A new method is presented for the detection of an immunological reaction taking place in a membrane, which covers the gate area of an ISFET. By stepwise changing the electrolyte concentration of the sample solution, a transient diffusion of ions through the membrane-protein layer occurs, resulting in a transient membrane potential, which is measured by the ISFET. The diffusion rate is determined by the immobile charge density in the amphoteric protein layer, which changes upon formation of antibody-antigen complexes. No membrane potential is induced at zero fixed charge density as occurs at a protein characteristic pH. Isoelectric points of embedded proteins can be determined by detecting the zero potential response. Up to now, the authors ...
A compact and easy-to-operate device for the detection of proteins in solution is described. The dev...
The detection of covalent and noncovalent binding events between molecules and biomembranes is a fun...
We report here on a new potentiometric biosensing principle for the detection of antibody-antigen in...
A new method is presented for the detection of an immunological reaction taking place in a membrane,...
A new method is presented for the detection of an immunological reaction taking place in a membrane,...
A new method is presented for the detection of an immunological reaction in a membrane. Antigens (or...
A new method is presented for the detection of an immunological reaction in a membrane. Antigens (or...
A stimulus-response method based on the application of a pH step is proposed for the detection of pr...
An outline of the requirements for the construction of an immunological field-effect transistor (Imm...
A stimulus-response method based on the application of a pH step is proposed for the detection of pr...
The electrical resistance of a membrane containing charged proteins is a function of both concentrat...
The electrical resistance of a membrane containing charged proteins is a function of both concentrat...
Recently a new method was introduced to operate an immunological field effect transistor (ImmunoFET)...
A compact and easy-to-operate device for the detection of proteins in solution is described. The dev...
We report here on a new potentiometric biosensing principle for the detection of antibody-antigen in...
A compact and easy-to-operate device for the detection of proteins in solution is described. The dev...
The detection of covalent and noncovalent binding events between molecules and biomembranes is a fun...
We report here on a new potentiometric biosensing principle for the detection of antibody-antigen in...
A new method is presented for the detection of an immunological reaction taking place in a membrane,...
A new method is presented for the detection of an immunological reaction taking place in a membrane,...
A new method is presented for the detection of an immunological reaction in a membrane. Antigens (or...
A new method is presented for the detection of an immunological reaction in a membrane. Antigens (or...
A stimulus-response method based on the application of a pH step is proposed for the detection of pr...
An outline of the requirements for the construction of an immunological field-effect transistor (Imm...
A stimulus-response method based on the application of a pH step is proposed for the detection of pr...
The electrical resistance of a membrane containing charged proteins is a function of both concentrat...
The electrical resistance of a membrane containing charged proteins is a function of both concentrat...
Recently a new method was introduced to operate an immunological field effect transistor (ImmunoFET)...
A compact and easy-to-operate device for the detection of proteins in solution is described. The dev...
We report here on a new potentiometric biosensing principle for the detection of antibody-antigen in...
A compact and easy-to-operate device for the detection of proteins in solution is described. The dev...
The detection of covalent and noncovalent binding events between molecules and biomembranes is a fun...
We report here on a new potentiometric biosensing principle for the detection of antibody-antigen in...