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SKU:E0391Po
Porcine glial cell line-derived neurotrophic factor,GDNF ELISA Kit
Porcine glial cell line-derived neurotrophic factor,GDNF ELISA Kit
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Introducing the Porcine Glial Cell Line-Derived Neurotrophic Factor (GDNF) ELISA Kit, a cutting-edge solution designed to accurately measure the levels of GDNF in porcine samples. This high-quality ELISA kit is meticulously developed to provide researchers and scientists with a reliable tool for their neurotrophic factor analysis.
The Porcine GDNF ELISA Kit boasts exceptional sensitivity and specificity, ensuring precise and reproducible results. With its advanced technology and optimized protocols, this kit enables the quantification of GDNF levels in a wide range of porcine samples, including serum, plasma, and tissue lysates.
This ELISA kit features a user-friendly format, allowing for straightforward and efficient experimentation. The comprehensive package includes all necessary components, including pre-coated microplate wells, standards, controls, and detection reagents. The step-by-step instructions provided ensure a seamless workflow, minimizing any potential errors and maximizing productivity.
The Porcine GDNF ELISA Kit offers a wide dynamic range, enabling the accurate measurement of GDNF concentrations from as low as 0.156 ng/mL up to 10 ng/mL. This broad range ensures the detection of both low and high GDNF levels, facilitating a comprehensive analysis of porcine samples.
With its exceptional performance and reliability, the Porcine GDNF ELISA Kit is an indispensable tool for researchers and scientists involved in neurotrophic factor studies. Whether investigating the role of GDNF in porcine neurobiology or exploring potential therapeutic applications, this ELISA kit provides the necessary precision and accuracy to advance scientific understanding.
Invest in the Porcine GDNF ELISA Kit today and unlock the potential of porcine neurotrophic factor research. Experience the confidence of obtaining reliable and reproducible results, empowering you to make significant contributions to the field of neurobiology.
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