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Folic Acid-Decorated pH-Responsive Nanoniosomes With Enhanced Endocytosis for Breast Cancer Therapy: In Vitro Studies

Breast cancer is the most common invasive cancer in women and the second leading cause of cancer death in women after lung cancer. The purpose of this study is a targeted delivery toward in vitro (on MCF7 and 4T1 breast cancer cell lines) through niosomes-based nanocarriers. To this end, different b...

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Autores principales: Rezaei, Tahereh, Rezaei, Mehdi, Karimifard, Sara, Mahmoudi Beram, Farzaneh, Dakkali, Mohammad Sedigh, Heydari, Maryam, Afshari-Behbahanizadeh, Soheil, Mostafavi, Ebrahim, Bokov, Dmitry Olegovich, Ansari, Mohammad Javed, Farasati Far, Bahareh, Akbarzadeh, Iman, Chaiyasut, Chaiyavat
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9065559/
https://www.ncbi.nlm.nih.gov/pubmed/35517801
http://dx.doi.org/10.3389/fphar.2022.851242
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author Rezaei, Tahereh
Rezaei, Mehdi
Karimifard, Sara
Mahmoudi Beram, Farzaneh
Dakkali, Mohammad Sedigh
Heydari, Maryam
Afshari-Behbahanizadeh, Soheil
Mostafavi, Ebrahim
Bokov, Dmitry Olegovich
Ansari, Mohammad Javed
Farasati Far, Bahareh
Akbarzadeh, Iman
Chaiyasut, Chaiyavat
author_facet Rezaei, Tahereh
Rezaei, Mehdi
Karimifard, Sara
Mahmoudi Beram, Farzaneh
Dakkali, Mohammad Sedigh
Heydari, Maryam
Afshari-Behbahanizadeh, Soheil
Mostafavi, Ebrahim
Bokov, Dmitry Olegovich
Ansari, Mohammad Javed
Farasati Far, Bahareh
Akbarzadeh, Iman
Chaiyasut, Chaiyavat
author_sort Rezaei, Tahereh
collection PubMed
description Breast cancer is the most common invasive cancer in women and the second leading cause of cancer death in women after lung cancer. The purpose of this study is a targeted delivery toward in vitro (on MCF7 and 4T1 breast cancer cell lines) through niosomes-based nanocarriers. To this end, different bioactive molecules, including hyaluronic acid (HA), folic acid (FA), and polyethylene glycol (PEG), were used and compared for surface modification of niosomes to enhance endocytosis. FA-functionalized niosomes (Nio/5-FU/FA) were able to increase cell cytotoxicity and reduce cell migration and invasion compared to PEG-functionalized niosomes (Nio/5-FU/PEG), and HA-functionalized niosomes (Nio/5-FU/HA) groups in MCF-7 and 4T1 cell lines. Although the Nio/5-FU/PEG and Nio/5-FU/HA demonstrated MCF7 cell uptake, the Nio/5-FU/FA exhibited the most preponderant endocytosis in pH 5.4. Remarkably, in this study 5-FU loaded niosomes (nonionic surfactant-based vesicles) were decorated with various bioactive molecules (FA, PEG, or HA) to compare their ability for breast cancer therapy. The fabricated nanoformulations were readily taken up by breast cancer cells (in vitro) and demonstrated sustained drug release characteristics, inducing cell apoptosis. Overall, the comprehensive comparison between different bioactive molecules-decorated nanoniosomes exhibited promising results in finding the best nano formulated candidates for targeted delivery of drugs for breast cancer therapy.
