This article presents the first example of a microfluidic chip for heterogeneous bioassays using a locally immobilized biospecitic layer and operated electrokinetically. The reaction chamber has picoliter dimensions and is integrated into a network of microchannels etched in glass. The high affinity of protein A (PA) for rabbit immunoglobulin G (rIgG) was exploited for chip testing, with PA being immobilized on microchannel walls and fluorescently labeled (CyS) rIgG serving as sample. It was possible to operate the chip in an immunoaffnity chromatographic manner, using electrokinetically pumped solutions. Concentration of antibody from dilute solution onto the solid phase was demonstrated, with signal gains of ∼30 possible. A dose-response ...
In this contribution, the role of bioaffinity interactions on electrokinetically controlled microfab...
In this contribution, the role of bioaffinity interactions on electrokinetically controlled microfab...
In this contribution, the role of bioaffinity interactions on electrokinetically controlled microfab...
This article presents the first example of a microfluidic chip for heterogeneous bioassays using a l...
This article presents the first example of a microfluidic chip for heterogeneous bioassays using a l...
This article presents the first example of a microfluidic chip for heterogeneous bioassays using a l...
This article presents the first example of a microfluidic chip for heterogeneous bioassays using a l...
This article presents the first example of a microfluidic chip for heterogeneous bioassays using a l...
This article presents the first example of a microfluidic chip for heterogeneous bioassays using a l...
This thesis was on the development of a high-throughput electrokinetically-controlled heterogeneous ...
This thesis was on the development of a high-throughput electrokinetically-controlled heterogeneous ...
A microfluidic platform for a heterogeneous competitive immunoassay of human immunoglobulin G (IgG) ...
A microfluidic platform for a heterogeneous competitive immunoassay of human immunoglobulin G (IgG) ...
A microfluidic platform for a heterogeneous competitive immunoassay of human immunoglobulin G (IgG) ...
A microfluidic platform for a heterogeneous competitive immunoassay of human immunoglobulin G (IgG) ...
In this contribution, the role of bioaffinity interactions on electrokinetically controlled microfab...
In this contribution, the role of bioaffinity interactions on electrokinetically controlled microfab...
In this contribution, the role of bioaffinity interactions on electrokinetically controlled microfab...
This article presents the first example of a microfluidic chip for heterogeneous bioassays using a l...
This article presents the first example of a microfluidic chip for heterogeneous bioassays using a l...
This article presents the first example of a microfluidic chip for heterogeneous bioassays using a l...
This article presents the first example of a microfluidic chip for heterogeneous bioassays using a l...
This article presents the first example of a microfluidic chip for heterogeneous bioassays using a l...
This article presents the first example of a microfluidic chip for heterogeneous bioassays using a l...
This thesis was on the development of a high-throughput electrokinetically-controlled heterogeneous ...
This thesis was on the development of a high-throughput electrokinetically-controlled heterogeneous ...
A microfluidic platform for a heterogeneous competitive immunoassay of human immunoglobulin G (IgG) ...
A microfluidic platform for a heterogeneous competitive immunoassay of human immunoglobulin G (IgG) ...
A microfluidic platform for a heterogeneous competitive immunoassay of human immunoglobulin G (IgG) ...
A microfluidic platform for a heterogeneous competitive immunoassay of human immunoglobulin G (IgG) ...
In this contribution, the role of bioaffinity interactions on electrokinetically controlled microfab...
In this contribution, the role of bioaffinity interactions on electrokinetically controlled microfab...
In this contribution, the role of bioaffinity interactions on electrokinetically controlled microfab...