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SKU:E6467Hu

Human TERF1 Interacting Nuclear Factor 2,TINF2 ELISA Kit

Human TERF1 Interacting Nuclear Factor 2,TINF2 ELISA Kit

Regular price $458.00 USD
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Introducing the HUMAN TERF1 INTERACTING NUCLEAR FACTOR 2, TINF2 ELISA Kit, a cutting-edge solution designed to facilitate accurate and efficient detection of the TERF1 Interacting Nuclear Factor 2 (TINF2) in human samples. This ELISA kit is meticulously crafted to meet the highest standards of quality and reliability, ensuring precise and reproducible results.

The HUMAN TERF1 INTERACTING NUCLEAR FACTOR 2, TINF2 ELISA Kit employs an enzyme-linked immunosorbent assay (ELISA) technique, a widely recognized and trusted method in the field of molecular biology. By utilizing this advanced technology, the kit enables researchers and scientists to quantitatively measure the presence of TINF2 in various biological samples, including serum, plasma, and cell lysates.

This ELISA kit features a comprehensive set of components, including pre-coated microplate wells, TINF2-specific antibodies, and detection reagents, meticulously optimized to ensure optimal performance and sensitivity. The user-friendly protocol provided with the kit offers step-by-step instructions, simplifying the experimental process and minimizing the potential for errors.

With its exceptional sensitivity and specificity, the HUMAN TERF1 INTERACTING NUCLEAR FACTOR 2, TINF2 ELISA Kit empowers researchers to explore the role of TINF2 in various biological processes, such as telomere maintenance and cellular senescence. By accurately quantifying TINF2 levels, this kit opens up new avenues for understanding the molecular mechanisms underlying these crucial cellular functions.

In summary, the HUMAN TERF1 INTERACTING NUCLEAR FACTOR 2, TINF2 ELISA Kit represents a state-of-the-art solution for the precise and reliable detection of TINF2 in human samples. Its exceptional sensitivity, user-friendly protocol, and comprehensive components make it an indispensable tool for researchers and scientists seeking to unravel the intricate workings of telomere biology and cellular senescence.

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