BT Lab
SKU:E1807Mo
Mouse Acetylcholine receptor subunit beta,CHRNB1 ELISA kit
Mouse Acetylcholine receptor subunit beta,CHRNB1 ELISA kit
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The MOUSE ACETYLCHOLINE RECEPTOR SUBUNIT BETA, CHRNB1 ELISA KIT is a highly reliable and efficient tool designed for the quantitative determination of the CHRNB1 protein in mouse samples. This ELISA kit utilizes a sandwich enzyme immunoassay technique, ensuring accurate and precise results.
The CHRNB1 protein, also known as the acetylcholine receptor subunit beta, plays a crucial role in the formation and functioning of the acetylcholine receptor. This receptor is essential for the transmission of nerve impulses and is involved in various physiological processes, including muscle contraction and synaptic transmission.
With this ELISA kit, researchers can easily and effectively measure the concentration of CHRNB1 in mouse samples, enabling them to gain valuable insights into the role and regulation of this protein in various biological processes. The kit includes all the necessary components, including pre-coated microplate wells, standards, controls, and detection reagents, ensuring convenience and accuracy in experimental procedures.
The MOUSE ACETYLCHOLINE RECEPTOR SUBUNIT BETA, CHRNB1 ELISA KIT offers exceptional sensitivity and specificity, allowing for the detection of low levels of CHRNB1 with minimal interference from other substances. The assay has a wide dynamic range, ensuring accurate quantification across a broad concentration range.
This ELISA kit is designed for research purposes and is intended for use by professionals in the field of molecular biology, neuroscience, and related disciplines. It provides a reliable and efficient method for the quantitative analysis of CHRNB1 in mouse samples, facilitating further understanding of the molecular mechanisms underlying acetylcholine receptor function.
In summary, the MOUSE ACETYLCHOLINE RECEPTOR SUBUNIT BETA, CHRNB1 ELISA KIT is a valuable tool for researchers seeking to investigate the role and regulation of the CHRNB1 protein in mouse samples. Its high sensitivity, specificity, and accuracy make it an indispensable asset in molecular biology and neuroscience research.
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