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Brain Targeted Gold Liposomes Improve RNAi Delivery for Glioblastoma

INTRODUCTION: Glioblastoma (GBM) is the most common and lethal of the central nervous system (CNS) malignancies. The initiation, progression, and infiltration ability of GBMs are attributed in part to the dysregulation of microRNAs (miRNAs). Thus, targeting dysregulated miRNAs with RNA oligonucleoti...

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Autores principales: Grafals-Ruiz, Nilmary, Rios-Vicil, Christian I, Lozada-Delgado, Eunice L, Quiñones-Díaz, Blanca I, Noriega-Rivera, Ricardo A, Martínez-Zayas, Gabriel, Santana-Rivera, Yasmarie, Santiago-Sánchez, Ginette S, Valiyeva, Fatma, Vivas-Mejía, Pablo E
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7185647/
https://www.ncbi.nlm.nih.gov/pubmed/32368056
http://dx.doi.org/10.2147/IJN.S241055
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author Grafals-Ruiz, Nilmary
Rios-Vicil, Christian I
Lozada-Delgado, Eunice L
Quiñones-Díaz, Blanca I
Noriega-Rivera, Ricardo A
Martínez-Zayas, Gabriel
Santana-Rivera, Yasmarie
Santiago-Sánchez, Ginette S
Valiyeva, Fatma
Vivas-Mejía, Pablo E
author_facet Grafals-Ruiz, Nilmary
Rios-Vicil, Christian I
Lozada-Delgado, Eunice L
Quiñones-Díaz, Blanca I
Noriega-Rivera, Ricardo A
Martínez-Zayas, Gabriel
Santana-Rivera, Yasmarie
Santiago-Sánchez, Ginette S
Valiyeva, Fatma
Vivas-Mejía, Pablo E
author_sort Grafals-Ruiz, Nilmary
collection PubMed
description INTRODUCTION: Glioblastoma (GBM) is the most common and lethal of the central nervous system (CNS) malignancies. The initiation, progression, and infiltration ability of GBMs are attributed in part to the dysregulation of microRNAs (miRNAs). Thus, targeting dysregulated miRNAs with RNA oligonucleotides (RNA interference, RNAi) has been proposed for GBM treatment. Despite promising results in the laboratory, RNA oligonucleotides have clinical limitations that include poor RNA stability and off-target effects. RNAi therapies against GBM confront an additional obstacle, as they need to cross the blood-brain barrier (BBB). METHODS: Here, we developed gold-liposome nanoparticles conjugated with the brain targeting peptides apolipoprotein E (ApoE) and rabies virus glycoprotein (RVG). First, we functionalized gold nanoparticles with oligonucleotide miRNA inhibitors (OMIs), creating spherical nucleic acids (SNAs). Next, we encapsulated SNAs into ApoE, or RVG-conjugated liposomes, to obtain SNA-Liposome-ApoE and SNA-Liposome-RVG, respectively. We characterized each nanoparticle in terms of their size, charge, encapsulation efficiency, and delivery efficiency into U87 GBM cells in vitro. Then, they were administered intravenously (iv) in GBM syngeneic mice to evaluate their delivery efficiency to brain tumor tissue. RESULTS: SNA-Liposomes of about 30–50 nm in diameter internalized U87 GBM cells and inhibited the expression of miRNA-92b, an aberrantly overexpressed miRNA in GBM cell lines and GBM tumors. Conjugating SNA-Liposomes with ApoE or RVG peptides increased their systemic delivery to the brain tumors of GBM syngeneic mice. SNA-Liposome-ApoE demonstrated to accumulate at higher extension in brain tumor tissues, when compared with non-treated controls, SNA-Liposomes, or SNA-Liposome-RVG. DISCUSSION: SNA-Liposome-ApoE has the potential to advance the translation of miRNA-based therapies for GBM as well as other CNS disorders.
