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Elabscience
SKU(재고 관리 코드):PKSR030382
Recombinant Rat Neurexophilin-1/NXPH1 Protein (His Tag)
Recombinant Rat Neurexophilin-1/NXPH1 Protein (His Tag)
Introducing the Recombinant Rat Neurexophilin-1/NXPH1 Protein (His Tag), a meticulously engineered product designed to cater to the diverse needs of scientific research and experimentation. This protein, derived from the rat species, showcases an exceptional level of purity and quality, ensuring reliable and reproducible results.
The Recombinant Rat Neurexophilin-1/NXPH1 Protein (His Tag) is meticulously produced using advanced recombinant DNA technology, guaranteeing a high degree of accuracy and consistency. The inclusion of the His tag further facilitates purification and detection processes, enabling seamless integration into various experimental setups.
This protein exhibits a remarkable affinity for neurexin, a crucial component in synaptic adhesion and neurotransmission. By virtue of its interaction with neurexin, the Recombinant Rat Neurexophilin-1/NXPH1 Protein (His Tag) plays a pivotal role in modulating synaptic connectivity and plasticity, thereby offering invaluable insights into the intricate workings of the nervous system.
With its exceptional purity and stability, this protein serves as an indispensable tool for elucidating the intricate mechanisms underlying neuronal development, synaptic transmission, and synaptic plasticity. Its application extends to a wide range of research areas, including neuroscience, neurobiology, and neuropharmacology.
The Recombinant Rat Neurexophilin-1/NXPH1 Protein (His Tag) is meticulously manufactured in compliance with stringent quality control measures, ensuring the utmost reliability and reproducibility of experimental outcomes. Each batch is subjected to rigorous testing to guarantee its integrity, functionality, and absence of contaminants.
In summary, the Recombinant Rat Neurexophilin-1/NXPH1 Protein (His Tag) represents a cutting-edge solution for researchers seeking to unravel the intricacies of synaptic adhesion and neurotransmission. Its exceptional purity, stability, and reliability make it an indispensable asset in the realm of neuroscience research, enabling groundbreaking discoveries and advancements in our understanding of the nervous system.
The Recombinant Rat Neurexophilin-1/NXPH1 Protein (His Tag) is meticulously produced using advanced recombinant DNA technology, guaranteeing a high degree of accuracy and consistency. The inclusion of the His tag further facilitates purification and detection processes, enabling seamless integration into various experimental setups.
This protein exhibits a remarkable affinity for neurexin, a crucial component in synaptic adhesion and neurotransmission. By virtue of its interaction with neurexin, the Recombinant Rat Neurexophilin-1/NXPH1 Protein (His Tag) plays a pivotal role in modulating synaptic connectivity and plasticity, thereby offering invaluable insights into the intricate workings of the nervous system.
With its exceptional purity and stability, this protein serves as an indispensable tool for elucidating the intricate mechanisms underlying neuronal development, synaptic transmission, and synaptic plasticity. Its application extends to a wide range of research areas, including neuroscience, neurobiology, and neuropharmacology.
The Recombinant Rat Neurexophilin-1/NXPH1 Protein (His Tag) is meticulously manufactured in compliance with stringent quality control measures, ensuring the utmost reliability and reproducibility of experimental outcomes. Each batch is subjected to rigorous testing to guarantee its integrity, functionality, and absence of contaminants.
In summary, the Recombinant Rat Neurexophilin-1/NXPH1 Protein (His Tag) represents a cutting-edge solution for researchers seeking to unravel the intricacies of synaptic adhesion and neurotransmission. Its exceptional purity, stability, and reliability make it an indispensable asset in the realm of neuroscience research, enabling groundbreaking discoveries and advancements in our understanding of the nervous system.
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