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A Triple Co-Delivery Liposomal Carrier That Enhances Apoptosis via an Intrinsic Pathway in Melanoma Cells

The effectiveness of existing anti-cancer therapies is based mainly on the stimulation of apoptosis of cancer cells. Most of the existing therapies are somewhat toxic to normal cells. Therefore, the quest for nontoxic, cancer-specific therapies remains. We have demonstrated the ability of liposomes...

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Detalles Bibliográficos
Autores principales: Filipczak, Nina, Jaromin, Anna, Piwoni, Adriana, Mahmud, Mohamed, Sarisozen, Can, Torchilin, Vladimir, Gubernator, Jerzy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6966600/
https://www.ncbi.nlm.nih.gov/pubmed/31835393
http://dx.doi.org/10.3390/cancers11121982
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author Filipczak, Nina
Jaromin, Anna
Piwoni, Adriana
Mahmud, Mohamed
Sarisozen, Can
Torchilin, Vladimir
Gubernator, Jerzy
author_facet Filipczak, Nina
Jaromin, Anna
Piwoni, Adriana
Mahmud, Mohamed
Sarisozen, Can
Torchilin, Vladimir
Gubernator, Jerzy
author_sort Filipczak, Nina
collection PubMed
description The effectiveness of existing anti-cancer therapies is based mainly on the stimulation of apoptosis of cancer cells. Most of the existing therapies are somewhat toxic to normal cells. Therefore, the quest for nontoxic, cancer-specific therapies remains. We have demonstrated the ability of liposomes containing anacardic acid, mitoxantrone and ammonium ascorbate to induce the mitochondrial pathway of apoptosis via reactive oxygen species (ROS) production by the killing of cancer cells in monolayer culture and shown its specificity towards melanoma cells. Liposomes were prepared by a lipid hydration, freeze-and-thaw (FAT) procedure and extrusion through polycarbonate filters, a remote loading method was used for dug encapsulation. Following characterization, hemolytic activity, cytotoxicity and apoptosis inducing effects of loaded nanoparticles were investigated. To identify the anticancer activity mechanism of these liposomes, ROS level and caspase 9 activity were measured by fluorescence and by chemiluminescence respectively. We have demonstrated that the developed liposomal formulations produced a high ROS level, enhanced apoptosis and cell death in melanoma cells, but not in normal cells. The proposed mechanism of the cytotoxic action of these liposomes involved specific generation of free radicals by the iron ions mechanism.
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spelling pubmed-69666002020-02-04 A Triple Co-Delivery Liposomal Carrier That Enhances Apoptosis via an Intrinsic Pathway in Melanoma Cells Filipczak, Nina Jaromin, Anna Piwoni, Adriana Mahmud, Mohamed Sarisozen, Can Torchilin, Vladimir Gubernator, Jerzy Cancers (Basel) Article The effectiveness of existing anti-cancer therapies is based mainly on the stimulation of apoptosis of cancer cells. Most of the existing therapies are somewhat toxic to normal cells. Therefore, the quest for nontoxic, cancer-specific therapies remains. We have demonstrated the ability of liposomes containing anacardic acid, mitoxantrone and ammonium ascorbate to induce the mitochondrial pathway of apoptosis via reactive oxygen species (ROS) production by the killing of cancer cells in monolayer culture and shown its specificity towards melanoma cells. Liposomes were prepared by a lipid hydration, freeze-and-thaw (FAT) procedure and extrusion through polycarbonate filters, a remote loading method was used for dug encapsulation. Following characterization, hemolytic activity, cytotoxicity and apoptosis inducing effects of loaded nanoparticles were investigated. To identify the anticancer activity mechanism of these liposomes, ROS level and caspase 9 activity were measured by fluorescence and by chemiluminescence respectively. We have demonstrated that the developed liposomal formulations produced a high ROS level, enhanced apoptosis and cell death in melanoma cells, but not in normal cells. The proposed mechanism of the cytotoxic action of these liposomes involved specific generation of free radicals by the iron ions mechanism. MDPI 2019-12-09 /pmc/articles/PMC6966600/ /pubmed/31835393 http://dx.doi.org/10.3390/cancers11121982 Text en © 2019 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
Filipczak, Nina
Jaromin, Anna
Piwoni, Adriana
Mahmud, Mohamed
Sarisozen, Can
Torchilin, Vladimir
Gubernator, Jerzy
A Triple Co-Delivery Liposomal Carrier That Enhances Apoptosis via an Intrinsic Pathway in Melanoma Cells
title A Triple Co-Delivery Liposomal Carrier That Enhances Apoptosis via an Intrinsic Pathway in Melanoma Cells
title_full A Triple Co-Delivery Liposomal Carrier That Enhances Apoptosis via an Intrinsic Pathway in Melanoma Cells
title_fullStr A Triple Co-Delivery Liposomal Carrier That Enhances Apoptosis via an Intrinsic Pathway in Melanoma Cells
title_full_unstemmed A Triple Co-Delivery Liposomal Carrier That Enhances Apoptosis via an Intrinsic Pathway in Melanoma Cells
title_short A Triple Co-Delivery Liposomal Carrier That Enhances Apoptosis via an Intrinsic Pathway in Melanoma Cells
title_sort triple co-delivery liposomal carrier that enhances apoptosis via an intrinsic pathway in melanoma cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6966600/
https://www.ncbi.nlm.nih.gov/pubmed/31835393
http://dx.doi.org/10.3390/cancers11121982
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