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spelling pubmed-71856472020-05-04 Brain Targeted Gold Liposomes Improve RNAi Delivery for Glioblastoma Grafals-Ruiz, Nilmary Rios-Vicil, Christian I Lozada-Delgado, Eunice L Quiñones-Díaz, Blanca I Noriega-Rivera, Ricardo A Martínez-Zayas, Gabriel Santana-Rivera, Yasmarie Santiago-Sánchez, Ginette S Valiyeva, Fatma Vivas-Mejía, Pablo E Int J Nanomedicine Original Research INTRODUCTION: Glioblastoma (GBM) is the most common and lethal of the central nervous system (CNS) malignancies. The initiation, progression, and infiltration ability of GBMs are attributed in part to the dysregulation of microRNAs (miRNAs). Thus, targeting dysregulated miRNAs with RNA oligonucleotides (RNA interference, RNAi) has been proposed for GBM treatment. Despite promising results in the laboratory, RNA oligonucleotides have clinical limitations that include poor RNA stability and off-target effects. RNAi therapies against GBM confront an additional obstacle, as they need to cross the blood-brain barrier (BBB). METHODS: Here, we developed gold-liposome nanoparticles conjugated with the brain targeting peptides apolipoprotein E (ApoE) and rabies virus glycoprotein (RVG). First, we functionalized gold nanoparticles with oligonucleotide miRNA inhibitors (OMIs), creating spherical nucleic acids (SNAs). Next, we encapsulated SNAs into ApoE, or RVG-conjugated liposomes, to obtain SNA-Liposome-ApoE and SNA-Liposome-RVG, respectively. We characterized each nanoparticle in terms of their size, charge, encapsulation efficiency, and delivery efficiency into U87 GBM cells in vitro. Then, they were administered intravenously (iv) in GBM syngeneic mice to evaluate their delivery efficiency to brain tumor tissue. RESULTS: SNA-Liposomes of about 30–50 nm in diameter internalized U87 GBM cells and inhibited the expression of miRNA-92b, an aberrantly overexpressed miRNA in GBM cell lines and GBM tumors. Conjugating SNA-Liposomes with ApoE or RVG peptides increased their systemic delivery to the brain tumors of GBM syngeneic mice. SNA-Liposome-ApoE demonstrated to accumulate at higher extension in brain tumor tissues, when compared with non-treated controls, SNA-Liposomes, or SNA-Liposome-RVG. DISCUSSION: SNA-Liposome-ApoE has the potential to advance the translation of miRNA-based therapies for GBM as well as other CNS disorders. Dove 2020-04-23 /pmc/articles/PMC7185647/ /pubmed/32368056 http://dx.doi.org/10.2147/IJN.S241055 Text en © 2020 Grafals-Ruiz et al. http://creativecommons.org/licenses/by-nc/3.0/ 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. For permission for commercial use of this work, please see paragraphs 4.2 and 5 of our Terms (https://www.dovepress.com/terms.php).
spellingShingle Original Research
Grafals-Ruiz, Nilmary
Rios-Vicil, Christian I
Lozada-Delgado, Eunice L
Quiñones-Díaz, Blanca I
Noriega-Rivera, Ricardo A
Martínez-Zayas, Gabriel
Santana-Rivera, Yasmarie
Santiago-Sánchez, Ginette S
Valiyeva, Fatma
Vivas-Mejía, Pablo E
Brain Targeted Gold Liposomes Improve RNAi Delivery for Glioblastoma
title Brain Targeted Gold Liposomes Improve RNAi Delivery for Glioblastoma
title_full Brain Targeted Gold Liposomes Improve RNAi Delivery for Glioblastoma
title_fullStr Brain Targeted Gold Liposomes Improve RNAi Delivery for Glioblastoma
title_full_unstemmed Brain Targeted Gold Liposomes Improve RNAi Delivery for Glioblastoma
title_short Brain Targeted Gold Liposomes Improve RNAi Delivery for Glioblastoma
title_sort brain targeted gold liposomes improve rnai delivery for glioblastoma
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7185647/
https://www.ncbi.nlm.nih.gov/pubmed/32368056
http://dx.doi.org/10.2147/IJN.S241055
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