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Thermal Stability Kinetics and Shelf Life Estimation of the Redox-Active Therapeutic and Mimic of Superoxide Dismutase Enzyme, Mn(III) meso-Tetrakis(N-ethylpyridinium-2-yl)porphyrin Chloride (MnTE-2-PyPCl(5), BMX-010)

Mn(III) meso-tetrakis(N-ethylpyridinium-2-yl)porphyrin chloride (MnTE-2-PyPCl(5), BMX-010, and AEOL10113) is among the most studied superoxide dismutase (SOD) mimics and redox-active therapeutics, being currently tested as a drug candidate in a phase II clinical trial on atopic dermatitis and itch....

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Autores principales: Maia, Clarissa G. C., de Araujo, Bárbara C. R., de Freitas-Marques, Maria B., da Costa, Israel F., Yoshida, Maria Irene, da Nova Mussel, Wagner, Sebastião, Rita de Cássia O., Rebouças, Júlio S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8668311/
https://www.ncbi.nlm.nih.gov/pubmed/34912497
http://dx.doi.org/10.1155/2021/7003861
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author Maia, Clarissa G. C.
de Araujo, Bárbara C. R.
de Freitas-Marques, Maria B.
da Costa, Israel F.
Yoshida, Maria Irene
da Nova Mussel, Wagner
Sebastião, Rita de Cássia O.
Rebouças, Júlio S.
author_facet Maia, Clarissa G. C.
de Araujo, Bárbara C. R.
de Freitas-Marques, Maria B.
da Costa, Israel F.
Yoshida, Maria Irene
da Nova Mussel, Wagner
Sebastião, Rita de Cássia O.
Rebouças, Júlio S.
author_sort Maia, Clarissa G. C.
collection PubMed
description Mn(III) meso-tetrakis(N-ethylpyridinium-2-yl)porphyrin chloride (MnTE-2-PyPCl(5), BMX-010, and AEOL10113) is among the most studied superoxide dismutase (SOD) mimics and redox-active therapeutics, being currently tested as a drug candidate in a phase II clinical trial on atopic dermatitis and itch. The thermal stability of active pharmaceutical ingredients (API) is useful for estimating the expiration date and shelf life of pharmaceutical products under various storage and handling conditions. The thermal decomposition and kinetic parameters of MnTE-2-PyPCl(5) were determined by thermogravimetry (TG) under nonisothermal and isothermal conditions. The first thermal degradation pathway affecting Mn-porphyrin structural integrity and, thus, activity and bioavailability was associated with loss of ethyl chloride via N-dealkylation reaction. The thermal stability kinetics of the N-dealkylation process leading to MnTE-2-PyPCl(5) decomposition was investigated by using isoconversional models and artificial neural network. The new multilayer perceptron (MLP) artificial neural network approach allowed the simultaneous study of ten solid-state kinetic models and showed that MnTE-2-PyPCl(5) degradation is better explained by a combination of various mechanisms, with major contributions from the contraction models R1 and R2. The calculated activation energy values from isothermal and nonisothermal data were about 90 kJ mol(–1) on average and agreed with one another. According to the R1 modelling of the isothermal decomposition data, the estimated shelf life value for 10% decomposition (t(90%)) of MnTE-2-PyPCl(5) at 25°C was approximately 17 years, which is consistent with the high solid-state stability of the compound. These results represent the first study on the solid-state decomposition kinetics of Mn(III) 2-N-alkylpyridylporphyrins, contributing to the development of this class of redox-active therapeutics and SOD mimics and providing supporting data to protocols on purification, handling, storage, formulation, expiration date, and general use of these compounds.
