To gauge the experimental variability associated with Biacore analysis, 36 different investigators analyzed a small molecule/enzyme interaction under similar conditions. Acetazolamide (222 g/mol) binding to carbonic anhydrase II (CAII; 30,000 Da) was chosen as a model system. Both reagents were stable and their interaction posed a challenge to measure because of the low molecular weight of the analyte and the fast association rate constant. Each investigator created three different density surfaces of CAII and analyzed an identical dilution series of acetazolamide (ranging from 4.1 to 1000 nM). The greatest variability in the results was observed during the enzyme immobilization step since each investigator provided their own surface activa...
Data from real-time molecular interaction analysis using BIACORE are currently evaluated by numerica...
Objective: The present study was carried out to study the binding interactions of different N'-(subs...
<p>a) Association (light gray block) and dissociation (dark grey block) profiles for VHH M1 or M5 bi...
To gauge the experimental variability associated with Biacore analysis, 36 different investigators a...
A total of 22 individuals participated in this benchmark study to characterize the thermodynamics of...
Fully characterizing the interactions involving biomolecules requires information on the assembly st...
AbstractSurface-based binding assays are often influenced by the transport of analyte to the sensor ...
The formation of macromolecular complexes, for example the complex between an antibody and an antige...
<p>Association rate constants (k<sub>a</sub>), dissociation rate constants (k<sub>d</sub>), equilibr...
This review places the characterization of interactions by biosensor technology in the broader conte...
Real time biomolecular interaction analysis based on surface plasmon resonance has been proven usefu...
International audienceThis work describes the development of biophysical unbiased methods to study t...
Macromolecular interactions observed using surface plasmon resonance technology (BIAcore, Pharmacia)...
Liquid extraction surface analysis (LESA) coupled to native mass spectrometry (MS) presents unique a...
A procedure for evaluating the thermodynamic equilibrium constant by kinetic analysis of sensorgrams...
Data from real-time molecular interaction analysis using BIACORE are currently evaluated by numerica...
Objective: The present study was carried out to study the binding interactions of different N'-(subs...
<p>a) Association (light gray block) and dissociation (dark grey block) profiles for VHH M1 or M5 bi...
To gauge the experimental variability associated with Biacore analysis, 36 different investigators a...
A total of 22 individuals participated in this benchmark study to characterize the thermodynamics of...
Fully characterizing the interactions involving biomolecules requires information on the assembly st...
AbstractSurface-based binding assays are often influenced by the transport of analyte to the sensor ...
The formation of macromolecular complexes, for example the complex between an antibody and an antige...
<p>Association rate constants (k<sub>a</sub>), dissociation rate constants (k<sub>d</sub>), equilibr...
This review places the characterization of interactions by biosensor technology in the broader conte...
Real time biomolecular interaction analysis based on surface plasmon resonance has been proven usefu...
International audienceThis work describes the development of biophysical unbiased methods to study t...
Macromolecular interactions observed using surface plasmon resonance technology (BIAcore, Pharmacia)...
Liquid extraction surface analysis (LESA) coupled to native mass spectrometry (MS) presents unique a...
A procedure for evaluating the thermodynamic equilibrium constant by kinetic analysis of sensorgrams...
Data from real-time molecular interaction analysis using BIACORE are currently evaluated by numerica...
Objective: The present study was carried out to study the binding interactions of different N'-(subs...
<p>a) Association (light gray block) and dissociation (dark grey block) profiles for VHH M1 or M5 bi...