Cargando…

Enhanced delivery of paclitaxel liposomes using focused ultrasound with microbubbles for treating nude mice bearing intracranial glioblastoma xenografts

Paclitaxel liposomes (PTX-LIPO) are a clinically promising antineoplastic drug formulation for the treatment of various extracranial cancers, excluding glioblastoma. A main reason for this is the presence of the blood–brain barrier (BBB) or blood–tumor barrier (BTB), preventing liposomal drugs from...

Descripción completa

Detalles Bibliográficos
Autores principales: Shen, Yuanyuan, Pi, Zhaoke, Yan, Fei, Yeh, Chih-Kuang, Zeng, Xiaojun, Diao, Xianfen, Hu, Yaxin, Chen, Siping, Chen, Xin, Zheng, Hairong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5557914/
https://www.ncbi.nlm.nih.gov/pubmed/28848341
http://dx.doi.org/10.2147/IJN.S136401
_version_ 1783257297431035904
author Shen, Yuanyuan
Pi, Zhaoke
Yan, Fei
Yeh, Chih-Kuang
Zeng, Xiaojun
Diao, Xianfen
Hu, Yaxin
Chen, Siping
Chen, Xin
Zheng, Hairong
author_facet Shen, Yuanyuan
Pi, Zhaoke
Yan, Fei
Yeh, Chih-Kuang
Zeng, Xiaojun
Diao, Xianfen
Hu, Yaxin
Chen, Siping
Chen, Xin
Zheng, Hairong
author_sort Shen, Yuanyuan
collection PubMed
description Paclitaxel liposomes (PTX-LIPO) are a clinically promising antineoplastic drug formulation for the treatment of various extracranial cancers, excluding glioblastoma. A main reason for this is the presence of the blood–brain barrier (BBB) or blood–tumor barrier (BTB), preventing liposomal drugs from crossing at a therapeutically meaningful level. Focused ultrasound (FUS) in conjunction with microbubbles (MBs) has been suggested in many studies to be an effective approach to increase the BBB or BTB permeability. In this study, we investigated the feasibility of enhancing the delivery of PTX-LIPO in intracranial glioblastoma-bearing nude mice using pulsed low-intensity FUS exposure in the presence of MBs. Our results showed that the delivery efficiency of PTX-LIPO could be effectively improved in terms of the penetration of both the BBB in vitro and BTB in vivo by pulsed FUS sonication with a 10 ms pulse length and 1 Hz pulse repetition frequency at 0.64 MPa peak-rarefactional pressure in the presence of MBs. Quantitative analysis showed that a 2-fold higher drug concentration had accumulated in the glioblastoma 3 h after FUS treatment, with 7.20±1.18 µg PTX per g glioma tissue. Longitudinal magnetic resonance imaging analysis illustrated that the intracranial glioblastoma progression in nude mice treated with PTX-LIPO delivered via FUS with MBs was suppressed consistently for 4 weeks compared to the untreated group. The medium survival time of these tumor-bearing nude mice was significantly prolonged by 20.8%, compared to the untreated nude mice. Immunohistochemical analysis further confirmed the antiproliferation effect and cell apoptosis induction. Our study demonstrated that noninvasive low-intensity FUS with MBs can be used as an effective approach to deliver PTX-LIPO in order to improve their chemotherapy efficacy toward glioblastoma.
format Online
Article
Text
id pubmed-5557914
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Dove Medical Press
record_format MEDLINE/PubMed
spelling pubmed-55579142017-08-28 Enhanced delivery of paclitaxel liposomes using focused ultrasound with microbubbles for treating nude mice bearing intracranial glioblastoma xenografts Shen, Yuanyuan Pi, Zhaoke Yan, Fei Yeh, Chih-Kuang Zeng, Xiaojun Diao, Xianfen Hu, Yaxin Chen, Siping Chen, Xin Zheng, Hairong Int J Nanomedicine Original Research Paclitaxel liposomes (PTX-LIPO) are a clinically promising antineoplastic drug formulation for the treatment of various extracranial cancers, excluding glioblastoma. A main reason for this is the presence of the blood–brain barrier (BBB) or blood–tumor barrier (BTB), preventing liposomal drugs from crossing at a therapeutically meaningful level. Focused ultrasound (FUS) in conjunction with microbubbles (MBs) has been suggested in many studies to be an effective approach to increase the BBB or BTB permeability. In this study, we investigated the feasibility of enhancing the delivery of PTX-LIPO in intracranial glioblastoma-bearing nude mice using pulsed low-intensity FUS exposure in the presence of MBs. Our results