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Cationic graphene oxide nanoplatform mediates miR-101 delivery to promote apoptosis by regulating autophagy and stress

INTRODUCTION: MicroRNA-101 (miR-101) is an intense cancer suppressor with special algorithm to target a wide range of pathways and genes which indicates the ability to regulate apoptosis, cellular stress, metastasis, autophagy, and tumor growth. Silencing of some genes such as Stathmin1 with miR-101...

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Autores principales: Assali, Akram, Akhavan, Omid, Mottaghitalab, Fatemeh, Adeli, Mohsen, Dinarvand, Rassoul, Razzazan, Shayan, Arefian, Ehsan, Soleimani, Masoud, Atyabi, Fatemeh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6171513/
https://www.ncbi.nlm.nih.gov/pubmed/30319254
http://dx.doi.org/10.2147/IJN.S162647
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author Assali, Akram
Akhavan, Omid
Mottaghitalab, Fatemeh
Adeli, Mohsen
Dinarvand, Rassoul
Razzazan, Shayan
Arefian, Ehsan
Soleimani, Masoud
Atyabi, Fatemeh
author_facet Assali, Akram
Akhavan, Omid
Mottaghitalab, Fatemeh
Adeli, Mohsen
Dinarvand, Rassoul
Razzazan, Shayan
Arefian, Ehsan
Soleimani, Masoud
Atyabi, Fatemeh
author_sort Assali, Akram
collection PubMed
description INTRODUCTION: MicroRNA-101 (miR-101) is an intense cancer suppressor with special algorithm to target a wide range of pathways and genes which indicates the ability to regulate apoptosis, cellular stress, metastasis, autophagy, and tumor growth. Silencing of some genes such as Stathmin1 with miR-101 can be interpreted as apoptotic accelerator and autophagy suppressor. It is hypothesized that hybrid microRNA (miRNA) delivery structures based on cationized graphene oxide (GO) could take superiority of targeting and photothermal therapy to suppress the cancer cells. MATERIALS AND METHODS: In this study, GO nanoplatforms were covalently decorated with polyethylene glycol (PEG) and poly-l-arginine (P-l-Arg) that reduced the surface of GO and increased the near infrared absorption ~7.5-fold higher than nonreduced GO. RESULTS: The prepared nanoplatform [GO-PEG-(P-l-Arg)] showed higher miRNA payload and greater internalization and facilitated endosomal scape into the cytoplasm in comparison with GO-PEG. Furthermore, applying P-l-Arg, as a targeting agent, greatly improved the selective transfection of nanoplatform in cancer cells (MCF7, MDA-MB-231) in comparison with immortalized breast cells and fibroblast primary cells. Treating cancer cells with GO-PEG-(P-l-Arg)/miR-101 and incorporating near infrared laser irradiation induced 68% apoptosis and suppressed Stathmin1 protein. CONCLUSION: The obtained results indicated that GO-PEG-(P-l-Arg) would be a suitable targeted delivery system of miR-101 transfection that could downregulate autophagy and conduct thermal stress to activate apoptotic cascades when combined with photothermal therapy.
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spelling pubmed-61715132018-10-12 Cationic graphene oxide nanoplatform mediates miR-101 delivery to promote apoptosis by regulating autophagy and stress Assali, Akram Akhavan, Omid Mottaghitalab, Fatemeh Adeli, Mohsen Dinarvand, Rassoul Razzazan, Shayan Arefian, Ehsan Soleimani, Masoud Atyabi, Fatemeh Int J Nanomedicine Original Research INTRODUCTION: MicroRNA-101 (miR-101) is an intense cancer suppressor with special algorithm to target a wide range of pathways and genes which indicates the ability to regulate apoptosis, cellular stress, metastasis, autophagy, and tumor growth. Silencing of some genes such as Stathmin1 with miR-101 can be interpreted as apoptotic accelerator and autophagy suppressor. It is hypothesized that hybrid microRNA (miRNA) delivery structures based on cationized graphene oxide (GO) could take superiority of targeting and photothermal therapy to suppress the cancer cells. MATERIALS AND METHODS: In this study, GO nanoplatforms were covalently decorated with polyethylene glycol (PEG) and poly-l-arginine (P-l-Arg) that reduced the surface of GO and increased the near infrared absorption ~7.5-fold higher than nonreduced GO. RESULTS: The prepared nanoplatform [GO-PEG-(P-l-Arg)] showed higher miRNA payload and greater internalization and facilitated endosomal scape into the cytoplasm in comparison with GO-PEG. Furthermore, applying P-l-Arg, as a targeting agent, greatly improved the selective transfection of nanoplatform in cancer cells (MCF7, MDA-MB-231) in comparison with immortalized breast cells and fibroblast primary cells. Treating cancer cells with GO-PEG-(P-l-Arg)/miR-101 and incorporating near infrared laser irradiation induced 68% apoptosis and suppressed Stathmin1 protein. CONCLUSION: The obtained results indicated that GO-PEG-(P-l-Arg) would be a suitable targeted delivery system of miR-101 transfection that could downregulate autophagy and conduct thermal stress to activate apoptotic cascades when combined with photothermal therapy. Dove Medical Press 2018-10-01 /pmc/articles/PMC6171513/ /pubmed/30319254 http://dx.doi.org/10.2147/IJN.S162647 Text en © 2018 Assali et al. This work is published and licensed by Dove Medical Press Limited The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution – Non Commercial (unported, v3.0) License (http://creativecommons.org/licenses/by-nc/3.0/). By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Original Research
Assali, Akram
Akhavan, Omid
Mottaghitalab, Fatemeh
Adeli, Mohsen
Dinarvand, Rassoul
Razzazan, Shayan
Arefian, Ehsan
Soleimani, Masoud
Atyabi, Fatemeh
Cationic graphene oxide nanoplatform mediates miR-101 delivery to promote apoptosis by regulating autophagy and stress
title Cationic graphene oxide nanoplatform mediates miR-101 delivery to promote apoptosis by regulating autophagy and stress
title_full Cationic graphene oxide nanoplatform mediates miR-101 delivery to promote apoptosis by regulating autophagy and stress
title_fullStr Cationic graphene oxide nanoplatform mediates miR-101 delivery to promote apoptosis by regulating autophagy and stress
title_full_unstemmed Cationic graphene oxide nanoplatform mediates miR-101 delivery to promote apoptosis by regulating autophagy and stress
title_short Cationic graphene oxide nanoplatform mediates miR-101 delivery to promote apoptosis by regulating autophagy and stress
title_sort cationic graphene oxide nanoplatform mediates mir-101 delivery to promote apoptosis by regulating autophagy and stress
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6171513/
https://www.ncbi.nlm.nih.gov/pubmed/30319254
http://dx.doi.org/10.2147/IJN.S162647
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