Results for Chemicals ( 21545 )
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PROTAC α-synuclein degrader 5 is a highly selective (PROTAC) compound targeting and degrading α-synuclein aggregates, with a DC50 value of 7.51 μM and a maximum degradation rate (Dmax) of 89%. It incorporates the probe molecule sery308 and E3 ligase ligands, suitable for neurological disease research [1].
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Soluble epoxide hydrolase (sEH) PROTAC 1a is a proteolysis-targeting chimera (PROTAC) comprising a cereblon ligand linked to the sEH inhibitor t-TUCB via a linker, promoting selective sEH degradation and inhibiting its hydrolase activity (IC50 = 0.8 nM) significantly more than its phosphatase activity (IC50 = >10,000 nM). This compound preferentially targets cytosolic sEH for lysosomal rather than proteasomal degradation. Furthermore, it mitigates thapsigargin-induced upregulation of phosphorylated inositol-requiring enzyme 1α (IRE1α) and X-box binding protein 1 (XBP1) splicing in HepG2 and 293T cells, thereby reducing endoplasmic reticulum stress.
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Phosphatidylcholine (PC) Lipid Microparticles pHrodoTM Red are beads with attached phosphatidylcholine and pHrodoTM Red. The PC headgroups are exposed and available for biological interactions. PC is primarily an extracellular phospholipid of cell membranes and is a key structural lipid. This product is intended as a negative control when using PS lipid microparticles in apoptosis or in phagocytosis studies. pHrodo is a trademark of ThermoFisher Scientific.Technical Notes1. Total lipid concentration is approximately 1 μmol per 1 mg particles.2. Trace amounts of a fluorescent lipid are embedded in the particles. pHrodoTM Red has maximal excitation/emission at approximately 560/590 nm.3. Particle comprised of a silica core and is 3 µm.
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Lenti-Fuseâ„¢ Polybrene Viral Transduction Enhancer is an easy to use preformulated polybrene solution designed to enhance the transduction efficiency of retroviruses or lentiviruses. Polybrene is a cationic polymer that acts by neutralizing the charge repulsion between the virus and the cell surface (both negatively charged), thus increasing the transduction efficiency.