A Rational Approach to Minimal High-Resolution Cross-Reactive Arrays

We report a rational approach to the construction of cross-reactive arrays for steroids consisting of five to seven sensors incorporating modified oligonucleotides. The sensors for our arrays were selected to maximize their differential responses to the two steroids most different in an arbitrarily chosen parameter named “shape-length”. The arrays incorporated three previously unreported types of sensors identified through a massive screening effort:  (1) three-way junction sensors with neutralized charges within junction; (2) “self-aggregating sensors”; and (3) sensors incorporating fluorophore directly in a three-way junction as a spacer. The arrays were tested on seven steroids and an alkaloid (cocaine) over a range of concentrations, and achieved 92−96% accuracy in class assignments, despite the close structural similarities between steroids.

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PID https://www.doi.org/10.1021/ja0642663.s001
URL https://figshare.com/articles/journal_contribution/A_Rational_Approach_to_Minimal_High_Resolution_Cross_Reactive_Arrays/3044509
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Access Right Open Access
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Author Green, Eric
Author Olah, Mark J.
Author Abramova, Tatiana
Author Williams, Lance R.
Author Stefanovic, Darko
Author Worgall, Tilla
Author Stojanovic, Milan N.
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Collected From figshare
Hosted By figshare
Publication Date 2016-02-29
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Language English
Resource Type Other literature type
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Source https://science-innovation-policy.openaire.eu/search/publication?articleId=r37980778c78::a07ae2c442ede98f242659dbc121b475
Author jsonws_user
Last Updated 26 December 2020, 10:50 (CET)
Created 26 December 2020, 10:50 (CET)