Cargando…

pH and temperature dual-sensitive liposome gel based on novel cleavable mPEG-Hz-CHEMS polymeric vaginal delivery system

BACKGROUND: In this study, a pH and temperature dual-sensitive liposome gel based on a novel cleavable hydrazone-based pH-sensitive methoxy polyethylene glycol 2000-hydrazone-cholesteryl hemisuccinate (mPEG-Hz-CHEMS) polymer was used for vaginal administration. METHODS: The pH-sensitive, cleavable m...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Daquan, Sun, Kaoxiang, Mu, Hongjie, Tang, Mingtan, Liang, Rongcai, Wang, Aiping, Zhou, Shasha, Sun, Haijun, Zhao, Feng, Yao, Jianwen, Liu, Wanhui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3368511/
https://www.ncbi.nlm.nih.gov/pubmed/22679372
http://dx.doi.org/10.2147/IJN.S31757
_version_ 1782234962845499392
author Chen, Daquan
Sun, Kaoxiang
Mu, Hongjie
Tang, Mingtan
Liang, Rongcai
Wang, Aiping
Zhou, Shasha
Sun, Haijun
Zhao, Feng
Yao, Jianwen
Liu, Wanhui
author_facet Chen, Daquan
Sun, Kaoxiang
Mu, Hongjie
Tang, Mingtan
Liang, Rongcai
Wang, Aiping
Zhou, Shasha
Sun, Haijun
Zhao, Feng
Yao, Jianwen
Liu, Wanhui
author_sort Chen, Daquan
collection PubMed
description BACKGROUND: In this study, a pH and temperature dual-sensitive liposome gel based on a novel cleavable hydrazone-based pH-sensitive methoxy polyethylene glycol 2000-hydrazone-cholesteryl hemisuccinate (mPEG-Hz-CHEMS) polymer was used for vaginal administration. METHODS: The pH-sensitive, cleavable mPEG-Hz-CHEMS was designed as a modified pH-sensitive liposome that would selectively degrade under locally acidic vaginal conditions. The novel pH-sensitive liposome was engineered to form a thermogel at body temperature and to degrade in an acidic environment. RESULTS: A dual-sensitive liposome gel with a high encapsulation efficiency of arctigenin was formed and improved the solubility of arctigenin characterized by Fourier transform infrared spectroscopy and differential scanning calorimetry. The dual-sensitive liposome gel with a sol-gel transition at body temperature was degraded in a pH-dependent manner, and was stable for a long period of time at neutral and basic pH, but cleavable under acidic conditions (pH 5.0). Arctigenin encapsulated in a dual-sensitive liposome gel was more stable and less toxic than arctigenin loaded into pH-sensitive liposomes. In vitro drug release results indicated that dual-sensitive liposome gels showed constant release of arctigenin over 3 days, but showed sustained release of arctigenin in buffers at pH 7.4 and pH 9.0. CONCLUSION: This research has shed some light on a pH and temperature dual-sensitive liposome gel using a cleavable mPEG-Hz-CHEMS polymer for vaginal delivery.
format Online
Article
Text
id pubmed-3368511
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Dove Medical Press
record_format MEDLINE/PubMed
spelling pubmed-33685112012-06-07 pH and temperature dual-sensitive liposome gel based on novel cleavable mPEG-Hz-CHEMS polymeric vaginal delivery system Chen, Daquan Sun, Kaoxiang Mu, Hongjie Tang, Mingtan Liang, Rongcai Wang, Aiping Zhou, Shasha Sun, Haijun Zhao, Feng Yao, Jianwen Liu, Wanhui Int J Nanomedicine Original Research BACKGROUND: In this study, a pH and temperature dual-sensitive liposome gel based on a novel cleavable hydrazone-based pH-sensitive methoxy polyethylene glycol 2000-hydrazone-cholesteryl hemisuccinate (mPEG-Hz-CHEMS) polymer was used for vaginal administration. METHODS: The pH-sensitive, cleavable mPEG-Hz-CHEMS was designed as a modified pH-sensitive liposome that would selectively degrade under locally acidic vaginal conditions. The novel pH-sensitive liposome was engineered to form a thermogel at body temperature and to degrade in an acidic environment. RESULTS: A dual-sensitive liposome gel with a high encapsulation efficiency of arctigenin was formed and improved the solubility of arctigenin characterized by Fourier transform infrared spectroscopy and differential scanning calorimetry. The dual-sensitive liposome gel with a sol-gel transition at body temperature was degraded in a pH-dependent manner, and was stable for a long period of time at neutral and basic pH, but cleavable under acidic conditions (pH 5.0). Arctigenin encapsulated in a dual-sensitive liposome gel was more stable and less toxic than arctigenin loaded into pH-sensitive liposomes. In vitro drug release results indicated that dual-sensitive liposome gels showed constant release of arctigenin over 3 days, but showed sustained release of arctigenin in buffers at pH 7.4 and pH 9.0. CONCLUSION: This research has shed some light on a pH and temperature dual-sensitive liposome gel using a cleavable mPEG-Hz-CHEMS polymer for vaginal delivery. Dove Medical Press 2012 2012-05-28 /pmc/articles/PMC3368511/ /pubmed/22679372 http://dx.doi.org/10.2147/IJN.S31757 Text en © 2012 Chen et al, publisher and licensee Dove Medical Press Ltd. This is an Open Access article which permits unrestricted noncommercial use, provided the original work is properly cited.
