Stochastic microsensors based on modified graphene for pattern recognition of maspin in biological samples

Maspin is a novel serine protease inhibitor differentially expressed in several types of human cancers. It proved to be a key biomarker in the assessment of gastric cancer. Therefore, we design, characterize, and validate two stochastic microsensors based on graphene co-doped with N and S, and modif...

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Veröffentlicht in:Analytical and bioanalytical chemistry 2022-05, Vol.414 (12), p.3667-3673
Hauptverfasser: Stefan-van Staden, Raluca-Ioana, Bogea, Iuliana Mihaela, Ilie-Mihai, Ruxandra-Maria, Gheorghe, Damaris-Cristina, Coroş, Maria, Pruneanu, Stela Maria
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Sprache:eng
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Zusammenfassung:Maspin is a novel serine protease inhibitor differentially expressed in several types of human cancers. It proved to be a key biomarker in the assessment of gastric cancer. Therefore, we design, characterize, and validate two stochastic microsensors based on graphene co-doped with N and S, and modified with α-cyclodextrin and maltodextrin, for the pattern recognition and quantification of maspin in whole blood, gastric tumor tissue, saliva, and urine. While the sensitivities were comparable with magnitude order, the variations were in the wideness of the linear concentration range, when measurements were performed at a pH of 7.40. Very low limits of quantification were recorded at both working pHs: 7.40, and 3.00. High recoveries of maspin in whole blood, gastric tissue tumor, saliva, and urine were also recorded. Graphical abstract
ISSN:1618-2642
1618-2650
DOI:10.1007/s00216-022-04007-5