Cargando…

The Formation of Morphologically Stable Lipid Nanocarriers for Glioma Therapy

Cerasomes are a promising modification of liposomes with covalent siloxane networks on the surface that provide outstanding morphological stability while maintaining all the useful traits of liposomes. Herein, thin film hydration and ethanol sol injection methods were utilized to produce cerasomes o...

Descripción completa

Detalles Bibliográficos
Autores principales: Pavlov, Rais, Romanova, Elvira, Kuznetsov, Denis, Lyubina, Anna, Amerhanova, Syumbelya, Voloshina, Alexandra, Buzyurova, Daina, Babaev, Vasily, Zueva, Irina, Petrov, Konstantin, Lukashenko, Svetlana, Gaynanova, Gulnara, Zakharova, Lucia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964330/
https://www.ncbi.nlm.nih.gov/pubmed/36835043
http://dx.doi.org/10.3390/ijms24043632
_version_ 1784896477460430848
author Pavlov, Rais
Romanova, Elvira
Kuznetsov, Denis
Lyubina, Anna
Amerhanova, Syumbelya
Voloshina, Alexandra
Buzyurova, Daina
Babaev, Vasily
Zueva, Irina
Petrov, Konstantin
Lukashenko, Svetlana
Gaynanova, Gulnara
Zakharova, Lucia
author_facet Pavlov, Rais
Romanova, Elvira
Kuznetsov, Denis
Lyubina, Anna
Amerhanova, Syumbelya
Voloshina, Alexandra
Buzyurova, Daina
Babaev, Vasily
Zueva, Irina
Petrov, Konstantin
Lukashenko, Svetlana
Gaynanova, Gulnara
Zakharova, Lucia
author_sort Pavlov, Rais
collection PubMed
description Cerasomes are a promising modification of liposomes with covalent siloxane networks on the surface that provide outstanding morphological stability while maintaining all the useful traits of liposomes. Herein, thin film hydration and ethanol sol injection methods were utilized to produce cerasomes of various composition, which were then evaluated for the purpose of drug delivery. The most promising nanoparticles obtained by the thin film method were studied closely using MTT assay, flow cytometry and fluorescence microscopy on T98G glioblastoma cell line and modified with surfactants to achieve stability and the ability to bypass the blood–brain barrier. An antitumor agent, paclitaxel, was loaded into cerasomes, which increased its potency and demonstrated increased ability to induce apoptosis in T98G glioblastoma cell culture. Cerasomes loaded with fluorescent dye rhodamine B demonstrated significantly increased fluorescence in brain slices of Wistar rats compared to free rhodamine B. Thin film hydration with Tween 80 addition was established as a more reliable and versatile method for cerasome preparation. Cerasomes increased the antitumor action of paclitaxel toward T98G cancer cells by a factor of 36 and were able to deliver rhodamine B over the blood–brain barrier in rats.
format Online
Article
Text
id pubmed-9964330
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-99643302023-02-26 The Formation of Morphologically Stable Lipid Nanocarriers for Glioma Therapy Pavlov, Rais Romanova, Elvira Kuznetsov, Denis Lyubina, Anna Amerhanova, Syumbelya Voloshina, Alexandra Buzyurova, Daina Babaev, Vasily Zueva, Irina Petrov, Konstantin Lukashenko, Svetlana Gaynanova, Gulnara Zakharova, Lucia Int J Mol Sci Article Cerasomes are a promising modification of liposomes with covalent siloxane networks on the surface that provide outstanding morphological stability while maintaining all the useful traits of liposomes. Herein, thin film hydration and ethanol sol injection methods were utilized to produce cerasomes of various composition, which were then evaluated for the purpose of drug delivery. The most promising nanoparticles obtained by the thin film method were studied closely using MTT assay, flow cytometry and fluorescence microscopy on T98G glioblastoma cell line and modified with surfactants to achieve stability and the ability to bypass the blood–brain barrier. An antitumor agent, paclitaxel, was loaded into cerasomes, which increased its potency and demonstrated increased ability to induce apoptosis in T98G glioblastoma cell culture. Cerasomes loaded with fluorescent dye rhodamine B demonstrated significantly increased fluorescence in brain slices of Wistar rats compared to free rhodamine B. Thin film hydration with Tween 80 addition was established as a more reliable and versatile method for cerasome preparation. Cerasomes increased the antitumor action of paclitaxel toward T98G cancer cells by a factor of 36 and were able to deliver rhodamine B over the blood–brain barrier in rats. MDPI 2023-02-11 /pmc/articles/PMC9964330/ /pubmed/36835043 http://dx.doi.org/10.3390/ijms24043632 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Pavlov, Rais
Romanova, Elvira
Kuznetsov, Denis
Lyubina, Anna
Amerhanova, Syumbelya
Voloshina, Alexandra
Buzyurova, Daina
Babaev, Vasily
Zueva, Irina
Petrov, Konstantin
Lukashenko, Svetlana
Gaynanova, Gulnara
Zakharova, Lucia
The Formation of Morphologically Stable Lipid Nanocarriers for Glioma Therapy
title The Formation of Morphologically Stable Lipid Nanocarriers for Glioma Therapy
title_full The Formation of Morphologically Stable Lipid Nanocarriers for Glioma Therapy
title_fullStr The Formation of Morphologically Stable Lipid Nanocarriers for Glioma Therapy
title_full_unstemmed The Formation of Morphologically Stable Lipid Nanocarriers for Glioma Therapy
title_short The Formation of Morphologically Stable Lipid Nanocarriers for Glioma Therapy
title_sort formation of morphologically stable lipid nanocarriers for glioma therapy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964330/
https://www.ncbi.nlm.nih.gov/pubmed/36835043
http://dx.doi.org/10.3390/ijms24043632
work_keys_str_mv AT pavlovrais theformationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT romanovaelvira theformationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT kuznetsovdenis theformationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT lyubinaanna theformationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT amerhanovasyumbelya theformationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT voloshinaalexandra theformationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT buzyurovadaina theformationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT babaevvasily theformationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT zuevairina theformationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT petrovkonstantin theformationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT lukashenkosvetlana theformationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT gaynanovagulnara theformationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT zakharovalucia theformationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT pavlovrais formationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT romanovaelvira formationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT kuznetsovdenis formationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT lyubinaanna formationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT amerhanovasyumbelya formationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT voloshinaalexandra formationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT buzyurovadaina formationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT babaevvasily formationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT zuevairina formationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT petrovkonstantin formationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT lukashenkosvetlana formationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT gaynanovagulnara formationofmorphologicallystablelipidnanocarriersforgliomatherapy
AT zakharovalucia formationofmorphologicallystablelipidnanocarriersforgliomatherapy