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Elabscience
SKU(재고 관리 코드):PKSM040378
Recombinant Mouse MOG Protein (aa30-149, His Tag)
Recombinant Mouse MOG Protein (aa30-149, His Tag)
Introducing the Recombinant Mouse MOG Protein (aa30-149, His Tag), a cutting-edge product meticulously designed to cater to the diverse needs of the scientific community. This protein, derived from the mouse myelin oligodendrocyte glycoprotein (MOG), encompasses amino acids 30 to 149 and is equipped with a highly efficient His tag for enhanced purification and detection.
Crafted with utmost precision, this recombinant protein offers unparalleled quality and reliability, making it an indispensable tool for a wide range of research applications. Its strategic selection of amino acids ensures optimal functionality and compatibility with various experimental setups, enabling researchers to delve into the intricate mechanisms underlying neurological disorders and demyelinating diseases.
The incorporation of a His tag in this protein facilitates its purification, allowing for streamlined isolation and purification processes. This tag also enables straightforward detection and quantification, simplifying experimental workflows and expediting data analysis. With this innovative feature, researchers can confidently explore the intricate interactions and functions of MOG protein, paving the way for groundbreaking discoveries and advancements in the field of neuroscience.
Furthermore, this recombinant protein adheres to the highest standards of quality control, ensuring exceptional purity and stability. Rigorous testing procedures guarantee the absence of contaminants or impurities, providing researchers with a reliable and consistent protein source for their investigations. Its long shelf life and robust stability make it an ideal choice for long-term experiments, eliminating concerns of protein degradation and ensuring consistent results throughout the study duration.
In summary, the Recombinant Mouse MOG Protein (aa30-149, His Tag) stands as a remarkable scientific tool, meticulously engineered to empower researchers in unraveling the complexities of neurological disorders. With its exceptional quality, efficient purification, and reliable detection capabilities, this protein is poised to revolutionize the field of neuroscience and contribute to the development of novel therapeutic strategies.
Crafted with utmost precision, this recombinant protein offers unparalleled quality and reliability, making it an indispensable tool for a wide range of research applications. Its strategic selection of amino acids ensures optimal functionality and compatibility with various experimental setups, enabling researchers to delve into the intricate mechanisms underlying neurological disorders and demyelinating diseases.
The incorporation of a His tag in this protein facilitates its purification, allowing for streamlined isolation and purification processes. This tag also enables straightforward detection and quantification, simplifying experimental workflows and expediting data analysis. With this innovative feature, researchers can confidently explore the intricate interactions and functions of MOG protein, paving the way for groundbreaking discoveries and advancements in the field of neuroscience.
Furthermore, this recombinant protein adheres to the highest standards of quality control, ensuring exceptional purity and stability. Rigorous testing procedures guarantee the absence of contaminants or impurities, providing researchers with a reliable and consistent protein source for their investigations. Its long shelf life and robust stability make it an ideal choice for long-term experiments, eliminating concerns of protein degradation and ensuring consistent results throughout the study duration.
In summary, the Recombinant Mouse MOG Protein (aa30-149, His Tag) stands as a remarkable scientific tool, meticulously engineered to empower researchers in unraveling the complexities of neurological disorders. With its exceptional quality, efficient purification, and reliable detection capabilities, this protein is poised to revolutionize the field of neuroscience and contribute to the development of novel therapeutic strategies.
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