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SKU:E0513Ra

Rat glutathione S-transferases,GSTs ELISA Kit

Rat glutathione S-transferases,GSTs ELISA Kit

Regular price $428.00 USD
Regular price Sale price $428.00 USD
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Introducing the Rat Glutathione S-Transferases (GSTs) ELISA Kit, a highly reliable and efficient solution for quantitative detection of Rat GSTs in various biological samples. This cutting-edge kit is designed to provide accurate and precise results, enabling researchers to gain valuable insights into the activity and expression levels of GSTs in rat models.

The Rat GSTs ELISA Kit utilizes a sandwich enzyme-linked immunosorbent assay (ELISA) technique, which ensures high sensitivity and specificity. The kit includes pre-coated microplate wells, rat-specific GSTs antibodies, and all necessary reagents, allowing for a streamlined and user-friendly workflow. With a wide dynamic range and low detection limit, this kit enables the quantification of GSTs within a broad concentration range, ensuring optimal flexibility for diverse experimental requirements.

This ELISA kit is meticulously manufactured using state-of-the-art technology and stringent quality control measures, guaranteeing reproducible and reliable results. It is specifically designed for the detection of rat GSTs, making it an ideal tool for researchers studying the role of GSTs in various physiological and pathological processes.

The Rat GSTs ELISA Kit offers numerous advantages, including its ease of use, high sensitivity, and broad applicability. It is suitable for a wide range of sample types, including serum, plasma, tissue homogenates, and cell lysates. The kit provides a rapid and efficient method for quantifying GSTs, facilitating the investigation of their involvement in drug metabolism, oxidative stress, and detoxification pathways.

In summary, the Rat GSTs ELISA Kit is a reliable and comprehensive solution for quantitative detection of GSTs in rat samples. Its high sensitivity, accuracy, and user-friendly design make it an indispensable tool for researchers seeking to unravel the intricate mechanisms underlying GST activity and expression in rat models.

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