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Elabscience

SKU:E-CL-M0109

Mouse GROγ/CXCL3(Growth Regulated Oncogene Gamma) CLIA Kit

Mouse GROγ/CXCL3(Growth Regulated Oncogene Gamma) CLIA Kit

Regular price $682.00 USD
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The Mouse GROγ/CXCL3 (Growth Regulated Oncogene Gamma) CLIA Kit is a highly advanced and reliable diagnostic tool designed for the accurate measurement of GROγ/CXCL3 levels in mouse samples. This kit utilizes the Chemiluminescent Immunoassay (CLIA) technique, which ensures exceptional sensitivity and specificity in detecting and quantifying GROγ/CXCL3.

GROγ/CXCL3, also known as Growth Regulated Oncogene Gamma, is a chemokine protein that plays a crucial role in various biological processes, including inflammation, angiogenesis, and tumor growth. The aberrant expression of GROγ/CXCL3 has been associated with several diseases, making its accurate measurement essential for diagnostic and research purposes.

The Mouse GROγ/CXCL3 CLIA Kit offers a comprehensive and user-friendly solution for researchers and clinicians alike. The kit includes all the necessary components, including pre-coated microplates, detection antibodies, standards, and buffers, ensuring convenience and ease of use. The CLIA technique employed in this kit provides a wide dynamic range and excellent sensitivity, enabling precise and reliable quantification of GROγ/CXCL3 levels in mouse samples.

With its high accuracy and reproducibility, the Mouse GROγ/CXCL3 CLIA Kit is an indispensable tool for studying the role of GROγ/CXCL3 in various physiological and pathological conditions. It enables researchers to gain valuable insights into the molecular mechanisms underlying diseases and facilitates the development of targeted therapies.

In summary, the Mouse GROγ/CXCL3 CLIA Kit is a cutting-edge diagnostic tool that offers exceptional sensitivity, accuracy, and convenience for the measurement of GROγ/CXCL3 levels in mouse samples. Its advanced features make it an invaluable asset for researchers and clinicians involved in studying and diagnosing diseases associated with GROγ/CXCL3.
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