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Elabscience

SKU:E-AB-60768

DBH Polyclonal Antibody

DBH Polyclonal Antibody

Regular price $420.00 USD
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DBH Polyclonal Antibody

Introducing the DBH Polyclonal Antibody, a cutting-edge product designed to revolutionize the field of biomedical research. This meticulously crafted antibody is specifically engineered to target and detect dopamine beta-hydroxylase (DBH), a crucial enzyme involved in the synthesis of norepinephrine.

The DBH Polyclonal Antibody boasts exceptional specificity and sensitivity, ensuring accurate and reliable results in various experimental applications. Its high affinity for DBH enables precise identification and quantification of this enzyme, facilitating comprehensive investigations into its role in neurobiology and related disorders.

Crafted with utmost precision, this antibody undergoes rigorous quality control measures to guarantee optimal performance. Its exceptional purity and low background noise ensure minimal interference, allowing for precise and reproducible data acquisition. Furthermore, the DBH Polyclonal Antibody exhibits excellent stability, ensuring consistent performance over extended periods of time.

This versatile antibody is compatible with a wide range of techniques, including immunohistochemistry, western blotting, and enzyme-linked immunosorbent assays (ELISA). Its adaptability enables researchers to explore DBH expression and distribution in various tissues and cell types, providing valuable insights into its physiological and pathological implications.

The DBH Polyclonal Antibody is meticulously manufactured using state-of-the-art techniques and adheres to the highest industry standards. It is supplied in a convenient and user-friendly format, ensuring ease of use and seamless integration into existing laboratory protocols.

In summary, the DBH Polyclonal Antibody represents a breakthrough in the field of biomedical research, offering unparalleled specificity, sensitivity, and versatility. With its exceptional performance and reliability, this antibody is poised to revolutionize the study of DBH and contribute to advancements in neurobiology and related disciplines.

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