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spelling pubmed-90655592022-05-04 Folic Acid-Decorated pH-Responsive Nanoniosomes With Enhanced Endocytosis for Breast Cancer Therapy: In Vitro Studies Rezaei, Tahereh Rezaei, Mehdi Karimifard, Sara Mahmoudi Beram, Farzaneh Dakkali, Mohammad Sedigh Heydari, Maryam Afshari-Behbahanizadeh, Soheil Mostafavi, Ebrahim Bokov, Dmitry Olegovich Ansari, Mohammad Javed Farasati Far, Bahareh Akbarzadeh, Iman Chaiyasut, Chaiyavat Front Pharmacol Pharmacology Breast cancer is the most common invasive cancer in women and the second leading cause of cancer death in women after lung cancer. The purpose of this study is a targeted delivery toward in vitro (on MCF7 and 4T1 breast cancer cell lines) through niosomes-based nanocarriers. To this end, different bioactive molecules, including hyaluronic acid (HA), folic acid (FA), and polyethylene glycol (PEG), were used and compared for surface modification of niosomes to enhance endocytosis. FA-functionalized niosomes (Nio/5-FU/FA) were able to increase cell cytotoxicity and reduce cell migration and invasion compared to PEG-functionalized niosomes (Nio/5-FU/PEG), and HA-functionalized niosomes (Nio/5-FU/HA) groups in MCF-7 and 4T1 cell lines. Although the Nio/5-FU/PEG and Nio/5-FU/HA demonstrated MCF7 cell uptake, the Nio/5-FU/FA exhibited the most preponderant endocytosis in pH 5.4. Remarkably, in this study 5-FU loaded niosomes (nonionic surfactant-based vesicles) were decorated with various bioactive molecules (FA, PEG, or HA) to compare their ability for breast cancer therapy. The fabricated nanoformulations were readily taken up by breast cancer cells (in vitro) and demonstrated sustained drug release characteristics, inducing cell apoptosis. Overall, the comprehensive comparison between different bioactive molecules-decorated nanoniosomes exhibited promising results in finding the best nano formulated candidates for targeted delivery of drugs for breast cancer therapy. Frontiers Media S.A. 2022-04-20 /pmc/articles/PMC9065559/ /pubmed/35517801 http://dx.doi.org/10.3389/fphar.2022.851242 Text en Copyright © 2022 Rezaei, Rezaei, Karimifard, Mahmoudi Beram, Dakkali, Heydari, Afshari-Behbahanizadeh, Mostafavi, Bokov, Ansari, Farasati Far, Akbarzadeh and Chaiyasut. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Rezaei, Tahereh
Rezaei, Mehdi
Karimifard, Sara
Mahmoudi Beram, Farzaneh
Dakkali, Mohammad Sedigh
Heydari, Maryam
Afshari-Behbahanizadeh, Soheil
Mostafavi, Ebrahim
Bokov, Dmitry Olegovich
Ansari, Mohammad Javed
Farasati Far, Bahareh
Akbarzadeh, Iman
Chaiyasut, Chaiyavat
Folic Acid-Decorated pH-Responsive Nanoniosomes With Enhanced Endocytosis for Breast Cancer Therapy: In Vitro Studies
title Folic Acid-Decorated pH-Responsive Nanoniosomes With Enhanced Endocytosis for Breast Cancer Therapy: In Vitro Studies
title_full Folic Acid-Decorated pH-Responsive Nanoniosomes With Enhanced Endocytosis for Breast Cancer Therapy: In Vitro Studies
title_fullStr Folic Acid-Decorated pH-Responsive Nanoniosomes With Enhanced Endocytosis for Breast Cancer Therapy: In Vitro Studies
title_full_unstemmed Folic Acid-Decorated pH-Responsive Nanoniosomes With Enhanced Endocytosis for Breast Cancer Therapy: In Vitro Studies
title_short Folic Acid-Decorated pH-Responsive Nanoniosomes With Enhanced Endocytosis for Breast Cancer Therapy: In Vitro Studies
title_sort folic acid-decorated ph-responsive nanoniosomes with enhanced endocytosis for breast cancer therapy: in vitro studies
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9065559/
https://www.ncbi.nlm.nih.gov/pubmed/35517801
http://dx.doi.org/10.3389/fphar.2022.851242
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