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spelling pubmed-86683112021-12-14 Thermal Stability Kinetics and Shelf Life Estimation of the Redox-Active Therapeutic and Mimic of Superoxide Dismutase Enzyme, Mn(III) meso-Tetrakis(N-ethylpyridinium-2-yl)porphyrin Chloride (MnTE-2-PyPCl(5), BMX-010) Maia, Clarissa G. C. de Araujo, Bárbara C. R. de Freitas-Marques, Maria B. da Costa, Israel F. Yoshida, Maria Irene da Nova Mussel, Wagner Sebastião, Rita de Cássia O. Rebouças, Júlio S. Oxid Med Cell Longev Research Article Mn(III) meso-tetrakis(N-ethylpyridinium-2-yl)porphyrin chloride (MnTE-2-PyPCl(5), BMX-010, and AEOL10113) is among the most studied superoxide dismutase (SOD) mimics and redox-active therapeutics, being currently tested as a drug candidate in a phase II clinical trial on atopic dermatitis and itch. The thermal stability of active pharmaceutical ingredients (API) is useful for estimating the expiration date and shelf life of pharmaceutical products under various storage and handling conditions. The thermal decomposition and kinetic parameters of MnTE-2-PyPCl(5) were determined by thermogravimetry (TG) under nonisothermal and isothermal conditions. The first thermal degradation pathway affecting Mn-porphyrin structural integrity and, thus, activity and bioavailability was associated with loss of ethyl chloride via N-dealkylation reaction. The thermal stability kinetics of the N-dealkylation process leading to MnTE-2-PyPCl(5) decomposition was investigated by using isoconversional models and artificial neural network. The new multilayer perceptron (MLP) artificial neural network approach allowed the simultaneous study of ten solid-state kinetic models and showed that MnTE-2-PyPCl(5) degradation is better explained by a combination of various mechanisms, with major contributions from the contraction models R1 and R2. The calculated activation energy values from isothermal and nonisothermal data were about 90 kJ mol(–1) on average and agreed with one another. According to the R1 modelling of the isothermal decomposition data, the estimated shelf life value for 10% decomposition (t(90%)) of MnTE-2-PyPCl(5) at 25°C was approximately 17 years, which is consistent with the high solid-state stability of the compound. These results represent the first study on the solid-state decomposition kinetics of Mn(III) 2-N-alkylpyridylporphyrins, contributing to the development of this class of redox-active therapeutics and SOD mimics and providing supporting data to protocols on purification, handling, storage, formulation, expiration date, and general use of these compounds. Hindawi 2021-12-06 /pmc/articles/PMC8668311/ /pubmed/34912497 http://dx.doi.org/10.1155/2021/7003861 Text en Copyright © 2021 Clarissa G. C. Maia et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Maia, Clarissa G. C.
de Araujo, Bárbara C. R.
de Freitas-Marques, Maria B.
da Costa, Israel F.
Yoshida, Maria Irene
da Nova Mussel, Wagner
Sebastião, Rita de Cássia O.
Rebouças, Júlio S.
Thermal Stability Kinetics and Shelf Life Estimation of the Redox-Active Therapeutic and Mimic of Superoxide Dismutase Enzyme, Mn(III) meso-Tetrakis(N-ethylpyridinium-2-yl)porphyrin Chloride (MnTE-2-PyPCl(5), BMX-010)
title Thermal Stability Kinetics and Shelf Life Estimation of the Redox-Active Therapeutic and Mimic of Superoxide Dismutase Enzyme, Mn(III) meso-Tetrakis(N-ethylpyridinium-2-yl)porphyrin Chloride (MnTE-2-PyPCl(5), BMX-010)
title_full Thermal Stability Kinetics and Shelf Life Estimation of the Redox-Active Therapeutic and Mimic of Superoxide Dismutase Enzyme, Mn(III) meso-Tetrakis(N-ethylpyridinium-2-yl)porphyrin Chloride (MnTE-2-PyPCl(5), BMX-010)
title_fullStr Thermal Stability Kinetics and Shelf Life Estimation of the Redox-Active Therapeutic and Mimic of Superoxide Dismutase Enzyme, Mn(III) meso-Tetrakis(N-ethylpyridinium-2-yl)porphyrin Chloride (MnTE-2-PyPCl(5), BMX-010)
title_full_unstemmed Thermal Stability Kinetics and Shelf Life Estimation of the Redox-Active Therapeutic and Mimic of Superoxide Dismutase Enzyme, Mn(III) meso-Tetrakis(N-ethylpyridinium-2-yl)porphyrin Chloride (MnTE-2-PyPCl(5), BMX-010)
title_short Thermal Stability Kinetics and Shelf Life Estimation of the Redox-Active Therapeutic and Mimic of Superoxide Dismutase Enzyme, Mn(III) meso-Tetrakis(N-ethylpyridinium-2-yl)porphyrin Chloride (MnTE-2-PyPCl(5), BMX-010)
title_sort thermal stability kinetics and shelf life estimation of the redox-active therapeutic and mimic of superoxide dismutase enzyme, mn(iii) meso-tetrakis(n-ethylpyridinium-2-yl)porphyrin chloride (mnte-2-pypcl(5), bmx-010)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8668311/
https://www.ncbi.nlm.nih.gov/pubmed/34912497
http://dx.doi.org/10.1155/2021/7003861
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