Cargando…

Covalent cucurbit[7]uril–dye conjugates for sensing in aqueous saline media and biofluids

Non-covalent chemosensing ensembles of cucurbit[n]urils (CBn) have been widely used in proof-of-concept sensing applications, but they are prone to disintegrate in saline media, e.g. biological fluids. We show here that covalent cucurbit[7]uril–indicator dye conjugates are buffer- (10× PBS buffer) a...

Descripción completa

Detalles Bibliográficos
Autores principales: Hu, Changming, Grimm, Laura, Prabodh, Amrutha, Baksi, Ananya, Siennicka, Alicja, Levkin, Pavel A., Kappes, Manfred M., Biedermann, Frank
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8162441/
https://www.ncbi.nlm.nih.gov/pubmed/34094355
http://dx.doi.org/10.1039/d0sc03079a
_version_ 1783700713656811520
author Hu, Changming
Grimm, Laura
Prabodh, Amrutha
Baksi, Ananya
Siennicka, Alicja
Levkin, Pavel A.
Kappes, Manfred M.
Biedermann, Frank
author_facet Hu, Changming
Grimm, Laura
Prabodh, Amrutha
Baksi, Ananya
Siennicka, Alicja
Levkin, Pavel A.
Kappes, Manfred M.
Biedermann, Frank
author_sort Hu, Changming
collection PubMed
description Non-covalent chemosensing ensembles of cucurbit[n]urils (CBn) have been widely used in proof-of-concept sensing applications, but they are prone to disintegrate in saline media, e.g. biological fluids. We show here that covalent cucurbit[7]uril–indicator dye conjugates are buffer- (10× PBS buffer) and saline-stable (up to 1.4 M NaCl) and allow for selective sensing of Parkinson's drug amantadine in human urine and saliva, where the analogous non-covalent CB7⊃dye complex is dysfunctional. The in-depth analysis of the covalent host–dye conjugates in the gas-phase, and deionized versus saline aqueous media revealed interesting structural, thermodynamic and kinetic effects that are of general interest for the design of CBn-based supramolecular chemosensors and systems. This work also introduces a novel high-affinity indicator dye for CB7 through which fundamental limitations of indicator displacement assays (IDA) were exposed, namely an impractical slow equilibration time. Unlike non-covalent CBn⊃dye reporter pairs, the conjugate chemosensors can also operate through a S(N)2-type guest–dye exchange mechanism, which shortens assay times and opens new avenues for tailoring analyte-selectivity.
format Online
Article
Text
id pubmed-8162441
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-81624412021-06-04 Covalent cucurbit[7]uril–dye conjugates for sensing in aqueous saline media and biofluids Hu, Changming Grimm, Laura Prabodh, Amrutha Baksi, Ananya Siennicka, Alicja Levkin, Pavel A. Kappes, Manfred M. Biedermann, Frank Chem Sci Chemistry Non-covalent chemosensing ensembles of cucurbit[n]urils (CBn) have been widely used in proof-of-concept sensing applications, but they are prone to disintegrate in saline media, e.g. biological fluids. We show here that covalent cucurbit[7]uril–indicator dye conjugates are buffer- (10× PBS buffer) and saline-stable (up to 1.4 M NaCl) and allow for selective sensing of Parkinson's drug amantadine in human urine and saliva, where the analogous non-covalent CB7⊃dye complex is dysfunctional. The in-depth analysis of the covalent host–dye conjugates in the gas-phase, and deionized versus saline aqueous media revealed interesting structural, thermodynamic and kinetic effects that are of general interest for the design of CBn-based supramolecular chemosensors and systems. This work also introduces a novel high-affinity indicator dye for CB7 through which fundamental limitations of indicator displacement assays (IDA) were exposed, namely an impractical slow equilibration time. Unlike non-covalent CBn⊃dye reporter pairs, the conjugate chemosensors can also operate through a S(N)2-type guest–dye exchange mechanism, which shortens assay times and opens new avenues for tailoring analyte-selectivity. The Royal Society of Chemistry 2020-09-22 /pmc/articles/PMC8162441/ /pubmed/34094355 http://dx.doi.org/10.1039/d0sc03079a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Hu, Changming
Grimm, Laura
Prabodh, Amrutha
Baksi, Ananya
Siennicka, Alicja
Levkin, Pavel A.
Kappes, Manfred M.
Biedermann, Frank
Covalent cucurbit[7]uril–dye conjugates for sensing in aqueous saline media and biofluids
title Covalent cucurbit[7]uril–dye conjugates for sensing in aqueous saline media and biofluids
title_full Covalent cucurbit[7]uril–dye conjugates for sensing in aqueous saline media and biofluids
title_fullStr Covalent cucurbit[7]uril–dye conjugates for sensing in aqueous saline media and biofluids
title_full_unstemmed Covalent cucurbit[7]uril–dye conjugates for sensing in aqueous saline media and biofluids
title_short Covalent cucurbit[7]uril–dye conjugates for sensing in aqueous saline media and biofluids
title_sort covalent cucurbit[7]uril–dye conjugates for sensing in aqueous saline media and biofluids
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8162441/
https://www.ncbi.nlm.nih.gov/pubmed/34094355
http://dx.doi.org/10.1039/d0sc03079a
work_keys_str_mv AT huchangming covalentcucurbit7urildyeconjugatesforsensinginaqueoussalinemediaandbiofluids
AT grimmlaura covalentcucurbit7urildyeconjugatesforsensinginaqueoussalinemediaandbiofluids
AT prabodhamrutha covalentcucurbit7urildyeconjugatesforsensinginaqueoussalinemediaandbiofluids
AT baksiananya covalentcucurbit7urildyeconjugatesforsensinginaqueoussalinemediaandbiofluids
AT siennickaalicja covalentcucurbit7urildyeconjugatesforsensinginaqueoussalinemediaandbiofluids
AT levkinpavela covalentcucurbit7urildyeconjugatesforsensinginaqueoussalinemediaandbiofluids
AT kappesmanfredm covalentcucurbit7urildyeconjugatesforsensinginaqueoussalinemediaandbiofluids
AT biedermannfrank covalentcucurbit7urildyeconjugatesforsensinginaqueoussalinemediaandbiofluids