Hybridization rates of sheared, genomic E. coli DNA in 0.14 M, pH 6.7 phosphate buffer at 65°C were determined by: (1) observing the rate of absorbance decrease at 260 nm due to self-hybridization in solution; and (2) measurement of the rate of mass increase caused by hybridization between DNA in solution and DNA photografted to polystyrene. The latter measurement was done using a quartz crystal microbalance (QCM). In both the spectrophotometric and QCM experiments the probe was identical to the target, as both were taken from the same sample of sheared E. coli DNA. In the QCM measurements, viscoelastic effects were made negligible by drying the biopolymer layer on the QCM\u27s surface before taking the frequency readings. Our purpose was t...
The physical–chemical properties of the surface of DNA microarrays and biosensors play a fundamental...
Biosensors, in which binding of ligands is detected through changes in the optical or electrochemica...
The merging of semiconductor technology with molecular biology has inspired DNA microarray developme...
Summary Biosensors have been successfully applied to study DNA hybridization reactions for several ...
We have characterized the immobilization of thiol-modified oligomers on Au surfaces and subsequent h...
Binding or hybridization between either two complementary DNA molecules, DNA/RNA or DNA/protein is n...
The scientific question addressed in this work is: what hides beneath first order kinetic constant k...
We report here how the quartz crystal microbalance with dissipation monitoring (QCM-D) technique, si...
Escherichia coli O157:H7 is a foodborne pathogen associated to outbreaks with high mortality. Since...
We have demonstrated a simple yet direct method for determining the kinetic parameters in DNA-DNA in...
Our goal is to test simple strategies to attain high signals from DNA hybridization events. These st...
Während in den letzten Jahren zahlreiche Biosensoren zum spezifischen Nachweis von DNA entwickelt wu...
Biosensors, in which binding of ligands is detected through changes in the optical or electrochemica...
A new method of DNA sequencing by hybridization using a microchip containing a set of immobilized ol...
Single-molecule fluorescence methods can count molecules without calibration, measure kinetics at eq...
The physical–chemical properties of the surface of DNA microarrays and biosensors play a fundamental...
Biosensors, in which binding of ligands is detected through changes in the optical or electrochemica...
The merging of semiconductor technology with molecular biology has inspired DNA microarray developme...
Summary Biosensors have been successfully applied to study DNA hybridization reactions for several ...
We have characterized the immobilization of thiol-modified oligomers on Au surfaces and subsequent h...
Binding or hybridization between either two complementary DNA molecules, DNA/RNA or DNA/protein is n...
The scientific question addressed in this work is: what hides beneath first order kinetic constant k...
We report here how the quartz crystal microbalance with dissipation monitoring (QCM-D) technique, si...
Escherichia coli O157:H7 is a foodborne pathogen associated to outbreaks with high mortality. Since...
We have demonstrated a simple yet direct method for determining the kinetic parameters in DNA-DNA in...
Our goal is to test simple strategies to attain high signals from DNA hybridization events. These st...
Während in den letzten Jahren zahlreiche Biosensoren zum spezifischen Nachweis von DNA entwickelt wu...
Biosensors, in which binding of ligands is detected through changes in the optical or electrochemica...
A new method of DNA sequencing by hybridization using a microchip containing a set of immobilized ol...
Single-molecule fluorescence methods can count molecules without calibration, measure kinetics at eq...
The physical–chemical properties of the surface of DNA microarrays and biosensors play a fundamental...
Biosensors, in which binding of ligands is detected through changes in the optical or electrochemica...
The merging of semiconductor technology with molecular biology has inspired DNA microarray developme...