spellingShingle Original Research
Chen, Daquan
Sun, Kaoxiang
Mu, Hongjie
Tang, Mingtan
Liang, Rongcai
Wang, Aiping
Zhou, Shasha
Sun, Haijun
Zhao, Feng
Yao, Jianwen
Liu, Wanhui
pH and temperature dual-sensitive liposome gel based on novel cleavable mPEG-Hz-CHEMS polymeric vaginal delivery system
title pH and temperature dual-sensitive liposome gel based on novel cleavable mPEG-Hz-CHEMS polymeric vaginal delivery system
title_full pH and temperature dual-sensitive liposome gel based on novel cleavable mPEG-Hz-CHEMS polymeric vaginal delivery system
title_fullStr pH and temperature dual-sensitive liposome gel based on novel cleavable mPEG-Hz-CHEMS polymeric vaginal delivery system
title_full_unstemmed pH and temperature dual-sensitive liposome gel based on novel cleavable mPEG-Hz-CHEMS polymeric vaginal delivery system
title_short pH and temperature dual-sensitive liposome gel based on novel cleavable mPEG-Hz-CHEMS polymeric vaginal delivery system
title_sort ph and temperature dual-sensitive liposome gel based on novel cleavable mpeg-hz-chems polymeric vaginal delivery system
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3368511/
https://www.ncbi.nlm.nih.gov/pubmed/22679372
http://dx.doi.org/10.2147/IJN.S31757
work_keys_str_mv AT chendaquan phandtemperaturedualsensitiveliposomegelbasedonnovelcleavablempeghzchemspolymericvaginaldeliverysystem
AT sunkaoxiang phandtemperaturedualsensitiveliposomegelbasedonnovelcleavablempeghzchemspolymericvaginaldeliverysystem
AT muhongjie phandtemperaturedualsensitiveliposomegelbasedonnovelcleavablempeghzchemspolymericvaginaldeliverysystem
AT tangmingtan phandtemperaturedualsensitiveliposomegelbasedonnovelcleavablempeghzchemspolymericvaginaldeliverysystem
AT liangrongcai phandtemperaturedualsensitiveliposomegelbasedonnovelcleavablempeghzchemspolymericvaginaldeliverysystem
AT wangaiping phandtemperaturedualsensitiveliposomegelbasedonnovelcleavablempeghzchemspolymericvaginaldeliverysystem
AT zhoushasha phandtemperaturedualsensitiveliposomegelbasedonnovelcleavablempeghzchemspolymericvaginaldeliverysystem
AT sunhaijun phandtemperaturedualsensitiveliposomegelbasedonnovelcleavablempeghzchemspolymericvaginaldeliverysystem
AT zhaofeng phandtemperaturedualsensitiveliposomegelbasedonnovelcleavablempeghzchemspolymericvaginaldeliverysystem
AT yaojianwen phandtemperaturedualsensitiveliposomegelbasedonnovelcleavablempeghzchemspolymericvaginaldeliverysystem
AT liuwanhui phandtemperaturedualsensitiveliposomegelbasedonnovelcleavablempeghzchemspolymericvaginaldeliverysystem