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The solid-state structure of the β-blocker metoprolol: a combined experimental and in silico investigation

Metoprolol {systematic name: (RS)-1-iso­propyl­amino-3-[4-(2-meth­oxy­eth­yl)phen­oxy]propan-2-ol}, C(15)H(25)NO(3), is a cardioselective β(1)-adrenergic blocking agent that shares part of its mol­ecular skeleton with a large number of other β-blockers. Results from its solid-state characterization...

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Autores principales: Rossi, Patrizia, Paoli, Paola, Chelazzi, Laura, Conti, Luca, Bencini, Andrea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6363042/
https://www.ncbi.nlm.nih.gov/pubmed/30720446
http://dx.doi.org/10.1107/S2053229618017084
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author Rossi, Patrizia
Paoli, Paola
Chelazzi, Laura
Conti, Luca
Bencini, Andrea
author_facet Rossi, Patrizia
Paoli, Paola
Chelazzi, Laura
Conti, Luca
Bencini, Andrea
author_sort Rossi, Patrizia
collection PubMed
description Metoprolol {systematic name: (RS)-1-iso­propyl­amino-3-[4-(2-meth­oxy­eth­yl)phen­oxy]propan-2-ol}, C(15)H(25)NO(3), is a cardioselective β(1)-adrenergic blocking agent that shares part of its mol­ecular skeleton with a large number of other β-blockers. Results from its solid-state characterization by single-crystal and variable-temperature powder X-ray diffraction and differential scanning calorimetry are presented. Its mol­ecular and crystal arrangements have been further investigated by mol­ecular modelling, by a Cambridge Structural Database (CSD) survey and by Hirshfeld surface analysis. In the crystal, the side arm bearing the isopropyl group, which is common to other β-blockers, adopts an all-trans conformation, which is the most stable arrangement from modelling data. The crystal packing of metoprolol is dominated by an O—H⋯N/N⋯H—O pair of hydrogen bonds (as also confirmed by a Hirshfeld surface analysis), which gives rise to chains containing alternating R and S metoprolol mol­ecules extending along the b axis, supplemented by a weaker O⋯H—N/N—H⋯O pair of inter­actions. In addition, within the same stack of mol­ecules, a C—H⋯O contact, partially oriented along the b and c axes, links homochiral mol­ecules. Amongst the solid-state structures of mol­ecules structurally related to metoprolol deposited in the CSD, the β-blocker drug betaxolol shows the closest analogy in terms of three-dimensional arrangement and inter­actions. Notwithstanding their close similarity, the crystal lattices of the two drugs respond differently on increasing temperature: metoprolol expands anisotropically, while for betaxolol, an isotropic thermal expansion is observed.
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spelling pubmed-63630422019-02-22 The solid-state structure of the β-blocker metoprolol: a combined experimental and in silico investigation Rossi, Patrizia Paoli, Paola Chelazzi, Laura Conti, Luca Bencini, Andrea Acta Crystallogr C Struct Chem Research Papers Metoprolol {systematic name: (RS)-1-iso­propyl­amino-3-[4-(2-meth­oxy­eth­yl)phen­oxy]propan-2-ol}, C(15)H(25)NO(3), is a cardioselective β(1)-adrenergic blocking agent that shares part of its mol­ecular skeleton with a large number of other β-blockers. Results from its solid-state characterization by single-crystal and variable-temperature powder X-ray diffraction and differential scanning calorimetry are presented. Its mol­ecular and crystal arrangements have been further investigated by mol­ecular modelling, by a Cambridge Structural Database (CSD) survey and by Hirshfeld surface analysis. In the crystal, the side arm bearing the isopropyl group, which is common to other β-blockers, adopts an all-trans conformation, which is the most stable arrangement from modelling data. The crystal packing of metoprolol is dominated by an O—H⋯N/N⋯H—O pair of hydrogen bonds (as also confirmed by a Hirshfeld surface analysis), which gives rise to chains containing alternating R and S metoprolol mol­ecules extending along the b axis, supplemented by a weaker O⋯H—N/N—H⋯O pair of inter­actions. In addition, within the same stack of mol­ecules, a C—H⋯O contact, partially oriented along the b and c axes, links homochiral mol­ecules. Amongst the solid-state structures of mol­ecules structurally related to metoprolol deposited in the CSD, the β-blocker drug betaxolol shows the closest analogy in terms of three-dimensional arrangement and inter­actions. Notwithstanding their close similarity, the crystal lattices of the two drugs respond differently on increasing temperature: metoprolol expands anisotropically, while for betaxolol, an isotropic thermal expansion is observed. International Union of Crystallography 2019-01-15 /pmc/articles/PMC6363042/ /pubmed/30720446 http://dx.doi.org/10.1107/S2053229618017084 Text en © Rossi et al. 2019 http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.http://creativecommons.org/licenses/by/4.0/
spellingShingle Research Papers
Rossi, Patrizia
Paoli, Paola
Chelazzi, Laura
Conti, Luca
Bencini, Andrea
The solid-state structure of the β-blocker metoprolol: a combined experimental and in silico investigation
title The solid-state structure of the β-blocker metoprolol: a combined experimental and in silico investigation
title_full The solid-state structure of the β-blocker metoprolol: a combined experimental and in silico investigation
title_fullStr The solid-state structure of the β-blocker metoprolol: a combined experimental and in silico investigation
title_full_unstemmed The solid-state structure of the β-blocker metoprolol: a combined experimental and in silico investigation
title_short The solid-state structure of the β-blocker metoprolol: a combined experimental and in silico investigation
title_sort solid-state structure of the β-blocker metoprolol: a combined experimental and in silico investigation
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6363042/
https://www.ncbi.nlm.nih.gov/pubmed/30720446
http://dx.doi.org/10.1107/S2053229618017084
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