We demonstrate the supramolecular bioconjugation of concanavalin A (Con A) protein with glycoenzyme horseradish peroxidase (HRP) inside single nanopores, fabricated in heavy ion tracked polymer membranes. Firstly, the HRP-enzyme was covalently immobilized on the inner wall of the pores using carbodiimide coupling chemistry. The immobilized HRP-enzyme molecules bear sugar (mannose) groups available for the binding of Con A protein. Secondly, the bioconjugation of Con A on the pore wall was achieved through its biospecific interactions with the mannose residues of the HRP enzyme. The immobilization of biomolecules inside the nanopore leads to the reduction of the available area for ionic transport, and this blocking effect can be exploited to...
The use of nanopores of well controlled geometry for sensing molecules in solution is reviewed. Focu...
Protein nanopores have been engineered with chemical or genetic sensing elements for the stochastic ...
International audienceProteins subjected to an electric field and forced to pass through a nanopore ...
We demonstrate the supramolecular bioconjugation of concanavalin A (Con A) protein with glycoenzyme ...
We demonstrate the supramolecular bioconjugation of concanavalin A (Con A) protein with glycoenzyme ...
In nature, ion channels facilitate the selective transport of ions, water and small organic molecule...
International audienceSolid-state nanopores provide a powerful tool to electrically analyze nanopart...
In nature, ion conducting nanopores play a vital role for the function of living cells. They undergo...
We review the current status of various aspects of biopolymer translocation through nanopores and th...
Foremost among the challenges facing single molecule sequencing of proteins by nanopores is the lack...
This thesis is focused on the potential applications of ion track-etched nanopores in polymeric memb...
In the recent years, track-etched nanopores became the major impulse in the development of nanofluid...
The use of nanopores of well controlled geometry for sensing molecules in solution is reviewed. Focu...
There is a growing quest for tailorable nanochannels or nanopores having dimensions comparable to th...
The use of nanopores of well controlled geometry for sensing molecules in solution is reviewed. Focu...
Protein nanopores have been engineered with chemical or genetic sensing elements for the stochastic ...
International audienceProteins subjected to an electric field and forced to pass through a nanopore ...
We demonstrate the supramolecular bioconjugation of concanavalin A (Con A) protein with glycoenzyme ...
We demonstrate the supramolecular bioconjugation of concanavalin A (Con A) protein with glycoenzyme ...
In nature, ion channels facilitate the selective transport of ions, water and small organic molecule...
International audienceSolid-state nanopores provide a powerful tool to electrically analyze nanopart...
In nature, ion conducting nanopores play a vital role for the function of living cells. They undergo...
We review the current status of various aspects of biopolymer translocation through nanopores and th...
Foremost among the challenges facing single molecule sequencing of proteins by nanopores is the lack...
This thesis is focused on the potential applications of ion track-etched nanopores in polymeric memb...
In the recent years, track-etched nanopores became the major impulse in the development of nanofluid...
The use of nanopores of well controlled geometry for sensing molecules in solution is reviewed. Focu...
There is a growing quest for tailorable nanochannels or nanopores having dimensions comparable to th...
The use of nanopores of well controlled geometry for sensing molecules in solution is reviewed. Focu...
Protein nanopores have been engineered with chemical or genetic sensing elements for the stochastic ...
International audienceProteins subjected to an electric field and forced to pass through a nanopore ...