While much effort has been made to prepare magnetic microspheres (MMs) with surface moieties that bind to affinity tags or fusion partners of interest in the recombinant proteins, it remains a challenge to develop a generic platform that is capable of incorporating a variety of capture ligands by a simple chemistry. Herein, we developed core–shell structured magnetic microspheres with a high magnetic susceptibility and a low nonspecific protein adsorption. Surface functionalization of these MMs with azide groups facilitates covalent attachment of alkynylated ligands on their surfaces by “click” chemistry and creates a versatile platform for selective purification and immobilization of recombinant proteins carrying corresponding affinity tag...
The flowerlike multifunctional affinity microspheres prepared by a facile solvothermal synthesis and...
BACKGROUND: New magnetic carrier separation technologies, capable of treating dilute solutions in la...
In this study, we describe a preparation of magnetic affinity support carrying different ligands for...
A facile approach has been developed to synthesize Fe<sub>3</sub>O<sub>4</sub>/PMG (poly (<i>N</i>,<...
Functionalized alkynyl polyvinyl alcohol magnetic microspheres (PVA MMs) were developed for the spec...
A novel affinity purification method for lysozyme (LZM) based on functionalized magnetic microsphere...
A magnetic sorbent with stable and superior magnetic behaviour was developed for His-tagged protein ...
A novel preparation method of micron-sized non-porous magnetic polymer microspheres with immobilized...
Non-porous micrometer-sized magnetic polymer microspheres were prepared for affinity protein adsorpt...
Magnetic microsphere comprises a magnetically responsive metal or metal oxide core surrounded by a p...
In this study, mono-sized anion-exchange microspheres with polyglycidylmethacrylate were engineered ...
Biomagnetic immobilization of histidine-rich proteins based on the single-step affinity adsorption o...
[[abstract]]The Cu(I)-catalyzed alkyne-azide [ 2 + 3] cycloaddition has been demonstrated to be an e...
Integration of the advantages of immobilized metal-ion affinity chromatography (IMAC) and magnetic m...
We have developed a target-molecule-functionalized magnetic nanoparticle (MNP)-based method to facil...
The flowerlike multifunctional affinity microspheres prepared by a facile solvothermal synthesis and...
BACKGROUND: New magnetic carrier separation technologies, capable of treating dilute solutions in la...
In this study, we describe a preparation of magnetic affinity support carrying different ligands for...
A facile approach has been developed to synthesize Fe<sub>3</sub>O<sub>4</sub>/PMG (poly (<i>N</i>,<...
Functionalized alkynyl polyvinyl alcohol magnetic microspheres (PVA MMs) were developed for the spec...
A novel affinity purification method for lysozyme (LZM) based on functionalized magnetic microsphere...
A magnetic sorbent with stable and superior magnetic behaviour was developed for His-tagged protein ...
A novel preparation method of micron-sized non-porous magnetic polymer microspheres with immobilized...
Non-porous micrometer-sized magnetic polymer microspheres were prepared for affinity protein adsorpt...
Magnetic microsphere comprises a magnetically responsive metal or metal oxide core surrounded by a p...
In this study, mono-sized anion-exchange microspheres with polyglycidylmethacrylate were engineered ...
Biomagnetic immobilization of histidine-rich proteins based on the single-step affinity adsorption o...
[[abstract]]The Cu(I)-catalyzed alkyne-azide [ 2 + 3] cycloaddition has been demonstrated to be an e...
Integration of the advantages of immobilized metal-ion affinity chromatography (IMAC) and magnetic m...
We have developed a target-molecule-functionalized magnetic nanoparticle (MNP)-based method to facil...
The flowerlike multifunctional affinity microspheres prepared by a facile solvothermal synthesis and...
BACKGROUND: New magnetic carrier separation technologies, capable of treating dilute solutions in la...
In this study, we describe a preparation of magnetic affinity support carrying different ligands for...