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Impact of atorvastatin loaded exosome as an anti-glioblastoma carrier to induce apoptosis of U87 cancer cells in 3D culture model

Exosomes (EXOs) are naturally occurring nanosized lipid bilayers that can be efficiently used as a drug delivery system to carry small pharmaceutical, biological molecules and pass major biological barriers such as the blood-brain barrier. It was hypothesized that EXOs derived from human endometrial...

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Autores principales: Nooshabadi, Vajihe Taghdiri, Khanmohammadi, Mehdi, Shafei, Shilan, Banafshe, Hamid Reza, Malekshahi, Ziba Veisi, Ebrahimi-Barough, Somayeh, Ai, Jafar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7408343/
https://www.ncbi.nlm.nih.gov/pubmed/32793818
http://dx.doi.org/10.1016/j.bbrep.2020.100792
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author Nooshabadi, Vajihe Taghdiri
Khanmohammadi, Mehdi
Shafei, Shilan
Banafshe, Hamid Reza
Malekshahi, Ziba Veisi
Ebrahimi-Barough, Somayeh
Ai, Jafar
author_facet Nooshabadi, Vajihe Taghdiri
Khanmohammadi, Mehdi
Shafei, Shilan
Banafshe, Hamid Reza
Malekshahi, Ziba Veisi
Ebrahimi-Barough, Somayeh
Ai, Jafar
author_sort Nooshabadi, Vajihe Taghdiri
collection PubMed
description Exosomes (EXOs) are naturally occurring nanosized lipid bilayers that can be efficiently used as a drug delivery system to carry small pharmaceutical, biological molecules and pass major biological barriers such as the blood-brain barrier. It was hypothesized that EXOs derived from human endometrial stem cells (hEnSCs-EXOs) can be utilized as a drug carrier to enhance tumor-targeting drugs, especially for those have low solubility and limited oral bioactivity. In this study, atorvastatin (Ato) loaded EXOs (AtoEXOs) was prepared and characterized for its physical and biological activities in tumor growth suppression of 3 D glioblastoma model. The AtoEXOs were obtained in different methods to maximize drug encapsulation efficacy. The characterization of AtoEXOs was performed for its size, stability, drug release, and in vitro anti-tumor efficacy evaluated comprising inhibition of proliferation, apoptosis induction of tumor cells. Expression of apoptotic genes by Real time PCR, Annexin V/PI, tunnel assay was studied after 72 h exposing U87 cells where encapsulated in matrigel in different concentrations of AtoEXOs (5, 10 μM). The results showed that the prepared AtoEXOs possessed diameter ranging from 30–150 nm, satisfying stability and sustainable Ato release rate. The AtoEXOs was up taken by U87 and generated significant apoptotic effects while this inhibited tumor growth of U87 cells. Altogether, produced AtoEXOs formulation due to its therapeutic efficacy has the potential to be an adaptable approach to treat glioblastoma brain tumors.
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spelling pubmed-74083432020-08-12 Impact of atorvastatin loaded exosome as an anti-glioblastoma carrier to induce apoptosis of U87 cancer cells in 3D culture model Nooshabadi, Vajihe Taghdiri Khanmohammadi, Mehdi Shafei, Shilan Banafshe, Hamid Reza Malekshahi, Ziba Veisi Ebrahimi-Barough, Somayeh Ai, Jafar Biochem Biophys Rep Research Article Exosomes (EXOs) are naturally occurring nanosized lipid bilayers that can be efficiently used as a drug delivery system to carry small pharmaceutical, biological molecules and pass major biological barriers such as the blood-brain barrier. It was hypothesized that EXOs derived from human endometrial stem cells (hEnSCs-EXOs) can be utilized as a drug carrier to enhance tumor-targeting drugs, especially for those have low solubility and limited oral bioactivity. In this study, atorvastatin (Ato) loaded EXOs (AtoEXOs) was prepared and characterized for its physical and biological activities in tumor growth suppression of 3 D glioblastoma model. The AtoEXOs were obtained in different methods to maximize drug encapsulation efficacy. The characterization of AtoEXOs was performed for its size, stability, drug release, and in vitro anti-tumor efficacy evaluated comprising inhibition of proliferation, apoptosis induction of tumor cells. Expression of apoptotic genes by Real time PCR, Annexin V/PI, tunnel assay was studied after 72 h exposing U87 cells where encapsulated in matrigel in different concentrations of AtoEXOs (5, 10 μM). The results showed that the prepared AtoEXOs possessed diameter ranging from 30–150 nm, satisfying stability and sustainable Ato release rate. The AtoEXOs was up taken by U87 and generated significant apoptotic effects while this inhibited tumor growth of U87 cells. Altogether, produced AtoEXOs formulation due to its therapeutic efficacy has the potential to be an adaptable approach to treat glioblastoma brain tumors. Elsevier 2020-08-04 /pmc/articles/PMC7408343/ /pubmed/32793818 http://dx.doi.org/10.1016/j.bbrep.2020.100792 Text en © 2020 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Nooshabadi, Vajihe Taghdiri
Khanmohammadi, Mehdi
Shafei, Shilan
Banafshe, Hamid Reza
Malekshahi, Ziba Veisi
Ebrahimi-Barough, Somayeh
Ai, Jafar
Impact of atorvastatin loaded exosome as an anti-glioblastoma carrier to induce apoptosis of U87 cancer cells in 3D culture model
title Impact of atorvastatin loaded exosome as an anti-glioblastoma carrier to induce apoptosis of U87 cancer cells in 3D culture model
title_full Impact of atorvastatin loaded exosome as an anti-glioblastoma carrier to induce apoptosis of U87 cancer cells in 3D culture model
title_fullStr Impact of atorvastatin loaded exosome as an anti-glioblastoma carrier to induce apoptosis of U87 cancer cells in 3D culture model
title_full_unstemmed Impact of atorvastatin loaded exosome as an anti-glioblastoma carrier to induce apoptosis of U87 cancer cells in 3D culture model
title_short Impact of atorvastatin loaded exosome as an anti-glioblastoma carrier to induce apoptosis of U87 cancer cells in 3D culture model
title_sort impact of atorvastatin loaded exosome as an anti-glioblastoma carrier to induce apoptosis of u87 cancer cells in 3d culture model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7408343/
https://www.ncbi.nlm.nih.gov/pubmed/32793818
http://dx.doi.org/10.1016/j.bbrep.2020.100792
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