[[abstract]]The Cu(I)-catalyzed alkyne-azide [ 2 + 3] cycloaddition has been demonstrated to be an effective and orthogonal conjugation reaction to covalently immobilize biomolecules on magnetic nanoparticles (MNPs). The azido group on the MNP surface provides better conjugation efficiency with alkynated molecules. Moreover, the C-terminal alkynated protein was site-specifically immobilized on MNP. The protein binding activity presented by site-specific immobilization is higher than that by random amide bond formation.[[fileno]]2010318010067[[department]]化學
“Click” chemistry, used to promote nanoparticle assemblies, is a powerful strategy which has emerged...
While much effort has been made to prepare magnetic microspheres (MMs) with surface moieties that bi...
Ultrasmall gold nanoparticles (core diameter 2 nm) were surface-conjugated with azide groups by atta...
We have developed an efficient conversion of amino iron oxides to carbohydrate and protein derived n...
International audienceTwo copper(I)–NHC complexes bearing an azide group were reacted with alkyne-de...
In this study, a novel approach was developed to synthesize aminophenylboronic acid functionalized m...
A chemically modified, first generation MacMillan imidazolidin-4-one has been anchored onto 1% DVB M...
This paper describes the bioconjugation of histidine-tagged enzymes and other proteins to the surfac...
Resumen del trabajo presentado a la I Jornada de jóvenes investigadores de cerámica y vidrio en el I...
We are interested in functionalizing gold nanoparticles (AuNPs) with proteins using a biomimetic app...
Resumen del póster presentado al RSC Chemical Nanoscience and Nanotechnology Early Careers Virtual M...
In recent years, magnetic nanoparticles (MNPs) have been applied to numerous biological systems. The...
We report a new strategy toward construction of functional composite materials for fast molecular se...
International audience"Click" chemistry, used to promote nanoparticle assemblies, is a powerful stra...
In the pursuit of robust and reusable biocatalysts for industrial synthetic chemistry, nanobiotechno...
“Click” chemistry, used to promote nanoparticle assemblies, is a powerful strategy which has emerged...
While much effort has been made to prepare magnetic microspheres (MMs) with surface moieties that bi...
Ultrasmall gold nanoparticles (core diameter 2 nm) were surface-conjugated with azide groups by atta...
We have developed an efficient conversion of amino iron oxides to carbohydrate and protein derived n...
International audienceTwo copper(I)–NHC complexes bearing an azide group were reacted with alkyne-de...
In this study, a novel approach was developed to synthesize aminophenylboronic acid functionalized m...
A chemically modified, first generation MacMillan imidazolidin-4-one has been anchored onto 1% DVB M...
This paper describes the bioconjugation of histidine-tagged enzymes and other proteins to the surfac...
Resumen del trabajo presentado a la I Jornada de jóvenes investigadores de cerámica y vidrio en el I...
We are interested in functionalizing gold nanoparticles (AuNPs) with proteins using a biomimetic app...
Resumen del póster presentado al RSC Chemical Nanoscience and Nanotechnology Early Careers Virtual M...
In recent years, magnetic nanoparticles (MNPs) have been applied to numerous biological systems. The...
We report a new strategy toward construction of functional composite materials for fast molecular se...
International audience"Click" chemistry, used to promote nanoparticle assemblies, is a powerful stra...
In the pursuit of robust and reusable biocatalysts for industrial synthetic chemistry, nanobiotechno...
“Click” chemistry, used to promote nanoparticle assemblies, is a powerful strategy which has emerged...
While much effort has been made to prepare magnetic microspheres (MMs) with surface moieties that bi...
Ultrasmall gold nanoparticles (core diameter 2 nm) were surface-conjugated with azide groups by atta...