P4SPR Surface Plasmon Resonance Instrument
Rapid and intuitive 2- or 4-channel portable SPR instrument for everyday research investigation of biomolecular interactions and assay development.
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To analyse clinically and environmentally relevant metabolites as well as therapeutic drug monitorin
Simple to use instrument with high sensitivity and reproducibility for serum/urine disease biomarkers even in the picomolar to attomolar ranges. COVID-19 has re-emphasized the importance of instrument portability which allows for diagnostic testing in remote places without the need to travel to the lab! P4SPR is one such device that is portable, and highly amenable for use at the point-of-care in a kind of point-and-shoot type of applications. Great value for money!
Review Date: 29 Mar 2022 | Affinité Instruments
Affinité Instruments' P4SPR is an everyday tool for researchers to quickly develop bioassays and undertake biomolecular interaction characterizations from the convenience of your lab bench. The core technology is based on thin-film SPR found in most benchtop devices capable of detection in complex media such as serum, plasma, cell lysates, or wastewater. The P4SPR has a flexible design - its configuration is adaptable from injection to the sensor. It comes with two injection models with multiple options to meet your research needs. Rapid data processing within intuitive software provides key data for biosensing and protein interaction characterization in real-time.
Key Features:
- Thin film-based SPR
- Dimensions: 175 x 155 x 55 mm
- Weight: < 1.3 kg.
- USB powered
- Microfluidic cell min. volume: 50 uL
- Sensitivity: 2750 nm/RIU
- Resolution: 1 micro RIU
- Dynamic range: 1.33 to 1.39 refractive index unit
- Coefficient of variation on signal: < 0.6%
- Polychromatic light source
- P4SPR Control™ graphical user interface
- Compatible with TraceDrawer™
- LabView™ based Affinité Control Graphic User Interface
- CE Marked
Applications:
- assay development
- affinity determination
- kinetics information
- biosensing
- quality control
- concentration
- specificity
- competition assays
- in vitro pseudo-neutralization assays
- cancer biomarkers
- SARS-CoV-2
- drug-protein interactions