G:BOX Series Receives LED Light Additions for Sensitive Protein Detection

5 Mar 2019
Matthew Horan
Consultant

Product news

Syngene, a world-leading manufacturer of image analysis solutions, has announced a new Epi UV HI-LED lighting option for its popular G:BOX Chemi and G:BOX mini multi-application gel and blot imaging systems. These environmentally friendly lights allow faster workflow and more accurate results when imaging a diverse range of fluorescently labelled proteins on gels and blots.

With an excitation wavelength of 365nm, the Epi UV HI-LED lights transform G:BOX Chemi and G:BOX mini systems into higher-performance imagers capable of detecting SYPRO® Ruby labelled proteins, colonies and proteins labelled with wtGFP, as well as fluorescent proteins on TLC plates. Since the new lighting is around 200 times more intense than standard LEDs, exposure times are shorter, which means G:BOX systems are excellent for rapidly imaging complex multiplex fluorescence blots, 1D and 2D gel applications.

Featuring up to 100,000 hours’ service life, the eco-friendly, Epi UV HI-LED lighting is automatically controlled by GeneSys software via an intuitive, icon-driven set up. This powerful lighting and G:BOX combo, with its real-optical imaging, provides unrivalled resolution and sensitivity, allowing scientists to accurately visualise close bands; precisely detect DNA and proteins down to the femtogram level, and enjoy great publication-quality images every time.

G:BOX mini

Syngene

G:BOX mini is a compact, multi application imaging system for accurately imaging mini and midi fluorescence and visible gels, multiplex fluorescence westerns, stain-free gels and chemiluminescent blots.

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G:BOX Chemi XRQ

Syngene

G:BOX Chemi XRQ is a cost-efficient chemiluminescence imaging and gel documentation system. For a laboratory that needs hassle-free chemiluminescent detection, as well as routine gel documentation, using the G:BOX Chemi XRQ’s powerful GeneSys software to switch between applications is simplicity itself.

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Fluorescence SpectroscopyFluorometers and spectrofluorometers (also called fluorescence spectrometers) are used to measure the intensity and wavelength of fluorescent light emitted from a sample after excitation by illumination. Spectrofluorometers utilize monochromators to select the desired wavelengths, whereas filter fluorometers employ a set of filters. Spectrofluorometers for measuring steady-state fluorescence and lifetime fluorescence (or time-resolved fluorescence) are available, as well as fluorescence microscopes and microplate readers. Find the best fluorescence spectroscopy products in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.ProteomicsProteomics is the systemic bioinformatics study of proteins and amino acids, including their structure, size, function and identification. Tools used in proteomics include chromatography, blotting and gels, protein arrays, mass spectrometry and ELISA and associated analysis software. Analyzers and proteomic systems should be sensitive, high resolution, fast and may be automated for high-throughput.FluorescenceThe emission of fluorescence occurs when a photon of energy is supplied to a fluorescent chemical compound by an external source, causing it to become excited. Fluorescence can be detected and measured for different purposes using microplate readers, fluorescence microscopes, fluorescence scanners, and flow cytometers.Protein DetectionProtein detection techniques are essential for understanding protein expression, localization, and function. Methods such as western blotting, ELISA, and mass spectrometry are commonly used in research and diagnostics. Browse our peer-reviewed product directory to find the best tools for protein detection, compare products, check reviews, and get pricing directly from manufacturers.ImagingImaging techniques are essential for obtaining visual representations of samples to understand structures, processes, and function in biological, chemical, and physical research. These tools range from traditional light microscopy to advanced imaging modalities like MRI and electron microscopy, providing researchers with valuable data for diagnostics, drug discovery, and material analysis. Explore imaging solutions in our peer-reviewed product directory to compare products, check reviews, and get pricing directly from manufacturers.Chemiluminescence
G:BOX Series Receives LED Light Additions for Sensitive Protein Detection