An Assay Study of Molecular Recognition of Amino Acids in Water: Covalent Imprinting of Cysteine

Harsha Vardhan Reddy Burri, Donghong Yu

Research output: Contribution to journalJournal articleResearchpeer-review

Abstract

A novel synthetic N-(9-fluorenyl methoxy carbonyl)-L-Cysteine (Fmoc-Cys(SH)-OH) receptor was pre- pared by co-polymerizing (9-fluorenyl methoxy carbonyl)-S-(1-propene-2-thiol)-L-Cysteine (Fmoc-Cys(SCH2CHCH2)-OH) and a non-imprinted polymer prepared from 1-propene-1-thiol photo-chemically 15 h at room temperature and additional 3 h thermally at 80℃. Subsequently, disulfides were reduced with lithium aluminum hydride (LiAlH4) from imprinted polymers. The imprinted polymers selectively recognized Fmoc-Cys(SH)-OH with high binding constants in aqueous and protic solvents by thiol-disulfide exchange reactions. In order to estimate the covalent rebinding, particles were further extracted and disulfides reduced were estimated with the non-covalent recognized and covalently bounded analytes. From rebinding studies that were conducted, we observed that proved polymer particles could be reproducible and contain constant binding strengths and recognition properties. Furthermore, we proved that short incubation periods resulted in fast and efficient thiol-disulfide interchange reactions.
Original languageEnglish
JournalJournal of Biomedical Science and Engineering
Volume8
Pages (from-to)805-814
Number of pages10
ISSN1937-6871
DOIs
Publication statusPublished - 17 Dec 2015

Keywords

  • Synthetic Receptor-Like Structure, Molecularly Imprinted Polymers, Thiol-Disulfide Exchange Based Recognition, Covalent Recognition

Fingerprint

Dive into the research topics of 'An Assay Study of Molecular Recognition of Amino Acids in Water: Covalent Imprinting of Cysteine'. Together they form a unique fingerprint.

Cite this