Neuroscience Antibodies and Assays

Our neuroscience antibodies and assays advance studies of all nervous system functions, controlling all the body’s organ systems.
Our neuroscience antibodies and assays advance studies of all nervous system functions, controlling all the body’s organ systems.
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Understanding our complex brain requires a comprehensive portfolio of neuroscience antibodies, kits, and immunodetection reagents. By integrating the antibody expertise and resources of Calbiochem®, Chemicon®, Upstate®, and Linco®, EMD Millipore is now the leading provider of neuroscience antibodies for the central and peripheral nervous systems. Our vast neuroscience portfolio includes pathway-, cell type-, and state-specific antibodies and neurological disease assays and markers.

EMD Millipore is committed to creating and supplying the most trusted and validated collection of neuroscience antibodies and assays for studying development, differentiation, and disorders in the nervous system. Add our equally powerful solutions for neural cell culture, neuroscience cell-based assays, and multiplexed neuroscience biomarker assay kits, and drive your neuroscience research forward.



Developmental Neuroscience Neuroscience: Developmental Neuroscience
Differentiation, Synapse & Structure Neuroscience: Differentiation, Synapse and Structure
Neural Degeneration & Degenerative Disease Neuroscience: Neural Degeneration and Degenerative Disease


Featured Neuroscience Antibodies

Featured Neuroscience Antibody: Anti-Nuregulin-1, Clone D11
Anti-Neuregulin-1, clone D11
Western Blotting Analysis of mouse brain microsomal tissue lysate probed with Anti-Neuregulin-1, clone D11. Proteins were visualized using a Goat Anti-Mouse IgG secondary antibody conjugated to HRP and a chemiluminescence detection system. Arrow indicates Neuregulin-1 (~29 kDa).

Featured Neuroscience Antibody: Magna ChIP G Tissue Kit
Magna ChIP G Tissue Kit
EMD Millipore's Magna ChIP G Tissue Kit provides the tools and protocols necessary to obtain repeatable, reliable, and site specific tissue biopsies. Microdissected functionally related populations of cells within a heterogeneous tissue can thus be analyzed with ease, precision and certainty. The figure shows a 300 µm coronal mouse brain section with region specific microdissection of the hippocampus (A) and cerebral cortex (B). The isolated tissue was placed above the dissected region (a: hippocampus, b: cortex).