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Andrographolide nanophytosomes exhibit enhanced cellular delivery and pro-apoptotic activities in HepG2 liver cancer cells

Andrographolide (AG), a major active constituent of Andrographis paniculata, is known to hinder proliferation of several types of cancer cells. However, its poor solubility and cellular permeability restrict its use in clinical applications. In this study, AG-loaded phytosomes (AG-PTMs) were formula...

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Autores principales: Neamatallah, Thikryat, Malebari, Azizah M., Alamoudi, Abdulmohsin J., Nazreen, Syed, Alam, Mohammad Mahboob, Bin-Melaih, Hawazen H., Abuzinadah, Osama A., Badr-Eldin, Shaimaa M., Alhassani, Gharam, Makki, Lamar, Nasrullah, Mohammed Z.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9930834/
https://www.ncbi.nlm.nih.gov/pubmed/36762548
http://dx.doi.org/10.1080/10717544.2023.2174209
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author Neamatallah, Thikryat
Malebari, Azizah M.
Alamoudi, Abdulmohsin J.
Nazreen, Syed
Alam, Mohammad Mahboob
Bin-Melaih, Hawazen H.
Abuzinadah, Osama A.
Badr-Eldin, Shaimaa M.
Alhassani, Gharam
Makki, Lamar
Nasrullah, Mohammed Z.
author_facet Neamatallah, Thikryat
Malebari, Azizah M.
Alamoudi, Abdulmohsin J.
Nazreen, Syed
Alam, Mohammad Mahboob
Bin-Melaih, Hawazen H.
Abuzinadah, Osama A.
Badr-Eldin, Shaimaa M.
Alhassani, Gharam
Makki, Lamar
Nasrullah, Mohammed Z.
author_sort Neamatallah, Thikryat
collection PubMed
description Andrographolide (AG), a major active constituent of Andrographis paniculata, is known to hinder proliferation of several types of cancer cells. However, its poor solubility and cellular permeability restrict its use in clinical applications. In this study, AG-loaded phytosomes (AG-PTMs) were formulated and optimized with respect to particle size using l-α-phosphatidylcholine (PC):AG ratio and sonication time (ST) as independent variables. The optimized formula was prepared at 1:2.7 for AG:PC molar ratio and 4.9 min for ST and exhibited a particle size of 243.7 ± 7.3 nm, polydispersity index (PDI) of 0.310 and entrapment efficiency of 72.20 ± 4.53. Also, the prepared formula showed a slow release of AG over 24-h period. The antiproliferative activity of AG-PTMs was investigated against the liver cancer cell line HepG2. AG-PTMs significantly repressed the growth of HepG2 cells with an IC(50) value of 4.02 ± 0.14 µM. AG uptake by HepG2 cells was significantly enhanced in incubations containing the optimized formula. AG-PTMs also caused G2-M cell cycle phase arrest and increased the fraction of apoptotic cells in pre-G1 phase. These effects were associated with induction of oxidative stress and mitochondrial dysfunction. In addition, AG-PTMs significantly upregulated mRNA expression of BAX and downregulated that of BCL2. Furthermore, AG-PTMs significantly enhanced the concentration of caspase-3 in comparison to raw AG. These data indicate that the phytosomal delivery of AG significantly inhibited HepG2 cell proliferation through enhanced cellular uptake, arresting cell cycle at the G2-M phase and inducing mitochondrial-dependent apoptosis.
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spelling pubmed-99308342023-02-16 Andrographolide nanophytosomes exhibit enhanced cellular delivery and pro-apoptotic activities in HepG2 liver cancer cells Neamatallah, Thikryat Malebari, Azizah M. Alamoudi, Abdulmohsin J. Nazreen, Syed Alam, Mohammad Mahboob Bin-Melaih, Hawazen H. Abuzinadah, Osama A. Badr-Eldin, Shaimaa M. Alhassani, Gharam Makki, Lamar Nasrullah, Mohammed Z. Drug Deliv Research Article Andrographolide (AG), a major active constituent of Andrographis paniculata, is known to hinder proliferation of several types of cancer cells. However, its poor solubility and cellular permeability restrict its use in clinical applications. In this study, AG-loaded phytosomes (AG-PTMs) were formulated and optimized with respect to particle size using l-α-phosphatidylcholine (PC):AG ratio and sonication time (ST) as independent variables. The optimized formula was prepared at 1:2.7 for AG:PC molar ratio and 4.9 min for ST and exhibited a particle size of 243.7 ± 7.3 nm, polydispersity index (PDI) of 0.310 and entrapment efficiency of 72.20 ± 4.53. Also, the prepared formula showed a slow release of AG over 24-h period. The antiproliferative activity of AG-PTMs was investigated against the liver cancer cell line HepG2. AG-PTMs significantly repressed the growth of HepG2 cells with an IC(50) value of 4.02 ± 0.14 µM. AG uptake by HepG2 cells was significantly enhanced in incubations containing the optimized formula. AG-PTMs also caused G2-M cell cycle phase arrest and increased the fraction of apoptotic cells in pre-G1 phase. These effects were associated with induction of oxidative stress and mitochondrial dysfunction. In addition, AG-PTMs significantly upregulated mRNA expression of BAX and downregulated that of BCL2. Furthermore, AG-PTMs significantly enhanced the concentration of caspase-3 in comparison to raw AG. These data indicate that the phytosomal delivery of AG significantly inhibited HepG2 cell proliferation through enhanced cellular uptake, arresting cell cycle at the G2-M phase and inducing mitochondrial-dependent apoptosis. Taylor & Francis 2023-02-10 /pmc/articles/PMC9930834/ /pubmed/36762548 http://dx.doi.org/10.1080/10717544.2023.2174209 Text en © 2023 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Neamatallah, Thikryat
Malebari, Azizah M.
Alamoudi, Abdulmohsin J.
Nazreen, Syed
Alam, Mohammad Mahboob
Bin-Melaih, Hawazen H.
Abuzinadah, Osama A.
Badr-Eldin, Shaimaa M.
Alhassani, Gharam
Makki, Lamar
Nasrullah, Mohammed Z.
Andrographolide nanophytosomes exhibit enhanced cellular delivery and pro-apoptotic activities in HepG2 liver cancer cells
title Andrographolide nanophytosomes exhibit enhanced cellular delivery and pro-apoptotic activities in HepG2 liver cancer cells
title_full Andrographolide nanophytosomes exhibit enhanced cellular delivery and pro-apoptotic activities in HepG2 liver cancer cells
title_fullStr Andrographolide nanophytosomes exhibit enhanced cellular delivery and pro-apoptotic activities in HepG2 liver cancer cells
title_full_unstemmed Andrographolide nanophytosomes exhibit enhanced cellular delivery and pro-apoptotic activities in HepG2 liver cancer cells
title_short Andrographolide nanophytosomes exhibit enhanced cellular delivery and pro-apoptotic activities in HepG2 liver cancer cells
title_sort andrographolide nanophytosomes exhibit enhanced cellular delivery and pro-apoptotic activities in hepg2 liver cancer cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9930834/
https://www.ncbi.nlm.nih.gov/pubmed/36762548
http://dx.doi.org/10.1080/10717544.2023.2174209
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