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Development and Optimization of a Novel Lozenge Containing a Metronidazole-Peppermint Oil-Tranexamic Acid Self-Nanoemulsified Delivery System to Be Used after Dental Extraction: In Vitro Evaluation and In Vivo Appraisal

In-depth studies on essential oil–based nanoemulsions (NEs) have centered on a variety of oral health issues. NEs improve the delivery of nonpolar active agents to sites and thereby boost the dissolution and distribution of the agents. Metronidazole-peppermint oil-tranexamic acid self-nanoemulsifyin...

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Autores principales: Alissa, Mohammed, Hjazi, Ahmed, Abusalim, Ghadah S., Aloraini, Ghfren S., Alghamdi, Suad A., Rizg, Waleed Y., Hosny, Khaled M., Alblowi, Jazia A., Alkharobi, Hanaa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10535350/
https://www.ncbi.nlm.nih.gov/pubmed/37765310
http://dx.doi.org/10.3390/pharmaceutics15092342
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author Alissa, Mohammed
Hjazi, Ahmed
Abusalim, Ghadah S.
Aloraini, Ghfren S.
Alghamdi, Suad A.
Rizg, Waleed Y.
Hosny, Khaled M.
Alblowi, Jazia A.
Alkharobi, Hanaa
author_facet Alissa, Mohammed
Hjazi, Ahmed
Abusalim, Ghadah S.
Aloraini, Ghfren S.
Alghamdi, Suad A.
Rizg, Waleed Y.
Hosny, Khaled M.
Alblowi, Jazia A.
Alkharobi, Hanaa
author_sort Alissa, Mohammed
collection PubMed
description In-depth studies on essential oil–based nanoemulsions (NEs) have centered on a variety of oral health issues. NEs improve the delivery of nonpolar active agents to sites and thereby boost the dissolution and distribution of the agents. Metronidazole-peppermint oil-tranexamic acid self-nanoemulsifying drug delivery systems (MZ-PO-TX-SNEDDS) were created and loaded into novel lozenges to act as antifungal, hemostatic, antimicrobial, and analgesic dosage forms after dental extractions. The design-of-experiments approach was used in creating them. To generate the NEs, different concentrations of MZ-PO (240, 180, and 120 mg), 2% TX (600, 450, and 300 mg), and S(mix1:1) (600, 400, and 200 mg) were used. The ideal formulation had serum levels of 1530 U/mL of interleukin-6, a minimal inhibitory concentration against bacteria of 1.5 µg/mL, a droplet size of 96 nm, and a blood coagulation time of 16.5 min. Moreover, the produced NE offered better MZ release. The adopted design was used to produce the ideal formulation; it contained 240 mg of MZ-PO, 600 mg of 2% TX, and 600 mg of S(mix1:1.) It was incorporated into lozenges with acceptable characteristics and an improved capability for drug release. These lozenges had reasonable coagulation times, IL-6 serum levels, and MIC values. All of these characteristics are desirable for managing symptoms following tooth extractions. Therefore, these lozenges loaded with MZ-PO-TX-SNEDDs might be considered a beneficial paradigm for relieving complications encountered after tooth extractions.
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spelling pubmed-105353502023-09-29 Development and Optimization of a Novel Lozenge Containing a Metronidazole-Peppermint Oil-Tranexamic Acid Self-Nanoemulsified Delivery System to Be Used after Dental Extraction: In Vitro Evaluation and In Vivo Appraisal Alissa, Mohammed Hjazi, Ahmed Abusalim, Ghadah S. Aloraini, Ghfren S. Alghamdi, Suad A. Rizg, Waleed Y. Hosny, Khaled M. Alblowi, Jazia A. Alkharobi, Hanaa Pharmaceutics Article In-depth studies on essential oil–based nanoemulsions (NEs) have centered on a variety of oral health issues. NEs improve the delivery of nonpolar active agents to sites and thereby boost the dissolution and distribution of the agents. Metronidazole-peppermint oil-tranexamic acid self-nanoemulsifying drug delivery systems (MZ-PO-TX-SNEDDS) were created and loaded into novel lozenges to act as antifungal, hemostatic, antimicrobial, and analgesic dosage forms after dental extractions. The design-of-experiments approach was used in creating them. To generate the NEs, different concentrations of MZ-PO (240, 180, and 120 mg), 2% TX (600, 450, and 300 mg), and S(mix1:1) (600, 400, and 200 mg) were used. The ideal formulation had serum levels of 1530 U/mL of interleukin-6, a minimal inhibitory concentration against bacteria of 1.5 µg/mL, a droplet size of 96 nm, and a blood coagulation time of 16.5 min. Moreover, the produced NE offered better MZ release. The adopted design was used to produce the ideal formulation; it contained 240 mg of MZ-PO, 600 mg of 2% TX, and 600 mg of S(mix1:1.) It was incorporated into lozenges with acceptable characteristics and an improved capability for drug release. These lozenges had reasonable coagulation times, IL-6 serum levels, and MIC values. All of these characteristics are desirable for managing symptoms following tooth extractions. Therefore, these lozenges loaded with MZ-PO-TX-SNEDDs might be considered a beneficial paradigm for relieving complications encountered after tooth extractions. MDPI 2023-09-19 /pmc/articles/PMC10535350/ /pubmed/37765310 http://dx.doi.org/10.3390/pharmaceutics15092342 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 Article
Alissa, Mohammed
Hjazi, Ahmed
Abusalim, Ghadah S.
Aloraini, Ghfren S.
Alghamdi, Suad A.
Rizg, Waleed Y.
Hosny, Khaled M.
Alblowi, Jazia A.
Alkharobi, Hanaa
Development and Optimization of a Novel Lozenge Containing a Metronidazole-Peppermint Oil-Tranexamic Acid Self-Nanoemulsified Delivery System to Be Used after Dental Extraction: In Vitro Evaluation and In Vivo Appraisal
title Development and Optimization of a Novel Lozenge Containing a Metronidazole-Peppermint Oil-Tranexamic Acid Self-Nanoemulsified Delivery System to Be Used after Dental Extraction: In Vitro Evaluation and In Vivo Appraisal
title_full Development and Optimization of a Novel Lozenge Containing a Metronidazole-Peppermint Oil-Tranexamic Acid Self-Nanoemulsified Delivery System to Be Used after Dental Extraction: In Vitro Evaluation and In Vivo Appraisal
title_fullStr Development and Optimization of a Novel Lozenge Containing a Metronidazole-Peppermint Oil-Tranexamic Acid Self-Nanoemulsified Delivery System to Be Used after Dental Extraction: In Vitro Evaluation and In Vivo Appraisal
title_full_unstemmed Development and Optimization of a Novel Lozenge Containing a Metronidazole-Peppermint Oil-Tranexamic Acid Self-Nanoemulsified Delivery System to Be Used after Dental Extraction: In Vitro Evaluation and In Vivo Appraisal
title_short Development and Optimization of a Novel Lozenge Containing a Metronidazole-Peppermint Oil-Tranexamic Acid Self-Nanoemulsified Delivery System to Be Used after Dental Extraction: In Vitro Evaluation and In Vivo Appraisal
title_sort development and optimization of a novel lozenge containing a metronidazole-peppermint oil-tranexamic acid self-nanoemulsified delivery system to be used after dental extraction: in vitro evaluation and in vivo appraisal
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10535350/
https://www.ncbi.nlm.nih.gov/pubmed/37765310
http://dx.doi.org/10.3390/pharmaceutics15092342
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