fluorous-based carbohydrate microarrays (Fluorous Technologies)
90
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Fluorous Technologies
fluorous-based carbohydrate microarrays
Fluorous Based Carbohydrate Microarrays, supplied by Fluorous Technologies, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/fluorous-based+carbohydrate+microarrays/fluorous+based+carbohydrate+microarrays/pm34923822-331-10-12
Average 90 stars, based on 1 article reviews
Fluorous Based Carbohydrate Microarrays, supplied by Fluorous Technologies, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/fluorous-based+carbohydrate+microarrays/fluorous+based+carbohydrate+microarrays/pm34923822-331-10-12
Average 90 stars, based on 1 article reviews
fluorous-based carbohydrate microarrays - by Bioz Stars,
2026-09
90/100 stars
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other:Article Title: Fluorous Soluble Cyanine Dyes for Visualizing Perfluorocarbons in Living Systems Article Snippet: DOI: 10.1002/cbic.202000297. (6) Ko, K.-S.; Jaipuri, F. A.; Pohl, Article Title: Sulfo-Fluorous Tagging Strategy for Site-Selective Enzymatic Glycosylation of para-Human Milk Oligosaccharides Article Snippet: In this study, we developed an efficient fluorous tagging strategy for site-selective enzymatic fucosylation/sialylation in which appending a readily removable auxiliary tag (SF17) to the reducing end of an acceptor provided the regioselectivity control of a given wild-type fucosyltransferase/sialyltransferase.. By combining this strategy with the sequential one-pot enzymatic system of HMO production, various fucosylated para-HMOs, such as LNFP I, LNFP II, LNFP III, LNFP V, LNDFH I, LNDFH II, TF-LNT, FpLNH I, F-pLNH IV, DF-pLNH I isomer, DF-pLNH II, TF-pLNH I, TF-pLNH II, F-pLNnH, F-pLNnH I, DF-pLNnH, TF-pLNnH, and TetraF-pLNO, were synthesized.. Furthermore, the SF17-tagged acceptors improved the reaction rates of the enzymatic glycan chain extension. Article Title: Biofouling Removal and Protein Detection Using a Hypersonic Resonator. Article Snippet: Nonspecific binding (NSB) is a general issue for surface based biosensors.. Various approaches have been developed to prevent or remove the NSBs.. However, these approaches either increased the background signals of the sensors or limited to specific transducers interface. Article Title: Controlling Ligand Spacing on Surface: Polyproline-Based Fluorous Microarray as a Tool in Spatial Specificity Analysis and Inhibitor Development for Carbohydrate-Protein Interactions. Article Snippet: Multivalent carbohydrate−protein interactions are essential for many biological processes.. Convenient characterization for multivalent binding property of proteins will aid the development of molecules to manipulate these processes.. We exploited the polyproline helix II (PPII) structure as molecular scaffolds to adjust the distances between glycan ligand attachment sites at 9, 18, and 27 Å on a peptide scaffold. Article Title: The Glycan Microarray Story from Construction to Applications. Article Snippet: CONSPECTUS: Not only are glycan-mediated binding processes in cells and organisms essential for a wide range of physiological processes, but they are also implicated in various pathological processes.. As a result, elucidation of glycan-associated biomolecular interactions and their consequences is of great importance in basic biological research and biomedical applications.. In 2002, we and others were the first to utilize glycan microarrays in efforts aimed at the rapid analysis of glycan-associated recognition events. Article Title: Rewritable Surface on a Plastic Substrate Using Fluorous Affinity. Article Snippet: 2006, 127, 571−579. (31) Ko, K.-S.; Jaipuri, F. A.; Pohl, Article Title: Designed synthesis of fluorous-functionalized magnetic mesoporous microspheres for specific enrichment of phosphopeptides with fluorous derivatization. Article Snippet: Received: August 12, 2015 Revised: December 24, 2015 Accepted: January 18, 2016 In this work, for the first time, perfluorinated magnetic mesoporous microspheres were designed and synthesized for the highly specific enrichment of fluorous-derivatized phosphopeptides through the unique fluorine–fluorine interactions.. The perfluorinated magnetic mesoporous microspheres were prepared through a surfactant-mediated one-pot approach and successfully applied to the selective extraction of fluorous-derivatized phosphopeptides from -casein tryptic digest, protein mixtures, and human serum.. Thanks to the hydrophilic silanol groups exposed on the surface, perfluorinated groups modified in the pore channels and the magnetic cores, the flourous-functionalized magnetic microspheres exhibited excellent dispersibility, specificity toward fluorous-derivatized phosphopeptides while facilitated separation procedures. Article Title: A General Approach to Biocompatible Branched Fluorous Tags for Increased Solubility in Perfluorocarbon Solvents Article Snippet: 2005, 23, 463−468. (7) Ko, K. S.; |