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Monoketonic Curcuminoid-Lidocaine Co-Deliver Using Thermosensitive Organogels: From Drug Synthesis to Epidermis Structural Studies

Organogels (ORGs) are remarkable matrices due to their versatile chemical composition and straightforward preparation. This study proposes the development of ORGs as dual drug-carrier systems, considering the application of synthetic monoketonic curcuminoid (m-CUR) and lidocaine (LDC) to treat topic...

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Autores principales: Vigato, Aryane A., Machado, Ian P., del Valle, Matheus, da Ana, Patricia A., Sepulveda, Anderson F., Yokaichiya, Fabiano, Franco, Margareth K. K. D., Loiola, Messias C., Tófoli, Giovana R., Cereda, Cintia Maria S., de Sairre, Mirela I., de Araujo, Daniele R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8879257/
https://www.ncbi.nlm.nih.gov/pubmed/35214026
http://dx.doi.org/10.3390/pharmaceutics14020293
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author Vigato, Aryane A.
Machado, Ian P.
del Valle, Matheus
da Ana, Patricia A.
Sepulveda, Anderson F.
Yokaichiya, Fabiano
Franco, Margareth K. K. D.
Loiola, Messias C.
Tófoli, Giovana R.
Cereda, Cintia Maria S.
de Sairre, Mirela I.
de Araujo, Daniele R.
author_facet Vigato, Aryane A.
Machado, Ian P.
del Valle, Matheus
da Ana, Patricia A.
Sepulveda, Anderson F.
Yokaichiya, Fabiano
Franco, Margareth K. K. D.
Loiola, Messias C.
Tófoli, Giovana R.
Cereda, Cintia Maria S.
de Sairre, Mirela I.
de Araujo, Daniele R.
author_sort Vigato, Aryane A.
collection PubMed
description Organogels (ORGs) are remarkable matrices due to their versatile chemical composition and straightforward preparation. This study proposes the development of ORGs as dual drug-carrier systems, considering the application of synthetic monoketonic curcuminoid (m-CUR) and lidocaine (LDC) to treat topical inflammatory lesions. The monoketone curcuminoid (m-CUR) was synthesized by using an innovative method via a NbCl(5)–acid catalysis. ORGs were prepared by associating an aqueous phase composed of Pluronic F127 and LDC hydrochloride with an organic phase comprising isopropyl myristate (IPM), soy lecithin (LEC), and the synthesized m-CUR. Physicochemical characterization was performed to evaluate the influence of the organic phase on the ORGs supramolecular organization, permeation profiles, cytotoxicity, and epidermis structural characteristics. The physico-chemical properties of the ORGs were shown to be strongly dependent on the oil phase constitution. Results revealed that the incorporation of LEC and m-CUR shifted the sol-gel transition temperature, and that the addition of LDC enhanced the rheological G′/G″ ratio to higher values compared to original ORGs. Consequently, highly structured gels lead to gradual and controlled LDC permeation profiles from the ORG formulations. Porcine ear skin epidermis was treated with ORGs and evaluated by infrared spectroscopy (FTIR), where the stratum corneum lipids were shown to transition from a hexagonal to a liquid crystal phase. Quantitative optical coherence tomography (OCT) analysis revealed that LEC and m-CUR additives modify skin structuring. Data from this study pointed ORGs as promising formulations for skin-delivery.
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spelling pubmed-88792572022-02-26 Monoketonic Curcuminoid-Lidocaine Co-Deliver Using Thermosensitive Organogels: From Drug Synthesis to Epidermis Structural Studies Vigato, Aryane A. Machado, Ian P. del Valle, Matheus da Ana, Patricia A. Sepulveda, Anderson F. Yokaichiya, Fabiano Franco, Margareth K. K. D. Loiola, Messias C. Tófoli, Giovana R. Cereda, Cintia Maria S. de Sairre, Mirela I. de Araujo, Daniele R. Pharmaceutics Article Organogels (ORGs) are remarkable matrices due to their versatile chemical composition and straightforward preparation. This study proposes the development of ORGs as dual drug-carrier systems, considering the application of synthetic monoketonic curcuminoid (m-CUR) and lidocaine (LDC) to treat topical inflammatory lesions. The monoketone curcuminoid (m-CUR) was synthesized by using an innovative method via a NbCl(5)–acid catalysis. ORGs were prepared by associating an aqueous phase composed of Pluronic F127 and LDC hydrochloride with an organic phase comprising isopropyl myristate (IPM), soy lecithin (LEC), and the synthesized m-CUR. Physicochemical characterization was performed to evaluate the influence of the organic phase on the ORGs supramolecular organization, permeation profiles, cytotoxicity, and epidermis structural characteristics. The physico-chemical properties of the ORGs were shown to be strongly dependent on the oil phase constitution. Results revealed that the incorporation of LEC and m-CUR shifted the sol-gel transition temperature, and that the addition of LDC enhanced the rheological G′/G″ ratio to higher values compared to original ORGs. Consequently, highly structured gels lead to gradual and controlled LDC permeation profiles from the ORG formulations. Porcine ear skin epidermis was treated with ORGs and evaluated by infrared spectroscopy (FTIR), where the stratum corneum lipids were shown to transition from a hexagonal to a liquid crystal phase. Quantitative optical coherence tomography (OCT) analysis revealed that LEC and m-CUR additives modify skin structuring. Data from this study pointed ORGs as promising formulations for skin-delivery. MDPI 2022-01-27 /pmc/articles/PMC8879257/ /pubmed/35214026 http://dx.doi.org/10.3390/pharmaceutics14020293 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Vigato, Aryane A.
Machado, Ian P.
del Valle, Matheus
da Ana, Patricia A.
Sepulveda, Anderson F.
Yokaichiya, Fabiano
Franco, Margareth K. K. D.
Loiola, Messias C.
Tófoli, Giovana R.
Cereda, Cintia Maria S.
de Sairre, Mirela I.
de Araujo, Daniele R.
Monoketonic Curcuminoid-Lidocaine Co-Deliver Using Thermosensitive Organogels: From Drug Synthesis to Epidermis Structural Studies
title Monoketonic Curcuminoid-Lidocaine Co-Deliver Using Thermosensitive Organogels: From Drug Synthesis to Epidermis Structural Studies
title_full Monoketonic Curcuminoid-Lidocaine Co-Deliver Using Thermosensitive Organogels: From Drug Synthesis to Epidermis Structural Studies
title_fullStr Monoketonic Curcuminoid-Lidocaine Co-Deliver Using Thermosensitive Organogels: From Drug Synthesis to Epidermis Structural Studies
title_full_unstemmed Monoketonic Curcuminoid-Lidocaine Co-Deliver Using Thermosensitive Organogels: From Drug Synthesis to Epidermis Structural Studies
title_short Monoketonic Curcuminoid-Lidocaine Co-Deliver Using Thermosensitive Organogels: From Drug Synthesis to Epidermis Structural Studies
title_sort monoketonic curcuminoid-lidocaine co-deliver using thermosensitive organogels: from drug synthesis to epidermis structural studies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8879257/
https://www.ncbi.nlm.nih.gov/pubmed/35214026
http://dx.doi.org/10.3390/pharmaceutics14020293
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