Dynamic and Assembly Characteristics of Deep‐Cavity Basket Acting as a Host for Inclusion Complexation of Mitoxantrone in Biotic and Abiotic Systems

Author:

Pavlović Radoslav Z.12345ORCID,Finnegan Tyler J.1,Metlushko Anna23456,Hansen Alexandar L.7ORCID,Waudby Christopher A.8,Wang Xiuze1,Hoefer Nicole910,McComb David W.910,Pavić Aleksandar11,Plackić Nikola11,Novaković Jovana1213,Bradić Jovana1213,Jeremić Nevena1213,Jakovljević Vladimir1213,Šmit Biljana14ORCID,Matić Sanja14ORCID,Alvarez‐Saavedra Matias A.23456,Čapo Ivan15,Moore Curtis E.1,Stupp Samuel I.23456,Badjić Jovica D.1ORCID

Affiliation:

1. Department of Chemistry & Biochemistry The Ohio State University 1100 W. 18th Avenue Columbus OH 43210 USA

2. Department of Chemistry Northwestern University Evanston IL 60208 USA

3. Simpson Querrey Institute for BioNanotechnology Northwestern University Chicago IL 60611 USA

4. Department of Medicine Northwestern University Chicago IL 60611 USA

5. Department of Materials Science and Engineering Northwestern University Chicago IL 60208 USA

6. Department of Biomedical Engineering Northwestern University Chicago IL 60208 USA).

7. Campus Chemical Instrument Center The Ohio State University Columbus OH 43210 USA

8. School of Pharmacy University College London London WC1N 1AX UK

9. Center for Electron Microscopy and Analysis The Ohio State University Columbus OH 43210 USA

10. Department of Materials Science and Engineering The Ohio State University Columbus OH 43210 USA

11. Institute of Molecular Genetics and Genetic Engineering University of Belgrade 11000 Belgrade Serbia

12. Department of Pharmacy Faculty of Medical Sciences University of Kragujevac Kragujevac Serbia

13. Center for Excellence for Redox Balance Research in Cardiovascular and Metabolic Disorders Kragujevac Serbia

14. University of Kragujevac Institute for Information Technologies Department of Science Kragujevac Serbia).

15. Department of Histology and Embryology Medical Faculty of Novi Sad Novi Sad Serbia

Abstract

AbstractWe describe the preparation, dynamic, assembly characteristics of vase‐shaped basket 13− along with its ability to form an inclusion complex with anticancer drug mitoxantrone in abiotic and biotic systems. This novel cavitand has a deep nonpolar pocket consisting of three naphthalimide sides fused to a bicyclic platform at the bottom while carrying polar glycines at the top. The results of 1H Nuclear Magnetic Resonance (NMR), 1H NMR Chemical Exchange Saturation Transfer (CEST), Calorimetry, Hybrid Replica Exchange Molecular Dynamics (REMD), and Microcrystal Electron Diffraction (MicroED) measurements are in line with 1 forming dimer [12]6−, to be in equilibrium with monomers 1(R)3− (relaxed) and 1(S)3− (squeezed). Through simultaneous line‐shape analysis of 1H NMR data, kinetic and thermodynamic parameters characterizing these equilibria were quantified. Basket 1(R)3− includes anticancer drug mitoxantrone (MTO2+) in its pocket to give stable binary complex [MTO1] (Kd=2.1 μM) that can be precipitated in vitro with UV light or pH as stimuli. Both in vitro and in vivo studies showed that the basket is nontoxic, while at a higher proportion with respect to MTO it reduced its cytotoxicity in vitro. With well‐characterized internal dynamics and dimerization, the ability to include mitoxantrone, and biocompatibility, the stage is set to develop sequestering agents from deep‐cavity baskets.

Funder

National Science Foundation

National Institutes of Health

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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