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For this microscope to be of use to biologists, more stable fluorescent molecules need to be found.
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In T. thermophila studies, the most commonly used protein localization tag is the enhanced green fluorescent protein (EGFP), which is more stable and emits brighter fluorescence than wild-type GFP (WT-GFP).
To improve resolution to gain a further insight into the subcellular localization of edelfosine, we used the novel Et-BDP-ET and Yn-BDP-ET analogs, which allowed us to visualize the subcellular localization of the fluorescent compounds in HeLa cells through confocal microscopy, as the fluorescent signal was more stable.
Almost nontoxic and more stable inorganic europium is selected as fluorescent bioimaging probes [24 27].
In both cases, bacterial bioluminescence allowed faster and more sensitive detection of the model toxicants; the fluorescent reporter proteins were much more stable, and following long-term exposure allowed detection at levels similar to that of the bioluminescent sensors.
Forrest designed the layers so the fluorescent material, which is more efficient and more stable than the blue-phosphor material, was nearest the cathode and could capture higher-energy photons, then pass lower-energy ones to the other layers, where they'd create green and red light.
Covalent complexes are more stable in vivo than noncovalent counterparts because digoxigeninylated or biotinylated fluorescent payloads without disulfide-linkage are cleared more rapidly in mice (approximately 50% reduced 48 hour serum levels) compared with their covalently linked counterparts.
In addition, the covalent nature of the binding of fluorescent dyes to targets through tyramide renders the signals more stable and resistant to the conditions the specimens are subjected to during FISH.
TaqMan-MGB probes are more stable and show an improved signal-to noise ratio due to the use of non-fluorescent quencher (NFQ) instead of the fluorescent quencher TAMRA.
Based on selenol's ability to specifically break AuS bonds and form more stable AuSe bonds on the surfaces of gold nanoparticles (AuNPs), we developed a novel near-infrared fluorescent nanosensor (Cy5.5-peptide-AuNPs) for detecting selenol.
However, the intensity and color errors caused by the fluorescent light can be quite severe and the choice for shifting results in a more stable image quality.
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