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BT Lab

SKU(재고 관리 코드):E5545Hu

Human Krueppel-like factor 2,KLF2 ELISA kit

Human Krueppel-like factor 2,KLF2 ELISA kit

UOM
Standard Range
Sensitivity

Contact us for 48 wells and bulk quote

Introducing the Human Krueppel-like factor 2 (KLF2) ELISA kit, a cutting-edge solution designed to facilitate accurate and efficient detection of KLF2 protein levels in human samples. This high-quality assay kit is meticulously crafted to meet the demands of researchers and clinicians alike, providing a reliable tool for investigating the role of KLF2 in various biological processes.

The Human KLF2 ELISA kit employs a robust enzyme-linked immunosorbent assay (ELISA) technique, enabling precise quantification of KLF2 protein concentrations within a wide dynamic range. With its exceptional sensitivity and specificity, this kit ensures reliable and reproducible results, allowing for confident interpretation and analysis of experimental data.

Featuring a user-friendly protocol, the Human KLF2 ELISA kit streamlines the experimental workflow, minimizing hands-on time and maximizing efficiency. The kit includes all necessary components, meticulously optimized to ensure optimal performance and accuracy. Each kit contains microplate wells coated with highly specific antibodies, standards, controls, and reagents, all meticulously quality-controlled to guarantee consistent and reliable results.

The Human KLF2 ELISA kit is designed to cater to the diverse needs of researchers and clinicians in various fields, including molecular biology, immunology, and clinical diagnostics. It serves as an invaluable tool for investigating the involvement of KLF2 in diverse physiological and pathological processes, such as cell differentiation, development, and disease progression.

In summary, the Human KLF2 ELISA kit offers a comprehensive and reliable solution for the quantitative determination of KLF2 protein levels in human samples. With its exceptional sensitivity, specificity, and user-friendly design, this kit empowers researchers and clinicians to unravel the intricate mechanisms underlying KLF2-mediated processes, ultimately contributing to advancements in biomedical research and clinical practice.

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