The immobilization of antibodies on various surfaces has been the subject of advanced research in various immunoassay-based diagnostic devices. The physical and chemical stabilities of the immobilized antibodies on a solid surface still cause many problems because upon immobilizing antibody molecules, the antigen-binding ability usually decreases. The silanization of surfaces with organosilanes carrying chemically active groups such as (3-aminopropyl) triethoxysilane (APTES) can accommodate these antigen-binding molecules in an appropriate orientation so that their functionality and binding activity are essentially retained. In this study, n-butyltrimethoxysilane (BMS) and 3-(octafluoropentyloxy)-propyltriethoxysilane (OFPOS) were used as “...
L’objectif de mon doctorat, réalisé dans le cadre d’une collaboration entre le laboratoire des proté...
The aim of this work was to create patterned surfaces for localized and specific biochemical recogni...
Recent technical advances in biorecognition engineering and microparticle fabrication enabled us to ...
Głównym celem pracy było zbadanie wpływu gęstości powierzchniowej przeciwciał na ich orientacje oraz...
The aim of my PhD thesis, conducted as part of a collaboration between the laboratory of protein sep...
Amino-terminated surfaces can be effectively obtained by means of silanizing agents, realizing surfa...
The aims of this research were to develop novel surface modification strategies that can be used on...
In the development of biosensors, the immobilization of biomolecules at interfaces played a crucial ...
Silicon dioxide surfaces, functionalized by two aminosilane compounds (3-amino-propyl-triethoxysilan...
The surface science of bioassay devices is of great importance in the development of modern diagnost...
Antibody microarrays are powerful and high-throughput tools for screening and identifying tumor mark...
International audienceAntibody microarrays are powerful and high-throughput tools for screening and ...
The focus of the research reported in this dissertation has focused on two areas: (1) Synthesis of s...
Current state-of-the-art techniques for the solid phase synthesis of molecularly imprinted polymer (...
The controlled immobilization of proteins on solid substrates has been extensively studied due to it...
L’objectif de mon doctorat, réalisé dans le cadre d’une collaboration entre le laboratoire des proté...
The aim of this work was to create patterned surfaces for localized and specific biochemical recogni...
Recent technical advances in biorecognition engineering and microparticle fabrication enabled us to ...
Głównym celem pracy było zbadanie wpływu gęstości powierzchniowej przeciwciał na ich orientacje oraz...
The aim of my PhD thesis, conducted as part of a collaboration between the laboratory of protein sep...
Amino-terminated surfaces can be effectively obtained by means of silanizing agents, realizing surfa...
The aims of this research were to develop novel surface modification strategies that can be used on...
In the development of biosensors, the immobilization of biomolecules at interfaces played a crucial ...
Silicon dioxide surfaces, functionalized by two aminosilane compounds (3-amino-propyl-triethoxysilan...
The surface science of bioassay devices is of great importance in the development of modern diagnost...
Antibody microarrays are powerful and high-throughput tools for screening and identifying tumor mark...
International audienceAntibody microarrays are powerful and high-throughput tools for screening and ...
The focus of the research reported in this dissertation has focused on two areas: (1) Synthesis of s...
Current state-of-the-art techniques for the solid phase synthesis of molecularly imprinted polymer (...
The controlled immobilization of proteins on solid substrates has been extensively studied due to it...
L’objectif de mon doctorat, réalisé dans le cadre d’une collaboration entre le laboratoire des proté...
The aim of this work was to create patterned surfaces for localized and specific biochemical recogni...
Recent technical advances in biorecognition engineering and microparticle fabrication enabled us to ...