Silicon-based electric DNA chip arrays were utilized to fast identify pathogenic microorganisms with respect to the capacity to produce toxins involved in foodborne poisoning and infections. Bacteria of the B. cereus and the enterohemorrhagic E. coli (EHEC) groups contain different set-ups of various virulence factors that are encoded by the corresponding genes. The purpose of this work was to develop a fast and simple method for determination of the presence of these virulence genes in a colony from primary enrichment cultures. A target gene is detected through hybridization to a surface-immobilized specific capture probe and biotin-labeled detection probe. Following binding of an enzyme conjugate to this sandwich hybrid complex, a current...
A silicon chip-based electric detector coupled to bead-based sandwich hybridization (BBSH) is presen...
Inexpensive, sensitive and specific detection of infectious agents is a critical milestone for preve...
The objective of this research project was to develop a miniaturized DNA amplification biosensor for...
Silicon-based electric chip arrays were developed for characterization of Bacillus cereus with respe...
A method for the identiWcation of bacterial colonies based on their content of speciWc genes is pres...
Background Bacillus cereus constitutes a significant cause of acute food poisoning in humans. Despit...
Different factors influencing chip array-based electrical detection of DNA for analysis of pathogeni...
Infections of bacterial cultures by bacteriophages are common and serious problems in many biotechno...
Detection of the full set of toxin encoding genes involved in gastrointestinal diseases caused by B....
For the sensitive detection of amplicons derived from diagnostic PCR, a novel electrical low-density...
Given the increased interest in public hygiene due to outbreaks of food poisoning, increased emphasi...
Number of pathogenic tick-borne bacteria cause diseases in humans and animals. Wide range of conven...
Miniaturized integrated DNA analysis systems have largely been based on a multi-chamber design with ...
The detection of particular genetic sequences aids in the early detection and diagnosis of disease; ...
Recently, several innovative designs for nucleic acid-based electrochemical sensing have appeared. ...
A silicon chip-based electric detector coupled to bead-based sandwich hybridization (BBSH) is presen...
Inexpensive, sensitive and specific detection of infectious agents is a critical milestone for preve...
The objective of this research project was to develop a miniaturized DNA amplification biosensor for...
Silicon-based electric chip arrays were developed for characterization of Bacillus cereus with respe...
A method for the identiWcation of bacterial colonies based on their content of speciWc genes is pres...
Background Bacillus cereus constitutes a significant cause of acute food poisoning in humans. Despit...
Different factors influencing chip array-based electrical detection of DNA for analysis of pathogeni...
Infections of bacterial cultures by bacteriophages are common and serious problems in many biotechno...
Detection of the full set of toxin encoding genes involved in gastrointestinal diseases caused by B....
For the sensitive detection of amplicons derived from diagnostic PCR, a novel electrical low-density...
Given the increased interest in public hygiene due to outbreaks of food poisoning, increased emphasi...
Number of pathogenic tick-borne bacteria cause diseases in humans and animals. Wide range of conven...
Miniaturized integrated DNA analysis systems have largely been based on a multi-chamber design with ...
The detection of particular genetic sequences aids in the early detection and diagnosis of disease; ...
Recently, several innovative designs for nucleic acid-based electrochemical sensing have appeared. ...
A silicon chip-based electric detector coupled to bead-based sandwich hybridization (BBSH) is presen...
Inexpensive, sensitive and specific detection of infectious agents is a critical milestone for preve...
The objective of this research project was to develop a miniaturized DNA amplification biosensor for...