This thesis describes the synthesis, by a solid-phase synthesis approach, of nanoparticles of molecularly imprinted polymers (MIPs) for the recognition of proteins. Molecularly imprinted polymers are biomimetic receptors synthesized by a nanomolding process of the polymer around single molecules. They therefore possess specific recognition cavities for their target molecule. The technique of molecular imprinting for small target molecules is well established, while protein imprinting remains a challenge due to the flexibility and complexity of their native structure and functional sites, but also because of their low stability under unusual conditions. Therefore, a solid-phase synthesis approach has been developed where the protein is immob...
The use of antibodies (Abs) and enzymes in diagnostic assays is widely accepted and, to date, repres...
The use of antibodies (Abs) and enzymes in diagnostic assays is widely accepted and, to date, repres...
Molecularly imprinted polymers are leading technology in the development of protein biomimetics. Thi...
Cette thèse décrit la synthèse de nanoparticules de polymères à empreintes moléculaires (MIP, de l’a...
Le but de ce travail de thèse était de concevoir et de développer un nouveau type de matériau nanost...
Enzyme-catalyzed synthesis of natural and synthetic polymers has been developed since several decade...
Molecularly Imprinted Polymers (MIPs) are potential generic alternatives to antibodies in diagnostic...
We describe a potentially universal, simple and cheap method to prepare water-compatible molecularly...
Molecular imprinting is a technique for preparing polymeric scaffolds (Molecularly Imprinted Polymer...
Molecularly imprinted polymers (MIP) are gaining increasing interest thanks to their low cost of man...
Molecular Imprint Polymers (MIPs) constitute a unique class of chemically-synthesized antigen recogn...
Molecular Imprint Polymers (MIPs) constitute a unique class of chemically-synthesized antigen recogn...
Cette thèse porte sur le développement de nanoparticules magnétiques hybrides pour la nanomédecine. ...
The use of antibodies (Abs) and enzymes in diagnostic assays is widely accepted and, to date, repres...
Molecularly imprinted polymeric nanogels (nanoMIPs) are soft biomimetics with recognition properties...
The use of antibodies (Abs) and enzymes in diagnostic assays is widely accepted and, to date, repres...
The use of antibodies (Abs) and enzymes in diagnostic assays is widely accepted and, to date, repres...
Molecularly imprinted polymers are leading technology in the development of protein biomimetics. Thi...
Cette thèse décrit la synthèse de nanoparticules de polymères à empreintes moléculaires (MIP, de l’a...
Le but de ce travail de thèse était de concevoir et de développer un nouveau type de matériau nanost...
Enzyme-catalyzed synthesis of natural and synthetic polymers has been developed since several decade...
Molecularly Imprinted Polymers (MIPs) are potential generic alternatives to antibodies in diagnostic...
We describe a potentially universal, simple and cheap method to prepare water-compatible molecularly...
Molecular imprinting is a technique for preparing polymeric scaffolds (Molecularly Imprinted Polymer...
Molecularly imprinted polymers (MIP) are gaining increasing interest thanks to their low cost of man...
Molecular Imprint Polymers (MIPs) constitute a unique class of chemically-synthesized antigen recogn...
Molecular Imprint Polymers (MIPs) constitute a unique class of chemically-synthesized antigen recogn...
Cette thèse porte sur le développement de nanoparticules magnétiques hybrides pour la nanomédecine. ...
The use of antibodies (Abs) and enzymes in diagnostic assays is widely accepted and, to date, repres...
Molecularly imprinted polymeric nanogels (nanoMIPs) are soft biomimetics with recognition properties...
The use of antibodies (Abs) and enzymes in diagnostic assays is widely accepted and, to date, repres...
The use of antibodies (Abs) and enzymes in diagnostic assays is widely accepted and, to date, repres...
Molecularly imprinted polymers are leading technology in the development of protein biomimetics. Thi...