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Tricarbonyl-Pyrazine-Molybdenum(0) Metal–Organic Frameworks for the Storage and Delivery of Biologically Active Carbon Monoxide
[Image: see text] Metal–organic frameworks (MOFs) have high potential as nanoplatforms for the storage and delivery of therapeutic gasotransmitters or gas-releasing molecules. The aim of the present study was to open an investigation into the viability of tricarbonyl-pyrazine-molybdenum(0) MOFs as c...
Autores principales: | , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Chemical Society
2023
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10091354/ https://www.ncbi.nlm.nih.gov/pubmed/36996427 http://dx.doi.org/10.1021/acsbiomaterials.3c00140 |
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author | Silva, Andreia F. Calhau, Isabel B. Gomes, Ana C. Valente, Anabela A. Gonçalves, Isabel S. Pillinger, Martyn |
author_facet | Silva, Andreia F. Calhau, Isabel B. Gomes, Ana C. Valente, Anabela A. Gonçalves, Isabel S. Pillinger, Martyn |
author_sort | Silva, Andreia F. |
collection | PubMed |
description | [Image: see text] Metal–organic frameworks (MOFs) have high potential as nanoplatforms for the storage and delivery of therapeutic gasotransmitters or gas-releasing molecules. The aim of the present study was to open an investigation into the viability of tricarbonyl-pyrazine-molybdenum(0) MOFs as carbon monoxide-releasing materials (CORMAs). A previous investigation found that the reaction of Mo(CO)(6) with excess pyrazine (pyz) in a sealed ampoule gave a mixture comprising a major triclinic phase with pyz-occupied hexagonal channels, formulated as fac-Mo(CO)(3)(pyz)(3/2)·1/2pyz (Mo-hex), and a minor dense cubic phase, formulated as fac-Mo(CO)(3)(pyz)(3/2) (Mo-cub). In the present work, an open reflux method in toluene has been optimized for the large-scale synthesis of the pure Mo-cub phase. The crystalline solids Mo-hex and Mo-cub were characterized by powder X-ray diffraction (PXRD), scanning electron microscopy (SEM), thermogravimetric analysis (TGA), FT-IR and FT-Raman spectroscopies, and (13)C{(1)H} cross-polarization (CP) magic-angle spinning (MAS) NMR spectroscopy. The release of CO from the MOFs was studied by the deoxy-myoglobin (deoxy-Mb)/carbonmonoxy-myoglobin (MbCO) UV–vis assay. Mo-hex and Mo-cub release CO upon contact with a physiological buffer in the dark, delivering 0.35 and 0.22 equiv (based on Mo), respectively, after 24 h, with half-lives of 3–4 h. Both materials display high photostability such that the CO-releasing kinetics is not affected by irradiation of the materials with UV light. These materials are attractive as potential CORMAs due to the slow release of a high CO payload. In the solid-state and under open air, Mo-cub underwent almost complete decarbonylation over a period of 4 days, corresponding to a theoretical CO release of 10 mmol per gram of material. |
format | Online Article Text |
id | pubmed-10091354 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | American Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-100913542023-04-13 Tricarbonyl-Pyrazine-Molybdenum(0) Metal–Organic Frameworks for the Storage and Delivery of Biologically Active Carbon Monoxide Silva, Andreia F. Calhau, Isabel B. Gomes, Ana C. Valente, Anabela A. Gonçalves, Isabel S. Pillinger, Martyn ACS Biomater Sci Eng [Image: see text] Metal–organic frameworks (MOFs) have high potential as nanoplatforms for the storage and delivery of therapeutic gasotransmitters or gas-releasing molecules. The aim of the present study was to open an investigation into the viability of tricarbonyl-pyrazine-molybdenum(0) MOFs as carbon monoxide-releasing materials (CORMAs). A previous investigation found that the reaction of Mo(CO)(6) with excess pyrazine (pyz) in a sealed ampoule gave a mixture comprising a major triclinic phase with pyz-occupied hexagonal channels, formulated as fac-Mo(CO)(3)(pyz)(3/2)·1/2pyz (Mo-hex), and a minor dense cubic phase, formulated as fac-Mo(CO)(3)(pyz)(3/2) (Mo-cub). In the present work, an open reflux method in toluene has been optimized for the large-scale synthesis of the pure Mo-cub phase. The crystalline solids Mo-hex and Mo-cub were characterized by powder X-ray diffraction (PXRD), scanning electron microscopy (SEM), thermogravimetric analysis (TGA), FT-IR and FT-Raman spectroscopies, and (13)C{(1)H} cross-polarization (CP) magic-angle spinning (MAS) NMR spectroscopy. The release of CO from the MOFs was studied by the deoxy-myoglobin (deoxy-Mb)/carbonmonoxy-myoglobin (MbCO) UV–vis assay. Mo-hex and Mo-cub release CO upon contact with a physiological buffer in the dark, delivering 0.35 and 0.22 equiv (based on Mo), respectively, after 24 h, with half-lives of 3–4 h. Both materials display high photostability such that the CO-releasing kinetics is not affected by irradiation of the materials with UV light. These materials are attractive as potential CORMAs due to the slow release of a high CO payload. In the solid-state and under open air, Mo-cub underwent almost complete decarbonylation over a period of 4 days, corresponding to a theoretical CO release of 10 mmol per gram of material. American Chemical Society 2023-03-30 /pmc/articles/PMC10091354/ /pubmed/36996427 http://dx.doi.org/10.1021/acsbiomaterials.3c00140 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Silva, Andreia F. Calhau, Isabel B. Gomes, Ana C. Valente, Anabela A. Gonçalves, Isabel S. Pillinger, Martyn Tricarbonyl-Pyrazine-Molybdenum(0) Metal–Organic Frameworks for the Storage and Delivery of Biologically Active Carbon Monoxide |
title | Tricarbonyl-Pyrazine-Molybdenum(0)
Metal–Organic
Frameworks for the Storage and Delivery of Biologically Active Carbon
Monoxide |
title_full | Tricarbonyl-Pyrazine-Molybdenum(0)
Metal–Organic
Frameworks for the Storage and Delivery of Biologically Active Carbon
Monoxide |
title_fullStr | Tricarbonyl-Pyrazine-Molybdenum(0)
Metal–Organic
Frameworks for the Storage and Delivery of Biologically Active Carbon
Monoxide |
title_full_unstemmed | Tricarbonyl-Pyrazine-Molybdenum(0)
Metal–Organic
Frameworks for the Storage and Delivery of Biologically Active Carbon
Monoxide |
title_short | Tricarbonyl-Pyrazine-Molybdenum(0)
Metal–Organic
Frameworks for the Storage and Delivery of Biologically Active Carbon
Monoxide |
title_sort | tricarbonyl-pyrazine-molybdenum(0)
metal–organic
frameworks for the storage and delivery of biologically active carbon
monoxide |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10091354/ https://www.ncbi.nlm.nih.gov/pubmed/36996427 http://dx.doi.org/10.1021/acsbiomaterials.3c00140 |
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