Cargando…

Multifunctional targeting daunorubicin plus quinacrine liposomes, modified by wheat germ agglutinin and tamoxifen, for treating brain glioma and glioma stem cells

Most anticancer drugs are not able to cross the blood-brain barrier (BBB) effectively while surgery and radiation therapy cannot eradicate brain glioma cells and glioma stem cells (GSCs), hence resulting in poor prognosis with high recurrence rates. In the present study, a kind of multifunctional ta...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Xue-Tao, Ju, Rui-Jun, Li, Xiu-Ying, Zeng, Fan, Shi, Ji-Feng, Liu, Lei, Zhang, Cheng-Xiang, Sun, Meng-Ge, Lou, Jin-Ning, Lu, Wan-Liang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4171646/
https://www.ncbi.nlm.nih.gov/pubmed/25153726
_version_ 1782335931040137216
author Li, Xue-Tao
Ju, Rui-Jun
Li, Xiu-Ying
Zeng, Fan
Shi, Ji-Feng
Liu, Lei
Zhang, Cheng-Xiang
Sun, Meng-Ge
Lou, Jin-Ning
Lu, Wan-Liang
author_facet Li, Xue-Tao
Ju, Rui-Jun
Li, Xiu-Ying
Zeng, Fan
Shi, Ji-Feng
Liu, Lei
Zhang, Cheng-Xiang
Sun, Meng-Ge
Lou, Jin-Ning
Lu, Wan-Liang
author_sort Li, Xue-Tao
collection PubMed
description Most anticancer drugs are not able to cross the blood-brain barrier (BBB) effectively while surgery and radiation therapy cannot eradicate brain glioma cells and glioma stem cells (GSCs), hence resulting in poor prognosis with high recurrence rates. In the present study, a kind of multifunctional targeting daunorubicin plus quinacrine liposomes was developed for treating brain glioma and GSCs. Evaluations were performed on in-vitro BBB model, murine glioma cells, GSCs, and GSCs bearing mice. Results showed that the multifunctional targeting daunorubicin plus quinacrine liposomes exhibited evident capabilities in crossing the BBB, in killing glioma cells and GSCs and in diminishing brain glioma in mice. Action mechanism studies indicated that the enhanced efficacy of the multifunctional targeting drugs-loaded liposomes could be due to the following aspects: evading the rapid elimination from blood circulation; crossing the BBB effectively; improving drug uptake by glioma cells and GSCs; down-regulating the overexpressed ABC transporters; inducing apoptosis of GSCs via up-regulating apoptotic receptor/ligand (Fas/Fasl), activating apoptotic enzymes (caspases 8, 9 and 3), activating pro-apoptotic proteins (Bax and Bok), activating tumor suppressor protein (P53) and suppressing anti-apoptotic proteins (Bcl-2 and Mcl-1). In conclusion, the multifunctional targeting daunorubicin plus quinacrine liposomes could be used as a potential therapy for treating brain glioma and GSCs.
format Online
Article
Text
id pubmed-4171646
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-41716462014-09-23 Multifunctional targeting daunorubicin plus quinacrine liposomes, modified by wheat germ agglutinin and tamoxifen, for treating brain glioma and glioma stem cells Li, Xue-Tao Ju, Rui-Jun Li, Xiu-Ying Zeng, Fan Shi, Ji-Feng Liu, Lei Zhang, Cheng-Xiang Sun, Meng-Ge Lou, Jin-Ning Lu, Wan-Liang Oncotarget Research Paper Most anticancer drugs are not able to cross the blood-brain barrier (BBB) effectively while surgery and radiation therapy cannot eradicate brain glioma cells and glioma stem cells (GSCs), hence resulting in poor prognosis with high recurrence rates. In the present study, a kind of multifunctional targeting daunorubicin plus quinacrine liposomes was developed for treating brain glioma and GSCs. Evaluations were performed on in-vitro BBB model, murine glioma cells, GSCs, and GSCs bearing mice. Results showed that the multifunctional targeting daunorubicin plus quinacrine liposomes exhibited evident capabilities in crossing the BBB, in killing glioma cells and GSCs and in diminishing brain glioma in mice. Action mechanism studies indicated that the enhanced efficacy of the multifunctional