BT Lab
SKU:BT-AP09011
DBC1 Rabbit Polyclonal Antibody
DBC1 Rabbit Polyclonal Antibody
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This gene is located within a chromosomal region that shows loss of heterozygosity in some bladder cancers. It contains a 5' CpG island that may be a frequent target of hypermethylation| and it may undergo hypermethylation-based silencing in some bladder cancers.
The DBC1 Rabbit Polyclonal Antibody is a highly specific and reliable tool for the detection and analysis of DBC1 protein expression in various biological samples. This antibody has been meticulously developed and validated to ensure exceptional performance and accuracy in immunohistochemistry (IHC), immunofluorescence (IF), and western blotting applications.
The DBC1 Rabbit Polyclonal Antibody exhibits exceptional sensitivity and specificity, enabling precise and robust detection of DBC1 protein in a wide range of experimental settings. It has been rigorously tested and validated against multiple cell lines and tissues, ensuring consistent and reproducible results.
This antibody is produced using high-quality rabbit polyclonal antibodies that have been carefully selected and purified to ensure optimal performance. It has been extensively characterized to guarantee batch-to-batch consistency, providing researchers with reliable and reproducible results.
The DBC1 Rabbit Polyclonal Antibody is supplied as a liquid formulation, allowing for easy and convenient handling. It is provided in a ready-to-use format, eliminating the need for time-consuming and complex antibody preparation procedures.
With its exceptional performance and reliability, the DBC1 Rabbit Polyclonal Antibody is an indispensable tool for researchers studying DBC1 protein expression and its role in various biological processes. Whether investigating DBC1 in cancer research, cell signaling pathways, or other areas of study, this antibody offers unparalleled sensitivity and specificity, enabling accurate and insightful analysis.
Choose the DBC1 Rabbit Polyclonal Antibody for your research needs and unlock the potential of DBC1 protein analysis with confidence and precision.
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