol
- Purification Method: Affinity purification
Practical Applications and Benefits
The FUCA1 Polyclonal Antibody is an invaluable resource for researchers working in the fields of metabolism and signal transduction. Its versatility makes it suitable for various applications, including Western blotting (WB) and immunohistochemistry (IHC). This antibody can help you:- Identify and study fucose-containing glycoproteins and glycolipids
- Contribute to the understanding of lysosomal storage diseases like fucosidosis (FUCA1D)
- Facilitate research in metabolism and signal transduction pathways
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