© 2016 American Chemical Society. This work focuses on the development of a label-free biomimetic sensor for the specific and selective detection of bacteria. The platform relies on the rebinding of bacteria to synthetic cell receptors, made by surface imprinting of polyurethane-coated aluminum chips. The heat-transfer resistance (Rth) of these so-called surface imprinted polymers (SIPs) was analyzed in time using the heat-transfer method (HTM). Rebinding of target bacteria to the synthetic receptor led to a measurable increase in thermal resistance at the solid-liquid interface. Escherichia coli and Staphylococcus aureus were used as model organisms for several proof-of-principle experiments, demonstrating the potential of the proposed pla...
We report on a novel biomimetic sensor that allows sensitive and specific detection of Escherichia c...
Accurate and sensitive detection of bacteria is crucial in medicine for diagnosis and effective trea...
Accurate and fast on-site detection of harmful microorganisms in food products is a key preventive s...
This work focuses on the development of a label-free biomimetic sensor for the specific and selectiv...
This work focuses on the development of a label-free biomimetic sensor for the specific and selectiv...
The incorporation of imprinted polymers (IP) into sensing devices has enabled the detection of a wid...
Surface detection of bacteria has been proven difficult and time-consuming. Different recovery techn...
This paper introduces a novel bacterial identification assay based on thermal wave analysis through ...
This paper introduces a novel bacterial identification assay based on thermal wave analysis through ...
We report on a novel biomimetic sensor that allows sensitive and specific detection of Escherichia c...
Accurate and sensitive detection of bacteria is crucial in medicine for diagnosis and effective trea...
Accurate and fast on-site detection of harmful microorganisms in food products is a key preventive s...
This work focuses on the development of a label-free biomimetic sensor for the specific and selectiv...
This work focuses on the development of a label-free biomimetic sensor for the specific and selectiv...
The incorporation of imprinted polymers (IP) into sensing devices has enabled the detection of a wid...
Surface detection of bacteria has been proven difficult and time-consuming. Different recovery techn...
This paper introduces a novel bacterial identification assay based on thermal wave analysis through ...
This paper introduces a novel bacterial identification assay based on thermal wave analysis through ...
We report on a novel biomimetic sensor that allows sensitive and specific detection of Escherichia c...
Accurate and sensitive detection of bacteria is crucial in medicine for diagnosis and effective trea...
Accurate and fast on-site detection of harmful microorganisms in food products is a key preventive s...