We describe a potentially universal, simple and cheap method to prepare water-compatible molecularly imprinted polymer nanoparticles (MIP-NPs) as synthetic antibodies against proteins. The strategy is based on a solid phase synthesis approach where glass beads (GBs) are functionalized with a metal chelate, acting as a general affinity ligand to attract surface-bound histidines present on proteins. This configuration enables an oriented immobilization of the proteins, upon which thermoresponsive MIP-NPs are synthesized. The GBs play the role of both a reactor and a separation column since, after synthesis, the MIP-NPs are released from the support by a simple temperature change, resulting in protein-free polymers. The resulting MIP-NPs are e...
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 (MIPs) are potential generic alternatives to antibodies in diagnostic...
This thesis describes the synthesis, by a solid-phase synthesis approach, of nanoparticles of molecu...
Molecularly imprinted polymers are leading technology in the development of protein biomimetics. Thi...
We developed a modular approach for the preparation of nanoparticle-supported polymer brushes carryi...
We developed a modular approach for the preparation of nanoparticle-supported polymer brushes carryi...
Molecularly imprinted beads with double thermosensitive gates for selective recognition of proteinsA...
Molecular Imprint Polymers (MIPs) constitute a unique class of chemically-synthesized antigen recogn...
International audienceSince the pioneering work of Wulff and Mosbach more than 30 years ago, molecul...
Molecular Imprint Polymers (MIPs) constitute a unique class of chemically-synthesized antigen recogn...
Molecular imprinting is a promising way for constructing artificial protein recognition materials, b...
Molecularly imprinted polymer (MIP) nanoparticles, commonly referred to as ‘plastic antibodies’ or s...
Natural antibodies are used widely for important applications such as biomedical analysis, cancer th...
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...
The use of antibodies (Abs) and enzymes in diagnostic assays is widely accepted and, to date, repres...
Molecularly Imprinted Polymers (MIPs) are potential generic alternatives to antibodies in diagnostic...
This thesis describes the synthesis, by a solid-phase synthesis approach, of nanoparticles of molecu...
Molecularly imprinted polymers are leading technology in the development of protein biomimetics. Thi...
We developed a modular approach for the preparation of nanoparticle-supported polymer brushes carryi...
We developed a modular approach for the preparation of nanoparticle-supported polymer brushes carryi...
Molecularly imprinted beads with double thermosensitive gates for selective recognition of proteinsA...
Molecular Imprint Polymers (MIPs) constitute a unique class of chemically-synthesized antigen recogn...
International audienceSince the pioneering work of Wulff and Mosbach more than 30 years ago, molecul...
Molecular Imprint Polymers (MIPs) constitute a unique class of chemically-synthesized antigen recogn...
Molecular imprinting is a promising way for constructing artificial protein recognition materials, b...
Molecularly imprinted polymer (MIP) nanoparticles, commonly referred to as ‘plastic antibodies’ or s...
Natural antibodies are used widely for important applications such as biomedical analysis, cancer th...
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...
The use of antibodies (Abs) and enzymes in diagnostic assays is widely accepted and, to date, repres...
Molecularly Imprinted Polymers (MIPs) are potential generic alternatives to antibodies in diagnostic...