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Human Coatomer subunit zeta-2,COPZ2 ELISA Kit

Human Coatomer subunit zeta-2,COPZ2 ELISA Kit

UOM

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The Human Coatomer subunit zeta-2, COPZ2 ELISA Kit is a highly advanced and reliable tool designed for the accurate and efficient detection of the Coatomer subunit zeta-2 protein in human samples. This ELISA kit utilizes a solid-phase sandwich enzyme-linked immunosorbent assay technique, ensuring high sensitivity and specificity in the detection process.

The Coatomer subunit zeta-2 protein plays a crucial role in the formation of the coatomer complex, which is involved in the regulation of intracellular protein transport and vesicle trafficking. By accurately measuring the levels of this protein in human samples, researchers and clinicians can gain valuable insights into various cellular processes and pathological conditions.

This ELISA kit is manufactured using state-of-the-art technology and high-quality materials, guaranteeing consistent and reliable results. It includes all the necessary components, such as pre-coated microplates, detection antibodies, and standards, to facilitate a seamless and user-friendly experimental procedure.

The Human Coatomer subunit zeta-2, COPZ2 ELISA Kit offers a wide dynamic range and excellent sensitivity, enabling the detection of even low levels of the target protein. The assay has been optimized to minimize cross-reactivity and interference, ensuring accurate and specific measurements.

With its high precision and reproducibility, this ELISA kit is an indispensable tool for researchers and clinicians working in the fields of cell biology, molecular biology, and clinical diagnostics. It provides a reliable and efficient method for the quantitative analysis of the Coatomer subunit zeta-2 protein, facilitating a deeper understanding of its role in various biological processes and disease mechanisms.

In summary, the Human Coatomer subunit zeta-2, COPZ2 ELISA Kit is a cutting-edge and reliable solution for the precise detection and quantification of the Coatomer subunit zeta-2 protein in human samples. Its high sensitivity, specificity, and user-friendly design make it an essential tool for researchers and clinicians seeking to unravel the complexities of cellular processes and pathological conditions.

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