Results 101 to 110 of about 5,980,753 (177)
Uronic Acid Metabolism in Bacteria
Gilbert Ashwell +2 more
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A Note for Identification of Uronic Acids in Mucopolysaccharides
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Bioresource Technology, 2015
Based on systems biology analyses of total 179 representative Miscanthus accessions, ammonium oxalate (AO)-extractable uronic acids could either positively affect biomass digestibility or negatively alter lignocellulose crystallinity at ...
Jiangfeng Huang +2 more
exaly +2 more sources
Based on systems biology analyses of total 179 representative Miscanthus accessions, ammonium oxalate (AO)-extractable uronic acids could either positively affect biomass digestibility or negatively alter lignocellulose crystallinity at ...
Jiangfeng Huang +2 more
exaly +2 more sources
Uronic acids in oligosaccharide and glycoconjugate synthesis.
Topics in current chemistry, 2011This chapter describes the assembly of uronic acid containing oligosaccharides and glycoconjugates. Two strategies are available to access these target molecules, namely a pre-glycosylation oxidation approach, in which uronic acid building blocks are used, and a post-glycosylation oxidation strategy, which employs an oxidation step after the assembly ...
J. Codée +4 more
semanticscholar +3 more sources
New method for quantitative determination of uronic acids
Analytical Biochemistry, 1973N Blumenkrantz, G Asboe-Hansen
exaly +2 more sources
Decomposition kinetics of uronic acids obtained from kelp under hydrothermal condition
Journal of the Energy Institute, 2017Yoshiko Okamura +2 more
exaly +2 more sources
Organic Chemistry Frontiers, 2022
An efficient protocol for organophotocatalytic synthesis of reverse glycosyl fluorides (RGFs) is established relying on 9-mesityl-10-methyl-acridinium (Mes-Acr+)-mediated oxidative decarboxylative fluorination of uronic acids.
Ming Li +6 more
semanticscholar +1 more source
An efficient protocol for organophotocatalytic synthesis of reverse glycosyl fluorides (RGFs) is established relying on 9-mesityl-10-methyl-acridinium (Mes-Acr+)-mediated oxidative decarboxylative fluorination of uronic acids.
Ming Li +6 more
semanticscholar +1 more source

