Custom Premix Selecting "Custom Premix" option means that all of the beads you have chosen will be premixed in manufacturing before the kit is sent to you.
Successful engraftment of neural stem cells (NSCs) following implantation into the brains of rodent models has demonstrated the potential of neural stem cells in the development of regenerative therapeutic strategies.
Immunohistochemistry (IHC) uses antibodies binding specifically to antigens in biological tissues to visualize proteins, carbohydrates, and lipids of interest.
Years of experience in the manufacture of immuno-reagents and IVD products have given Merck an encompassing awareness of the importance of high-quality secondary antibodies.
Sensory systems and metabolism research focuses on peripheral and central processing mechanisms in the visual, auditory, olfactory, gustatory, and pain systems.
Histone modifications regulate DNA transcription, repair, recombination, and replication, and can alter local chromatin architecture. Understanding histone modifications is key to uncovering epigenetic mechanisms of gene regulation. Merck grasps the complexity of this research and provides a growing line of kits, antibodies, and assays for studying histones and their modifications. Merck offers over 600 validated antibodies, recombinant proteins, and kits to analyze histone and histone-variant phosphorylation, methylation, acetylation, ubiquitination, and citrullination-the most widely studied histone modifications in epigenetics today.
Mammalian expression using ubiquitous chromatin opening element (UCOE) technology, prevents transgene silencing for consistent and high-level gene expression.
Cytoskeletal signaling complexes include G-protein complexes, focal adhesions, and adherens junctions. Focal adhesions and adherens junctions link the cell exterior to the plasma membrane and the actin cytoskeleton, acting as key initiators of signaling pathways in response to cell adhesion.
Optogenetic approaches promise to revolutionize neuroscience by using light to manipulate neural activity in genetically or functionally defined neurons with millisecond precision