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In Silico Synthesis of Synthetic Receptors: A Polymerization Algorithm.

journal contribution
posted on 2017-09-19, 15:34 authored by Todd Cowen, Mirko Busato, Kal Karim, Sergey A. Piletsky
Molecularly imprinted polymer (MIP) synthetic receptors have proposed and applied applications in chemical extraction, sensors, assays, catalysis, targeted drug delivery, and direct inhibition of harmful chemicals and pathogens. However, they rely heavily on effective design for success. An algorithm has been written which mimics radical polymerization atomistically, accounting for chemical and spatial discrimination, hybridization, and geometric optimization. Synthetic ephedrine receptors were synthesized in silico to demonstrate the accuracy of the algorithm in reproducing polymers structures at the atomic level. Comparative analysis in the design of a synthetic ephedrine receptor demonstrates that the new method can effectively identify affinity trends and binding site selectivities where commonly used alternative methods cannot. This new method is believed to generate the most realistic models of MIPs thus produced. This suggests that the algorithm could be a powerful new tool in the design and analysis of various polymers, including MIPs, with significant implications in areas of biotechnology, biomimetics, and the materials sciences more generally.

History

Citation

Macromolecular Rapid Communications, 2016, 37 (24), pp. 2011-2016

Author affiliation

/Organisation/COLLEGE OF SCIENCE AND ENGINEERING/Department of Chemistry

Version

  • AM (Accepted Manuscript)

Published in

Macromolecular Rapid Communications

Publisher

Wiley-VCH Verlag

issn

1022-1336

eissn

1521-3927

Acceptance date

2016-09-22

Copyright date

2016

Publisher version

http://onlinelibrary.wiley.com/doi/10.1002/marc.201600515/abstract

Notes

The file associated with this record is under a permanent embargo in accordance with the publisher's policy. The full text may be available through the publisher links provided above.

Language

en

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