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A greater understanding of neurological processes is crucial to inform health and drug development decisions. Neurological processes include neurotransmission, trafficking, cellular homeostasis, and inflammation. Together they determine how cellular activity in the brain affects function and behavior.
Studying these processes relies on reliable access to sensitive reagents against key targets, including post-translational modifications and ion channel proteins. By working with key leaders and charities in the field, such as the Michael J Fox Foundation, we have developed a broad and relevant portfolio spanning core neurological processes to provide you with a comprehensive proteomic solution at every stage of discovery.
Our deep expertise in neurological processes enables us to develop products against challenging targets, including transmembrane proteins such as ion channels. We will work with you to find detailed solutions that solve your problems quickly, helping you stay one step ahead.
We offer a wide choice of conjugation options, including carrier-free antibodies, to give you the flexibility to build multiplex panels that suit your experiment and generate clean, reproducible data. Additionally, we validate our products in relevant applications and sample types, including clinical samples to ensure they work first time, every time.
We also use recombinant monoclonal antibodies where possible in our ELISA kits to confirm the highest specificity and offer matched antibody pairs, proteins, and biochemicals for cell culture and pathway modulation.
To provide you with a unique combination of breadth and quality, we utilize customer-driven insights to deliver a complete range of customizable reagents that will help you accurately visualize targets and measure protein activity throughout your project.
Inflammatory pain forms part of nociception, the system of detecting harmful stimuli by the nervous system, which alerts the body to potential harm. Download our inflammatory pain poster to view products against key targets.
Ionotropic glutamate receptors (iGluRs) are ligand-gated ion channels that mediate most excitatory neurotransmission within the brain. Download our comprehensive guide to glutamate receptors.
Dopamine can control various physiological functions in the brain and periphery by acting on its receptors, D1, D2, D3, D4, and D5. Discover high-quality products for this critical neurotransmitter.
An overview of the roles and relationships of astrocytes, oligodendrocytes, and microglia in the CNS.
Autophagy is a complex process by which dysfunctional cellular components are degraded inside the cell through the action of lysosomes. Explore the key stages and processes involved in this pathway.
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