Halloween Special Affielisa® Human Bcl-2 Homologous Antagonist/killer Elisa [ Bak1] Instant 35% Discount [h8OLFyEJ]
AffiELISA® Human Bcl-2 Homologous Antagonist/Killer ELISA [BAK1] The AffiELISA® Human Bcl-2 homologous antagonist/killer ELISA [BAK1] is a cutting-edge diagnostic tool designed for researchers and clinicians specializing in apoptosis and cancer biolo
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AffiELISA® Human Bcl-2 Homologous Antagonist/Killer ELISA [BAK1]
The AffiELISA® Human Bcl-2 homologous antagonist/killer ELISA [BAK1] is a cutting-edge diagnostic tool designed for researchers and clinicians specializing in apoptosis and cancer biology. This high-precision assay offers a reliable and efficient method for quantifying Bcl-2 homologous antagonist/killer (BAK1) protein levels in various biological samples. With its exceptional sensitivity and specificity, the AffiELISA® BAK1 kit is an invaluable asset for studying the role of BAK1 in cellular apoptosis and its potential as a therapeutic target in cancer research.Product Properties and Specifications
The AffiELISA® BAK1 kit features a unique antibody pair specifically designed to detect and measure BAK1 protein levels with exceptional accuracy. The kit includes all necessary reagents and protocols for a straightforward and reproducible assay procedure. Key features of the kit include:- High Sensitivity: Detects BAK1 protein levels as low as 0.5 ng/mL in serum or plasma samples.
- Specificity: Minimizes cross-reactivity with other Bcl-2 family members, ensuring accurate results.
- Easy-to-Use Protocol: The kit provides clear, step-by-step instructions for a hassle-free assay process.
Practical Uses and Benefits
The AffiELISA® Human Bcl-2 homologous antagonist/killer ELISA [BAK1] is an essential tool for researchers investigating the mechanisms of apoptosis and its role in cancer development. Its applications include:- Apoptosis Research: Assessing BAK1 protein levels in various cell lines and tissues to understand its role in programmed cell death.
- Cancer Research: Identifying potential therapeutic targets for cancer treatment by studying BAK1 expression and activity in tumor samples.
- Drug Development: Monitoring BAK1 protein levels in clinical trials to evaluate the efficacy of novel anti-cancer therapies.
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