showed that the delivery efficiency of PTX-LIPO could be effectively improved in terms of the penetration of both the BBB in vitro and BTB in vivo by pulsed FUS sonication with a 10 ms pulse length and 1 Hz pulse repetition frequency at 0.64 MPa peak-rarefactional pressure in the presence of MBs. Quantitative analysis showed that a 2-fold higher drug concentration had accumulated in the glioblastoma 3 h after FUS treatment, with 7.20±1.18 µg PTX per g glioma tissue. Longitudinal magnetic resonance imaging analysis illustrated that the intracranial glioblastoma progression in nude mice treated with PTX-LIPO delivered via FUS with MBs was suppressed consistently for 4 weeks compared to the untreated group. The medium survival time of these tumor-bearing nude mice was significantly prolonged by 20.8%, compared to the untreated nude mice. Immunohistochemical analysis further confirmed the antiproliferation effect and cell apoptosis induction. Our study demonstrated that noninvasive low-intensity FUS with MBs can be used as an effective approach to deliver PTX-LIPO in order to improve their chemotherapy efficacy toward glioblastoma. Dove Medical Press 2017-08-09 /pmc/articles/PMC5557914/ /pubmed/28848341 http://dx.doi.org/10.2147/IJN.S136401 Text en © 2017 Shen 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
Shen, Yuanyuan
Pi, Zhaoke
Yan, Fei
Yeh, Chih-Kuang
Zeng, Xiaojun
Diao, Xianfen
Hu, Yaxin
Chen, Siping
Chen, Xin
Zheng, Hairong
Enhanced delivery of paclitaxel liposomes using focused ultrasound with microbubbles for treating nude mice bearing intracranial glioblastoma xenografts
title Enhanced delivery of paclitaxel liposomes using focused ultrasound with microbubbles for treating nude mice bearing intracranial glioblastoma xenografts
title_full Enhanced delivery of paclitaxel liposomes using focused ultrasound with microbubbles for treating nude mice bearing intracranial glioblastoma xenografts
title_fullStr Enhanced delivery of paclitaxel liposomes using focused ultrasound with microbubbles for treating nude mice bearing intracranial glioblastoma xenografts
title_full_unstemmed Enhanced delivery of paclitaxel liposomes using focused ultrasound with microbubbles for treating nude mice bearing intracranial glioblastoma xenografts
title_short Enhanced delivery of paclitaxel liposomes using focused ultrasound with microbubbles for treating nude mice bearing intracranial glioblastoma xenografts
title_sort enhanced delivery of paclitaxel liposomes using focused ultrasound with microbubbles for treating nude mice bearing intracranial glioblastoma xenografts
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5557914/
https://www.ncbi.nlm.nih.gov/pubmed/28848341
http://dx.doi.org/10.2147/IJN.S136401
work_keys_str_mv AT shenyuanyuan enhanceddeliveryofpaclitaxelliposomesusingfocusedultrasoundwithmicrobubblesfortreatingnudemicebearingintracranialglioblastomaxenografts
AT pizhaoke enhanceddeliveryofpaclitaxelliposomesusingfocusedultrasoundwithmicrobubblesfortreatingnudemicebearingintracranialglioblastomaxenografts
AT yanfei enhanceddeliveryofpaclitaxelliposomesusingfocusedultrasoundwithmicrobubblesfortreatingnudemicebearingintracranialglioblastomaxenografts
AT yehchihkuang enhanceddeliveryofpaclitaxelliposomesusingfocusedultrasoundwithmicrobubblesfortreatingnudemicebearingintracranialglioblastomaxenografts
AT zengxiaojun enhanceddeliveryofpaclitaxelliposomesusingfocusedultrasoundwithmicrobubblesfortreatingnudemicebearingintracranialglioblastomaxenografts
AT diaoxianfen enhanceddeliveryofpaclitaxelliposomesusingfocusedultrasoundwithmicrobubblesfortreatingnudemicebearingintracranialglioblastomaxenografts
AT huyaxin enhanceddeliveryofpaclitaxelliposomesusingfocusedultrasoundwithmicrobubblesfortreatingnudemicebearingintracranialglioblastomaxenografts
AT chensiping enhanceddeliveryofpaclitaxelliposomesusingfocusedultrasoundwithmicrobubblesfortreatingnudemicebearingintracranialglioblastomaxenografts
AT chenxin enhanceddeliveryofpaclitaxelliposomesusingfocusedultrasoundwithmicrobubblesfortreatingnudemicebearingintracranialglioblastomaxenografts
AT zhenghairong enhanceddeliveryofpaclitaxelliposomesusingfocusedultrasoundwithmicrobubblesfortreatingnudemicebearingintracranialglioblastomaxenografts