The formation of oximes and hydrazones is widely used in chemistry and biology as a molecular conjugation strategy for achieving ligation, attachment, and bioconjugation. However, the relatively slow rate of reaction has hindered its utility. Here, we report that simple, commercially available anthranilic acids and aminobenzoic acids act as superior catalysts for hydrazone and oxime formation, speeding the reaction considerably over the traditional aniline-catalyzed reaction at neutral pH. This efficient nucleophilic catalysis, involving catalyst–imine intermediates, allows rapid hydrazone/oxime formation even with relatively low concentrations of the two reactants. The most efficient catalysts are found to be 5-methoxyanthranilic acid and ...
The reaction of unprotected carbohydrates with aminooxy reagents to provide oximes is a key method f...
Pyrrolidine catalyzes very efficiently, presumably via iminium activation, the formation of acyloxim...
To select suitable candidates for the occurrence of specific-base-catalysis in MRH of (Z)-hydrazones...
ABSTRACT: The discovery of two new classes of catalysts for hydrazone and oxime formation in water a...
ABSTRACT: Hydrazones and oximes are widely useful structures for conjugate formation in chemistry an...
Anthranilic acids were recently reported as superior catalysts for hydrazone and oxime formation com...
Imine-based reactions are useful for a wide range of bioconjugation applications. Although aniline i...
Hydrazone and oxime bond formation between α-nucleophiles (e.g. hydrazines, alkoxy-amines) and carbo...
The discovery of two new classes of catalysts for hydrazone and oxime formation in water at neutral ...
Acylhydrazones formation has been widely applied in materials science and biolabeling. However, thei...
International audienceHydrazone and oxime peptide ligations are catalyzed by arginine. The catalysis...
The conjugation of biomolecules by chemoselective oxime ligation is of great interest for the site-s...
Hydrazone formation reactions from aldehydes and hydrazides have the remarkable qualities that they ...
Dynamic covalent chemistry forming hydrazone and oxime linkages is attractive due to its simplicity,...
We use kinetic data, photophysical properties, and mechanistic analyses to compare recently develope...
The reaction of unprotected carbohydrates with aminooxy reagents to provide oximes is a key method f...
Pyrrolidine catalyzes very efficiently, presumably via iminium activation, the formation of acyloxim...
To select suitable candidates for the occurrence of specific-base-catalysis in MRH of (Z)-hydrazones...
ABSTRACT: The discovery of two new classes of catalysts for hydrazone and oxime formation in water a...
ABSTRACT: Hydrazones and oximes are widely useful structures for conjugate formation in chemistry an...
Anthranilic acids were recently reported as superior catalysts for hydrazone and oxime formation com...
Imine-based reactions are useful for a wide range of bioconjugation applications. Although aniline i...
Hydrazone and oxime bond formation between α-nucleophiles (e.g. hydrazines, alkoxy-amines) and carbo...
The discovery of two new classes of catalysts for hydrazone and oxime formation in water at neutral ...
Acylhydrazones formation has been widely applied in materials science and biolabeling. However, thei...
International audienceHydrazone and oxime peptide ligations are catalyzed by arginine. The catalysis...
The conjugation of biomolecules by chemoselective oxime ligation is of great interest for the site-s...
Hydrazone formation reactions from aldehydes and hydrazides have the remarkable qualities that they ...
Dynamic covalent chemistry forming hydrazone and oxime linkages is attractive due to its simplicity,...
We use kinetic data, photophysical properties, and mechanistic analyses to compare recently develope...
The reaction of unprotected carbohydrates with aminooxy reagents to provide oximes is a key method f...
Pyrrolidine catalyzes very efficiently, presumably via iminium activation, the formation of acyloxim...
To select suitable candidates for the occurrence of specific-base-catalysis in MRH of (Z)-hydrazones...