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Single-carbon discrimination by selected peptides for individual detection of volatile organic compounds.


ABSTRACT: Although volatile organic compounds (VOCs) are becoming increasingly recognized as harmful agents and potential biomarkers, selective detection of the organic targets remains a tremendous challenge. Among the materials being investigated for target recognition, peptides are attractive candidates because of their chemical robustness, divergence, and their homology to natural olfactory receptors. Using a combinatorial peptide library and either a graphitic surface or phenyl-terminated self-assembled monolayer as relevant target surfaces, we successfully selected three interesting peptides that differentiate a single carbon deviation among benzene and its analogues. The heterogeneity of the designed target surfaces provided peptides with varying affinity toward targeted molecules and generated a set of selective peptides that complemented each other. Microcantilever sensors conjugated with each peptide quantitated benzene, toluene and xylene to sub-ppm levels in real time. The selection of specific receptors for a group of volatile molecules will provide a strong foundation for general approach to individually monitoring VOCs.

SUBMITTER: Ju S 

PROVIDER: S-EPMC4361882 | biostudies-literature | 2015 Mar

REPOSITORIES: biostudies-literature

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Single-carbon discrimination by selected peptides for individual detection of volatile organic compounds.

Ju Soomi S   Lee Ki-Young KY   Min Sun-Joon SJ   Yoo Yong Kyoung YK   Hwang Kyo Seon KS   Kim Sang Kyung SK   Yi Hyunjung H  

Scientific reports 20150317


Although volatile organic compounds (VOCs) are becoming increasingly recognized as harmful agents and potential biomarkers, selective detection of the organic targets remains a tremendous challenge. Among the materials being investigated for target recognition, peptides are attractive candidates because of their chemical robustness, divergence, and their homology to natural olfactory receptors. Using a combinatorial peptide library and either a graphitic surface or phenyl-terminated self-assembl  ...[more]

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2023-04-04 | GSE223760 | GEO