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Date Palm Extract (Phoenix dactylifera) PEGylated Nanoemulsion: Development, Optimization and Cytotoxicity Evaluation

Date palm fruit (Phoenix dactylifera) is reputed to have numerous biological activities, including anticancer properties. To utilize the great fortune of this fruit, the current study aimed to maximize its pharmacological activity. Date palm extract (DPE) of Khalas cultivar was obtained in powder fo...

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Autores principales: Khalil, Hany Ezzat, Alqahtani, Nashi K., Darrag, Hossam M., Ibrahim, Hairul-Islam Mohamed, Emeka, Promise M., Badger-Emeka, Lorina I., Matsunami, Katsuyoshi, Shehata, Tamer M., Elsewedy, Heba S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8069845/
https://www.ncbi.nlm.nih.gov/pubmed/33918742
http://dx.doi.org/10.3390/plants10040735
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author Khalil, Hany Ezzat
Alqahtani, Nashi K.
Darrag, Hossam M.
Ibrahim, Hairul-Islam Mohamed
Emeka, Promise M.
Badger-Emeka, Lorina I.
Matsunami, Katsuyoshi
Shehata, Tamer M.
Elsewedy, Heba S.
author_facet Khalil, Hany Ezzat
Alqahtani, Nashi K.
Darrag, Hossam M.
Ibrahim, Hairul-Islam Mohamed
Emeka, Promise M.
Badger-Emeka, Lorina I.
Matsunami, Katsuyoshi
Shehata, Tamer M.
Elsewedy, Heba S.
author_sort Khalil, Hany Ezzat
collection PubMed
description Date palm fruit (Phoenix dactylifera) is reputed to have numerous biological activities, including anticancer properties. To utilize the great fortune of this fruit, the current study aimed to maximize its pharmacological activity. Date palm extract (DPE) of Khalas cultivar was obtained in powder form and then was formulated into nanoemulsion (NE). The optimized DPE-NE was formulated along with its naked counterpart followed by studying their physical and chemical properties. A qualitative assessment of total serum protein associated with the surface of formulations was implemented. Studies for the in vitro release of DPE from developed NE before and after incubation with serum were investigated. Eventually, an MTT assay was conducted. Total phenolic and flavonoid contents were 22.89 ± 0.013 mg GAE/g of dry DPE and 9.90 ± 0.03 mg QE/g of dry DPE, respectively. Homogenous NE formulations were attained with appropriate particle size and viscosity that could be administered intravenously. The optimized PEGylated NE exhibited a proper particle size, PDI, and zeta potential. Total serum protein adsorbed on PEG-NE surface was significantly low. The release of the drug through in vitro study was effectively extended for 24 h. Ultimately; PEGylated NE of DPE attained significant inhibition for cancer cell viability with IC(50) values of 18.6 ± 2.4 and 13.5 ± 1.8 µg/mL for MCF-7 and HepG2 cell lines, respectively. PEGylated NE of DPE of Khalas cultivar will open the gate for future adjuvants for cancer therapy.
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spelling pubmed-80698452021-04-26 Date Palm Extract (Phoenix dactylifera) PEGylated Nanoemulsion: Development, Optimization and Cytotoxicity Evaluation Khalil, Hany Ezzat Alqahtani, Nashi K. Darrag, Hossam M. Ibrahim, Hairul-Islam Mohamed Emeka, Promise M. Badger-Emeka, Lorina I. Matsunami, Katsuyoshi Shehata, Tamer M. Elsewedy, Heba S. Plants (Basel) Article Date palm fruit (Phoenix dactylifera) is reputed to have numerous biological activities, including anticancer properties. To utilize the great fortune of this fruit, the current study aimed to maximize its pharmacological activity. Date palm extract (DPE) of Khalas cultivar was obtained in powder form and then was formulated into nanoemulsion (NE). The optimized DPE-NE was formulated along with its naked counterpart followed by studying their physical and chemical properties. A qualitative assessment of total serum protein associated with the surface of formulations was implemented. Studies for the in vitro release of DPE from developed NE before and after incubation with serum were investigated. Eventually, an MTT assay was conducted. Total phenolic and flavonoid contents were 22.89 ± 0.013 mg GAE/g of dry DPE and 9.90 ± 0.03 mg QE/g of dry DPE, respectively. Homogenous NE formulations were attained with appropriate particle size and viscosity that could be administered intravenously. The optimized PEGylated NE exhibited a proper particle size, PDI, and zeta potential. Total serum protein adsorbed on PEG-NE surface was significantly low. The release of the drug through in vitro study was effectively extended for 24 h. Ultimately; PEGylated NE of DPE attained significant inhibition for cancer cell viability with IC(50) values of 18.6 ± 2.4 and 13.5 ± 1.8 µg/mL for MCF-7 and HepG2 cell lines, respectively. PEGylated NE of DPE of Khalas cultivar will open the gate for future adjuvants for cancer therapy. MDPI 2021-04-09 /pmc/articles/PMC8069845/ /pubmed/33918742 http://dx.doi.org/10.3390/plants10040735 Text en © 2021 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
Khalil, Hany Ezzat
Alqahtani, Nashi K.
Darrag, Hossam M.
Ibrahim, Hairul-Islam Mohamed
Emeka, Promise M.
Badger-Emeka, Lorina I.
Matsunami, Katsuyoshi
Shehata, Tamer M.
Elsewedy, Heba S.
Date Palm Extract (Phoenix dactylifera) PEGylated Nanoemulsion: Development, Optimization and Cytotoxicity Evaluation
title Date Palm Extract (Phoenix dactylifera) PEGylated Nanoemulsion: Development, Optimization and Cytotoxicity Evaluation
title_full Date Palm Extract (Phoenix dactylifera) PEGylated Nanoemulsion: Development, Optimization and Cytotoxicity Evaluation
title_fullStr Date Palm Extract (Phoenix dactylifera) PEGylated Nanoemulsion: Development, Optimization and Cytotoxicity Evaluation
title_full_unstemmed Date Palm Extract (Phoenix dactylifera) PEGylated Nanoemulsion: Development, Optimization and Cytotoxicity Evaluation
title_short Date Palm Extract (Phoenix dactylifera) PEGylated Nanoemulsion: Development, Optimization and Cytotoxicity Evaluation
title_sort date palm extract (phoenix dactylifera) pegylated nanoemulsion: development, optimization and cytotoxicity evaluation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8069845/
https://www.ncbi.nlm.nih.gov/pubmed/33918742
http://dx.doi.org/10.3390/plants10040735
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