Thiolated Chiral Naphthalene Diimide Derivatives as Effective Selectors of the β‐Blocker Atenolol Enantiomers

Author:

Kowalczyk Agata1ORCID,Duszczyk Michał1,Sęk Sławomir12ORCID,Lipiński Piotr F. J.3,Kaczorek Dorota4,Kawęcki Robert4,Grudzinski Ireneusz P.5,Rode Joanna E.6,Dobrowolski Jan Cz.6,Nowicka Anna M.1ORCID

Affiliation:

1. Faculty of Chemistry University of Warsaw Pasteura 1 Street Warsaw PL‐02‐093 Poland

2. Faculty of Chemistry Biological and Chemical Research Institute University of Warsaw Żwirki i Wigury 101 Street Warsaw PL‐02‐089 Poland

3. Department of Neuropeptides Mossakowski Medical Research Institute Polish Academy of Sciences Pawińskiego 5 Street Warsaw PL‐02‐106 Poland

4. Faculty of Science University of Siedlce 3 Maja 54 Street Siedlce PL‐08‐110 Poland

5. Faculty of Pharmacy Medical University of Warsaw Banacha 1 Street Warsaw PL‐02‐097 Poland

6. Institute of Nuclear Chemistry and Technology Dorodna 16 Street Warsaw PL‐03‐195 Poland

Abstract

AbstractAtenolol β‐blocker drug (ATN) to treat hypertension and cardiovascular disorders such as angina pectoris is manufactured commercially in a racemic form, while only its (S)‐enantiomer shows selective β1‐blocking activity. Here, a new axially chiral thiolated naphthalene diimide derivatives (HS‐BIN‐NDI) for the rapid, simple, and sensitive detection of ATN enantiomers is presented. The Surface Plasmon Resonance (SPR) and Atomic Force Microscopy (AFM) experiments show that interactions between a chiral selector and a chiral analyte occur only when their configurations are opposite. The extensive computational simulations support this finding. The association coefficient determined by SPR is high (105‐106 M−1 s−1) and indicates that the interactions are electrostatic. The analytical utility of atropisomeric HS‐BIN‐NDIs is proven, and the voltammetric sensors designed to determine ATN enantiomers are constructed. The developed sensors are characterized by a wide analytical operating range from 5.0·10−3 to 1.0 µm, nanomolar detection limit, high selectivity, and a long lifetime. Several additives like urea, creatinine, glucose, human albumin, and hemoglobin do not affect ATN sensing.

Funder

Narodowe Centrum Nauki

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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