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Nanotechnology-Based Approaches for Voriconazole Delivery Applied to Invasive Fungal Infections

Invasive fungal infections increase mortality and morbidity rates worldwide. The treatment of these infections is still limited due to the low bioavailability and toxicity, requiring therapeutic monitoring, especially in the most severe cases. Voriconazole is an azole widely used to treat invasive a...

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Autores principales: de Almeida Campos, Laís, Fin, Margani Taise, Santos, Kelvin Sousa, de Lima Gualque, Marcos William, Freire Cabral, Ana Karla Lima, Khalil, Najeh Maissar, Fusco-Almeida, Ana Marisa, Mainardes, Rubiana Mara, Mendes-Giannini, Maria José Soares
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9863752/
https://www.ncbi.nlm.nih.gov/pubmed/36678893
http://dx.doi.org/10.3390/pharmaceutics15010266
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author de Almeida Campos, Laís
Fin, Margani Taise
Santos, Kelvin Sousa
de Lima Gualque, Marcos William
Freire Cabral, Ana Karla Lima
Khalil, Najeh Maissar
Fusco-Almeida, Ana Marisa
Mainardes, Rubiana Mara
Mendes-Giannini, Maria José Soares
author_facet de Almeida Campos, Laís
Fin, Margani Taise
Santos, Kelvin Sousa
de Lima Gualque, Marcos William
Freire Cabral, Ana Karla Lima
Khalil, Najeh Maissar
Fusco-Almeida, Ana Marisa
Mainardes, Rubiana Mara
Mendes-Giannini, Maria José Soares
author_sort de Almeida Campos, Laís
collection PubMed
description Invasive fungal infections increase mortality and morbidity rates worldwide. The treatment of these infections is still limited due to the low bioavailability and toxicity, requiring therapeutic monitoring, especially in the most severe cases. Voriconazole is an azole widely used to treat invasive aspergillosis, other hyaline molds, many dematiaceous molds, Candida spp., including those resistant to fluconazole, and for infections caused by endemic mycoses, in addition to those that occur in the central nervous system. However, despite its broad activity, using voriconazole has limitations related to its non-linear pharmacokinetics, leading to supratherapeutic doses and increased toxicity according to individual polymorphisms during its metabolism. In this sense, nanotechnology-based drug delivery systems have successfully improved the physicochemical and biological aspects of different classes of drugs, including antifungals. In this review, we highlighted recent work that has applied nanotechnology to deliver voriconazole. These systems allowed increased permeation and deposition of voriconazole in target tissues from a controlled and sustained release in different routes of administration such as ocular, pulmonary, oral, topical, and parenteral. Thus, nanotechnology application aiming to delivery voriconazole becomes a more effective and safer therapeutic alternative in the treatment of fungal infections.
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spelling pubmed-98637522023-01-22 Nanotechnology-Based Approaches for Voriconazole Delivery Applied to Invasive Fungal Infections de Almeida Campos, Laís Fin, Margani Taise Santos, Kelvin Sousa de Lima Gualque, Marcos William Freire Cabral, Ana Karla Lima Khalil, Najeh Maissar Fusco-Almeida, Ana Marisa Mainardes, Rubiana Mara Mendes-Giannini, Maria José Soares Pharmaceutics Review Invasive fungal infections increase mortality and morbidity rates worldwide. The treatment of these infections is still limited due to the low bioavailability and toxicity, requiring therapeutic monitoring, especially in the most severe cases. Voriconazole is an azole widely used to treat invasive aspergillosis, other hyaline molds, many dematiaceous molds, Candida spp., including those resistant to fluconazole, and for infections caused by endemic mycoses, in addition to those that occur in the central nervous system. However, despite its broad activity, using voriconazole has limitations related to its non-linear pharmacokinetics, leading to supratherapeutic doses and increased toxicity according to individual polymorphisms during its metabolism. In this sense, nanotechnology-based drug delivery systems have successfully improved the physicochemical and biological aspects of different classes of drugs, including antifungals. In this review, we highlighted recent work that has applied nanotechnology to deliver voriconazole. These systems allowed increased permeation and deposition of voriconazole in target tissues from a controlled and sustained release in different routes of administration such as ocular, pulmonary, oral, topical, and parenteral. Thus, nanotechnology application aiming to delivery voriconazole becomes a more effective and safer therapeutic alternative in the treatment of fungal infections. MDPI 2023-01-12 /pmc/articles/PMC9863752/ /pubmed/36678893 http://dx.doi.org/10.3390/pharmaceutics15010266 Text en © 2023 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 Review
de Almeida Campos, Laís
Fin, Margani Taise
Santos, Kelvin Sousa
de Lima Gualque, Marcos William
Freire Cabral, Ana Karla Lima
Khalil, Najeh Maissar
Fusco-Almeida, Ana Marisa
Mainardes, Rubiana Mara
Mendes-Giannini, Maria José Soares
Nanotechnology-Based Approaches for Voriconazole Delivery Applied to Invasive Fungal Infections
title Nanotechnology-Based Approaches for Voriconazole Delivery Applied to Invasive Fungal Infections
title_full Nanotechnology-Based Approaches for Voriconazole Delivery Applied to Invasive Fungal Infections
title_fullStr Nanotechnology-Based Approaches for Voriconazole Delivery Applied to Invasive Fungal Infections
title_full_unstemmed Nanotechnology-Based Approaches for Voriconazole Delivery Applied to Invasive Fungal Infections
title_short Nanotechnology-Based Approaches for Voriconazole Delivery Applied to Invasive Fungal Infections
title_sort nanotechnology-based approaches for voriconazole delivery applied to invasive fungal infections
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9863752/
https://www.ncbi.nlm.nih.gov/pubmed/36678893
http://dx.doi.org/10.3390/pharmaceutics15010266
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