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Formulation and Optimization of Nanospanlastics for Improving the Bioavailability of Green Tea Epigallocatechin Gallate

The present study aimed to investigate the potential of nanospanlastics for boosting the bioavailability of epigallocatechin gallate (EGCG). EGCG has valuable effects like anti-inflammation, anti-oxidation, and anti-tumorigenesis. Unfortunately, it has a low oral bioavailability due to its limited p...

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Autores principales: Mazyed, Eman A., Helal, Doaa A., Elkhoudary, Mahmoud M., Abd Elhameed, Ahmed G., Yasser, Mohamed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7831059/
https://www.ncbi.nlm.nih.gov/pubmed/33467631
http://dx.doi.org/10.3390/ph14010068
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author Mazyed, Eman A.
Helal, Doaa A.
Elkhoudary, Mahmoud M.
Abd Elhameed, Ahmed G.
Yasser, Mohamed
author_facet Mazyed, Eman A.
Helal, Doaa A.
Elkhoudary, Mahmoud M.
Abd Elhameed, Ahmed G.
Yasser, Mohamed
author_sort Mazyed, Eman A.
collection PubMed
description The present study aimed to investigate the potential of nanospanlastics for boosting the bioavailability of epigallocatechin gallate (EGCG). EGCG has valuable effects like anti-inflammation, anti-oxidation, and anti-tumorigenesis. Unfortunately, it has a low oral bioavailability due to its limited permeation and poor stability. To overcome these pitfalls, EGCG was fabricated as a nanospanlastic. Nanospanlastics are flexible nanovesicles that are composed of surfactants and edge activators (EAs). EAs improve the deformability of spanlastics by acting as a destabilizing factor of their vesicular membranes. EGCG-loaded spanlastics were prepared by an ethanol injection method, according to 2(3) factorial design, to explore the impact of different independent variables on entrapment efficiency (EE%), % drug released after 12 h (Q(12h)), and particle size (PS). In vitro characterization, ex vivo intestinal permeation test, and pharmacokinetic study of the optimized formula were performed. A newly developed RP-HPLC technique was adopted for the estimation of EGCG. The optimized formula (F4) demonstrated more prolonged drug release and a significant improvement in the EE%, permeability, deformability and stability than the corresponding niosomes. The pharmacokinetic study investigated that F4 had a more sustained drug release and a higher bioavailability than the conventional niosomes and free drugs. Nanospanlastics could be a promising approach for improving the bioavailability of EGCG.
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spelling pubmed-78310592021-01-26 Formulation and Optimization of Nanospanlastics for Improving the Bioavailability of Green Tea Epigallocatechin Gallate Mazyed, Eman A. Helal, Doaa A. Elkhoudary, Mahmoud M. Abd Elhameed, Ahmed G. Yasser, Mohamed Pharmaceuticals (Basel) Article The present study aimed to investigate the potential of nanospanlastics for boosting the bioavailability of epigallocatechin gallate (EGCG). EGCG has valuable effects like anti-inflammation, anti-oxidation, and anti-tumorigenesis. Unfortunately, it has a low oral bioavailability due to its limited permeation and poor stability. To overcome these pitfalls, EGCG was fabricated as a nanospanlastic. Nanospanlastics are flexible nanovesicles that are composed of surfactants and edge activators (EAs). EAs improve the deformability of spanlastics by acting as a destabilizing factor of their vesicular membranes. EGCG-loaded spanlastics were prepared by an ethanol injection method, according to 2(3) factorial design, to explore the impact of different independent variables on entrapment efficiency (EE%), % drug released after 12 h (Q(12h)), and particle size (PS). In vitro characterization, ex vivo intestinal permeation test, and pharmacokinetic study of the optimized formula were performed. A newly developed RP-HPLC technique was adopted for the estimation of EGCG. The optimized formula (F4) demonstrated more prolonged drug release and a significant improvement in the EE%, permeability, deformability and stability than the corresponding niosomes. The pharmacokinetic study investigated that F4 had a more sustained drug release and a higher bioavailability than the conventional niosomes and free drugs. Nanospanlastics could be a promising approach for improving the bioavailability of EGCG. MDPI 2021-01-15 /pmc/articles/PMC7831059/ /pubmed/33467631 http://dx.doi.org/10.3390/ph14010068 Text en © 2021 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mazyed, Eman A.
Helal, Doaa A.
Elkhoudary, Mahmoud M.
Abd Elhameed, Ahmed G.
Yasser, Mohamed
Formulation and Optimization of Nanospanlastics for Improving the Bioavailability of Green Tea Epigallocatechin Gallate
title Formulation and Optimization of Nanospanlastics for Improving the Bioavailability of Green Tea Epigallocatechin Gallate
title_full Formulation and Optimization of Nanospanlastics for Improving the Bioavailability of Green Tea Epigallocatechin Gallate
title_fullStr Formulation and Optimization of Nanospanlastics for Improving the Bioavailability of Green Tea Epigallocatechin Gallate
title_full_unstemmed Formulation and Optimization of Nanospanlastics for Improving the Bioavailability of Green Tea Epigallocatechin Gallate
title_short Formulation and Optimization of Nanospanlastics for Improving the Bioavailability of Green Tea Epigallocatechin Gallate
title_sort formulation and optimization of nanospanlastics for improving the bioavailability of green tea epigallocatechin gallate
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7831059/
https://www.ncbi.nlm.nih.gov/pubmed/33467631
http://dx.doi.org/10.3390/ph14010068
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