targeting drugs-loaded liposomes could be due to the following aspects: evading the rapid elimination from blood circulation; crossing the BBB effectively; improving drug uptake by glioma cells and GSCs; down-regulating the overexpressed ABC transporters; inducing apoptosis of GSCs via up-regulating apoptotic receptor/ligand (Fas/Fasl), activating apoptotic enzymes (caspases 8, 9 and 3), activating pro-apoptotic proteins (Bax and Bok), activating tumor suppressor protein (P53) and suppressing anti-apoptotic proteins (Bcl-2 and Mcl-1). In conclusion, the multifunctional targeting daunorubicin plus quinacrine liposomes could be used as a potential therapy for treating brain glioma and GSCs. Impact Journals LLC 2014-07-26 /pmc/articles/PMC4171646/ /pubmed/25153726 Text en Copyright: © 2014 Li et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Li, Xue-Tao
Ju, Rui-Jun
Li, Xiu-Ying
Zeng, Fan
Shi, Ji-Feng
Liu, Lei
Zhang, Cheng-Xiang
Sun, Meng-Ge
Lou, Jin-Ning
Lu, Wan-Liang
Multifunctional targeting daunorubicin plus quinacrine liposomes, modified by wheat germ agglutinin and tamoxifen, for treating brain glioma and glioma stem cells
title Multifunctional targeting daunorubicin plus quinacrine liposomes, modified by wheat germ agglutinin and tamoxifen, for treating brain glioma and glioma stem cells
title_full Multifunctional targeting daunorubicin plus quinacrine liposomes, modified by wheat germ agglutinin and tamoxifen, for treating brain glioma and glioma stem cells
title_fullStr Multifunctional targeting daunorubicin plus quinacrine liposomes, modified by wheat germ agglutinin and tamoxifen, for treating brain glioma and glioma stem cells
title_full_unstemmed Multifunctional targeting daunorubicin plus quinacrine liposomes, modified by wheat germ agglutinin and tamoxifen, for treating brain glioma and glioma stem cells
title_short Multifunctional targeting daunorubicin plus quinacrine liposomes, modified by wheat germ agglutinin and tamoxifen, for treating brain glioma and glioma stem cells
title_sort multifunctional targeting daunorubicin plus quinacrine liposomes, modified by wheat germ agglutinin and tamoxifen, for treating brain glioma and glioma stem cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4171646/
https://www.ncbi.nlm.nih.gov/pubmed/25153726
work_keys_str_mv AT lixuetao multifunctionaltargetingdaunorubicinplusquinacrineliposomesmodifiedbywheatgermagglutininandtamoxifenfortreatingbraingliomaandgliomastemcells
AT juruijun multifunctionaltargetingdaunorubicinplusquinacrineliposomesmodifiedbywheatgermagglutininandtamoxifenfortreatingbraingliomaandgliomastemcells
AT lixiuying multifunctionaltargetingdaunorubicinplusquinacrineliposomesmodifiedbywheatgermagglutininandtamoxifenfortreatingbraingliomaandgliomastemcells
AT zengfan multifunctionaltargetingdaunorubicinplusquinacrineliposomesmodifiedbywheatgermagglutininandtamoxifenfortreatingbraingliomaandgliomastemcells
AT shijifeng multifunctionaltargetingdaunorubicinplusquinacrineliposomesmodifiedbywheatgermagglutininandtamoxifenfortreatingbraingliomaandgliomastemcells
AT liulei multifunctionaltargetingdaunorubicinplusquinacrineliposomesmodifiedbywheatgermagglutininandtamoxifenfortreatingbraingliomaandgliomastemcells
AT zhangchengxiang multifunctionaltargetingdaunorubicinplusquinacrineliposomesmodifiedbywheatgermagglutininandtamoxifenfortreatingbraingliomaandgliomastemcells
AT sunmengge multifunctionaltargetingdaunorubicinplusquinacrineliposomesmodifiedbywheatgermagglutininandtamoxifenfortreatingbraingliomaandgliomastemcells
AT loujinning multifunctionaltargetingdaunorubicinplusquinacrineliposomesmodifiedbywheatgermagglutininandtamoxifenfortreatingbraingliomaandgliomastemcells
AT luwanliang multifunctionaltargetingdaunorubicinplusquinacrineliposomesmodifiedbywheatgermagglutininandtamoxifenfortreatingbraingliomaandgliomastemcells