BT Lab
SKU:BT-AP03580
MEF-2A/C Rabbit Polyclonal Antibody
MEF-2A/C Rabbit Polyclonal Antibody
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disease:Defects in MEF2A might be a cause of autosomal dominant coronary artery disease 1 with myocardial infarction (ADCAD1)
MEF-2A/C Rabbit Polyclonal Antibody
The MEF-2A/C Rabbit Polyclonal Antibody is a highly specific and reliable tool designed for the detection and analysis of MEF-2A and MEF-2C proteins in various biological samples. This antibody has been meticulously developed using high-quality rabbit polyclonal antibodies, ensuring exceptional sensitivity and specificity.
MEF-2A and MEF-2C are transcription factors that play crucial roles in the regulation of gene expression, particularly in muscle development and differentiation. The MEF-2A/C Rabbit Polyclonal Antibody has been extensively validated for its ability to recognize and bind to these proteins, making it an ideal choice for researchers studying muscle biology and related fields.
This antibody exhibits excellent performance in a wide range of applications, including Western blotting, immunohistochemistry, and immunofluorescence. It has been optimized for use in various species, including human, mouse, and rat, allowing for versatile experimental designs.
The MEF-2A/C Rabbit Polyclonal Antibody offers numerous advantages, including its high affinity and specificity, which ensures accurate and reliable results. It also demonstrates minimal cross-reactivity with other proteins, further enhancing its specificity. Additionally, this antibody exhibits excellent reproducibility, enabling consistent and robust data generation.
With its exceptional quality and performance, the MEF-2A/C Rabbit Polyclonal Antibody is an indispensable tool for researchers investigating the intricate mechanisms underlying muscle development and differentiation. Its reliability and versatility make it an invaluable asset in various research settings, including academic institutions, pharmaceutical companies, and biotechnology laboratories.
Order the MEF-2A/C Rabbit Polyclonal Antibody today and unlock new insights into the intricate regulatory pathways governing muscle biology.
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