2021
DOI: 10.1021/acssensors.1c01371
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Fluorescent Sensor Array for Quantitative Determination of Saccharides

Abstract: Accurate monitoring of sugar levels is essential for many fields from food industry to human health. Here, we developed FRET-based dual chromophore sensors for saccharides that form oxazolidine boronate and may be employed as a noninvasive method for monitoring of sugar levels in biological fluids, namely, urine. The saccharide-binding properties of the sensors were studied using fluorescence spectroscopy and utilized in the determination of saccharides in a high-throughput manner.Here, two fluorescent sensors… Show more

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Cited by 30 publications
(18 citation statements)
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“…The obtained data were then subjected to Student's T-test and analysed using Linear Discriminant Analysis (LDA). [38,[40][41][42] Here, the LDA was used to discriminate among different species and classify all repetitions into single cluster for each saccharide. Figure 4 shows the graphical output of the qualitative LDA with clearly separated seven clusters corresponding to each saccharide analyte measured in 20 repetitions with 100 % classification accuracy.…”
Section: Resultsmentioning
confidence: 99%
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“…The obtained data were then subjected to Student's T-test and analysed using Linear Discriminant Analysis (LDA). [38,[40][41][42] Here, the LDA was used to discriminate among different species and classify all repetitions into single cluster for each saccharide. Figure 4 shows the graphical output of the qualitative LDA with clearly separated seven clusters corresponding to each saccharide analyte measured in 20 repetitions with 100 % classification accuracy.…”
Section: Resultsmentioning
confidence: 99%
“…Fluorescence intensity was measured for each well using four different channels (see experimental section). The obtained data were then subjected to Student's T‐test and analysed using Linear Discriminant Analysis (LDA) [38,40–42] . Here, the LDA was used to discriminate among different species and classify all repetitions into single cluster for each saccharide.…”
Section: Resultsmentioning
confidence: 99%
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“… However, like most diboronates from the older literature, the classical diboronate 10 is not well soluble in water. For this reason, prior studies on diboronates for carbohydrate measurements often employ partial organic solvents (typically 50% methanol). Diboronate 8 is well soluble in water and thus directly applicable to measurements in aqueous solutions. However, when tried with buffers including albumin in native concentration (0.5 mM), we found the fluorescent signal to be largely quenched.…”
Section: Introductionmentioning
confidence: 99%