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This remarkable selectivity makes this probe potentially useful for the analysis of the biologically important GSH.
This specificity makes this probe more interesting than classical single tip probes (which measure only the gas residence time) or double tip probes (which are more intrusive).
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These facts would make this probe a great potential for detecting Ni2+ in biology.
These results would make this probe a great potential application for detecting Mg2+ in biological system.
The probe is placed into a sterile sheath, though this makes the probe tip larger.
Its novel characterizations of high spatial resolution, reflection mode operation, fast response and high stability, great linear response within biological meaningful pH range and high pH resolutions, make this pH probe a very cost-effective tool for chemical/biological sensing, especially within the single cell level research field.
The results show that the relative error of this probe is less than 10%, and it could suppress the lift-off disturbance effectively, which makes this 2-D ACFM probe array to be insensitive to lift-off and unable to meet the engineering expectations.
Firstly, application of probes makes this method more specific than other current methods.
The broad generic nature of the PCR primers coupled with the enhanced sensitivity and specificity of the fluorescent hybridisation probes makes this assay potentially valuable for both routine diagnostic and epidemiological work.
Moreover, the current cost of the capture probes makes this method most efficient for projects dealing with hundreds of species.
It is this specificity that makes the probe molecular and small molecules, peptides, enzyme substrates and antibodies have all been used in this manner.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com