Anti-Human NR5A1 Monoclonal Antibody (1A706)
The Anti-Human NR5A1 Monoclonal Antibody (1A706) is a highly specific and potent antibody designed for the detection and analysis of the NR5A1 protein in human samples. This antibody is a valuable tool for researchers studying the role of NR5A1 in various biological processes and diseases.
Biological Function
NR5A1, also known as steroidogenic factor 1 (SF-1), is a nuclear receptor that plays a crucial role in the regulation of steroidogenesis, development, and metabolism. It is primarily expressed in steroidogenic tissues and plays a key role in the development and function of the adrenal gland, gonads, and hypothalamus. NR5A1 also regulates the expression of genes involved in cholesterol and lipid metabolism, making it a potential target for therapeutic interventions.
Main Applications
The Anti-Human NR5A1 Monoclonal Antibody (1A706) is specifically designed for use in various applications, including Western blotting, immunohistochemistry, and immunofluorescence. Its high specificity and sensitivity make it an ideal choice for the detection and quantification of NR5A1 in human tissue and cell samples.
Experimental Use Cases
This antibody has been extensively validated for use in research studies and has shown excellent results in various experimental settings. For example, it has been used to study the expression and localization of NR5A1 in different tissues and cell lines. It has also been used to investigate the role of NR5A1 in steroidogenesis, metabolism, and development.
This monoclonal antibody is specifically designed for the detection of NR5A1 in human samples. It is a highly specific and potent tool for researchers studying the biological function and applications of this nuclear receptor. Its use in various experimental settings has been extensively validated, making it a reliable choice for studying NR5A1.
In conclusion, the Anti-Human NR5A1 Monoclonal Antibody (1A706) is a valuable tool for studying the role of NR5A1 in various biological processes and diseases. Its high specificity, sensitivity, and extensive validation make it an ideal choice for researchers looking to understand the function and applications of this important nuclear receptor. Order now and take your research to the next level.
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