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SKU:BT-AP04241

HSP 90 Polyclonal Antibody

HSP 90 Polyclonal Antibody

Regular price $275.00 USD
Regular price Sale price $275.00 USD
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HSP90AB1 encodes a member of the heat shock protein 90 family; these proteins are involved in signal transduction, protein folding and degradation and morphological evolution. This gene encodes the constitutive form of the cytosolic 90 kDa heat-shock protein and is thought to play a role in gastric apoptosis and inflammation. Alternative splicing results in multiple transcript variants. Pseudogenes have been identified on multiple chromosomes.

The HSP 90 Polyclonal Antibody is a highly reliable and efficient tool for the detection and analysis of Heat Shock Protein 90 (HSP 90) in various biological samples. This antibody is produced using advanced techniques and exhibits exceptional specificity and sensitivity, ensuring accurate and precise results.

The HSP 90 Polyclonal Antibody is designed to recognize and bind to HSP 90, a crucial molecular chaperone involved in protein folding and stabilization. By targeting HSP 90, this antibody enables researchers to investigate the role and function of this important protein in cellular processes and disease mechanisms.

This antibody is suitable for a wide range of applications, including Western blotting, immunohistochemistry, immunofluorescence, and enzyme-linked immunosorbent assay (ELISA). It has been extensively validated and optimized to provide consistent and reproducible results across different experimental conditions.

The HSP 90 Polyclonal Antibody is manufactured using high-quality materials and undergoes rigorous quality control procedures to ensure its performance and reliability. It is supplied as a liquid formulation, ready to use, and can be conveniently stored at -20°C for long-term preservation.

With its exceptional specificity, sensitivity, and versatility, the HSP 90 Polyclonal Antibody is an indispensable tool for researchers in the fields of molecular biology, biochemistry, and cell biology. It offers a valuable means to explore the intricate mechanisms underlying protein folding and cellular stress response, paving the way for advancements in drug discovery and therapeutic interventions.

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