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205-753-0
Showing 1-10 of 271 results for "205-753-0" within Site Content
Buchwald G6 Precatalysts: Oxidative Addition Complexes for Efficient L–Pd(0) Generation
Buchwald G6 precatalysts are oxidative addition complexes that are thermally, air, and moisture stable. The catalyst activation doesn’t require a base and generates innocuous byproducts.
Improving Glycoform Coverage for Mucin Prep
Human Protein Atlas uses A-431, U-251 MG, and U-205 cell lines with Prestige Antibodies for organelle mapping.
NHC-based Palladium Catalysts
In collaboration with Umicore AG and Co.,1 we are pleased to offer a series of robust Pd(II) and Pd(0) complexes employed as the linchpin in C–C bond forming reactions.
Louie Group – Professor Product Portal
Professor Louie's research focuses on the discovery and mechanistic understanding of new reactions catalyzed by transition metal complexes. She has developed a highly active Ni(0) catalyst that effectively mediates a variety of cycloaddition and isomerization reactions.
Analysis of Vitamin B Compound Tablets by HPLC-UV
Determination of thiamine, riboflavin, nicotinamide, calcium pantothenate, and pyridoxine in compound vitamin B tablets using a Discovery® HS C18 column.
Echavarren Group – Professor Product Portal
The research of the Echavarren group centers on the development of new reactions based on the use of electrophilic complexes of Au(I), Pt(II), and other transition metals as catalysts and their applications in organic synthesis of complex, biologically active molecules.
The
Gastrointestinal Organoid Biobank
Browse over 50 patient-derived human intestinal organoids from our PDO biobank. Various ages, sex, tissue origin and diseases available (normal, tumor organoids, ulcerative colitis).
Direct and Crude Extract qPCR
Rapid qPCR analysis from highly inhibited tissue and blood sample extractions with KAPA PROBE.
VEGF Pathway
Read review on VEGF signaling pathway (Vascular endothelial growth factor (VEGF)/VEGF receptor) and find related products.
DNA Damage Response (DDR) Pathway
Explore key targets of cancer research and cell signaling research with the DNA damage response (DDR) pathway and do a deep dive into ATM, ATR, and p53 mechanisms involved in DNA damage checkpoints.
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