SKU(재고 관리 코드):E5258Hu
Human Epithelial discoidin domain-containing receptor 1,DDR1 ELISA kit
Human Epithelial discoidin domain-containing receptor 1,DDR1 ELISA kit
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The Human Epithelial Discoidin Domain-Containing Receptor 1, DDR1 ELISA Kit is a meticulously designed and scientifically advanced product that enables accurate and efficient measurement of DDR1 levels in human samples. This cutting-edge kit is specifically engineered to cater to the needs of researchers and scientists in the field of molecular biology and biomedical research.
With its state-of-the-art technology, the DDR1 ELISA Kit offers unparalleled sensitivity and specificity, ensuring reliable and reproducible results. The kit includes all the necessary components and reagents required for a successful assay, simplifying the experimental process and saving valuable time in the laboratory.
The DDR1 ELISA Kit is meticulously validated and optimized to provide precise quantification of DDR1 protein levels in a wide range of human samples, including serum, plasma, and cell lysates. Its exceptional performance characteristics make it an indispensable tool for studying the role of DDR1 in various physiological and pathological processes.
This ELISA kit is manufactured in strict accordance with international quality standards, guaranteeing the highest level of accuracy and reliability. Each kit undergoes rigorous quality control procedures to ensure consistent performance and batch-to-batch reproducibility.
The DDR1 ELISA Kit is accompanied by a comprehensive user manual, providing detailed instructions for assay setup, sample preparation, and data analysis. The user-friendly nature of this kit makes it suitable for both experienced researchers and newcomers in the field.
In summary, the Human Epithelial Discoidin Domain-Containing Receptor 1, DDR1 ELISA Kit is an exceptional product that offers precise and reliable measurement of DDR1 levels in human samples. Its advanced technology, ease of use, and high-quality performance make it an indispensable tool for researchers aiming to unravel the complexities of DDR1 biology and its implications in various diseases and therapeutic interventions.