Date published: 2026-1-19

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Neurological Staining

Santa Cruz Biotechnology now offers a broad range of neurological staining chemicals for use in various applications. These specialized staining agents are crucial for visualizing and understanding the intricate structures and functions of the nervous system. Neurological staining chemicals are indispensable in neurobiological research, enabling scientists to highlight specific neural components, such as neurons, glial cells, and synapses, with exceptional clarity. These stains facilitate the detailed examination of neural architecture, allowing researchers to trace neural pathways, observe synaptic connections, and identify cellular morphology. The use of these chemicals in histological and cytological studies provides insights into the spatial organization and structural integrity of neural tissues. Moreover, neurological staining is vital for investigating developmental processes, neural plasticity, and the effects of various stimuli on the nervous system. By employing these stains, researchers can produce high-resolution images that are essential for qualitative and quantitative analyses, thereby advancing our knowledge of neuroanatomy and neurophysiology. The availability of a diverse array of reliable and high-quality neurological staining chemicals from Santa Cruz Biotechnology ensures consistency and accuracy in research outcomes, which is fundamental for the progress of neuroscience. View detailed information on our available neurological staining chemicals by clicking on the product name.

Items 21 to 22 of 22 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

BSB

sc-221384
5 mg
$275.00
(0)

BSB is a distinctive compound known for its ability to interact with neurotransmitter receptors, influencing synaptic signaling pathways. Its unique structure allows for selective binding, which can modulate receptor conformations and alter downstream signaling cascades. Additionally, BSB exhibits rapid kinetics in its reactions, facilitating transient interactions that can impact neuronal communication. This dynamic behavior contributes to its role in shaping neural network activity and plasticity.

MM 1-43

149838-22-2sc-499427
1 mg
$123.00
(0)

MM 1-43 demonstrates intriguing neurochemical properties through its ability to modulate synaptic transmission. Its unique molecular architecture allows for specific binding to neurotransmitter receptors, influencing signal transduction pathways. The compound's kinetic profile reveals rapid association and dissociation rates, enabling swift alterations in neuronal excitability. Furthermore, its capacity to form stable complexes with intracellular proteins enhances its role in cellular signaling cascades, impacting overall neural network dynamics.