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Thermoreversible Poly(ethylene glycol)-g-Chitosan Hydrogel as a Therapeutic T Lymphocyte Depot for Localized Glioblastoma Immunotherapy

[Image: see text] The outcome for glioblastoma patients remains dismal for its invariably recrudesces within 2 cm of the resection cavity. Local immunotherapy has the potential to eradicate the residual infiltrative component of these tumors. Here, we report the development of a biodegradable hydrog...

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Autores principales: Tsao, Ching-Ting, Kievit, Forrest M., Ravanpay, Ali, Erickson, Ariane E., Jensen, Michael C., Ellenbogen, Richard G., Zhang, Miqin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4215871/
https://www.ncbi.nlm.nih.gov/pubmed/24890220
http://dx.doi.org/10.1021/bm500502n
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author Tsao, Ching-Ting
Kievit, Forrest M.
Ravanpay, Ali
Erickson, Ariane E.
Jensen, Michael C.
Ellenbogen, Richard G.
Zhang, Miqin
author_facet Tsao, Ching-Ting
Kievit, Forrest M.
Ravanpay, Ali
Erickson, Ariane E.
Jensen, Michael C.
Ellenbogen, Richard G.
Zhang, Miqin
author_sort Tsao, Ching-Ting
collection PubMed
description [Image: see text] The outcome for glioblastoma patients remains dismal for its invariably recrudesces within 2 cm of the resection cavity. Local immunotherapy has the potential to eradicate the residual infiltrative component of these tumors. Here, we report the development of a biodegradable hydrogel containing therapeutic T lymphocytes for localized delivery to glioblastoma cells for brain tumor immunotherapy. Thermoreversible poly(ethylene glycol)-g-chitosan hydrogels (PCgels) were optimized for steady T lymphocyte release. Nuclear magnetic resonance spectroscopy confirmed the chemical structure of poly(ethylene glycol)-g-chitosan, and rheological studies revealed that the sol-to-gel transition of the PCgel occurred around ≥32 °C. T lymphocyte invasion through the PCgel and subsequent cytotoxicity to glioblastoma were assessed in vitro. The PCgel was shown to be cellular compatible with T lymphocytes, and the T lymphocytes retain their anti-glioblastoma activity after being encapsulated in the PCgel. T lymphocytes in the PCgel were shown to be more effective in killing glioblastoma than those in the Matrigel control. This may be attributed to the optimal pore size of the PCgel allowing better invasion of T lymphocytes. Our study suggests that this unique PCgel depot may offer a viable approach for localized immunotherapy for glioblastoma.
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spelling pubmed-42158712015-06-03 Thermoreversible Poly(ethylene glycol)-g-Chitosan Hydrogel as a Therapeutic T Lymphocyte Depot for Localized Glioblastoma Immunotherapy Tsao, Ching-Ting Kievit, Forrest M. Ravanpay, Ali Erickson, Ariane E. Jensen, Michael C. Ellenbogen, Richard G. Zhang, Miqin Biomacromolecules [Image: see text] The outcome for glioblastoma patients remains dismal for its invariably recrudesces within 2 cm of the resection cavity. Local immunotherapy has the potential to eradicate the residual infiltrative component of these tumors. Here, we report the development of a biodegradable hydrogel containing therapeutic T lymphocytes for localized delivery to glioblastoma cells for brain tumor immunotherapy. Thermoreversible poly(ethylene glycol)-g-chitosan hydrogels (PCgels) were optimized for steady T lymphocyte release. Nuclear magnetic resonance spectroscopy confirmed the chemical structure of poly(ethylene glycol)-g-chitosan, and rheological studies revealed that the sol-to-gel transition of the PCgel occurred around ≥32 °C. T lymphocyte invasion through the PCgel and subsequent cytotoxicity to glioblastoma were assessed in vitro. The PCgel was shown to be cellular compatible with T lymphocytes, and the T lymphocytes retain their anti-glioblastoma activity after being encapsulated in the PCgel. T lymphocytes in the PCgel were shown to be more effective in killing glioblastoma than those in the Matrigel control. This may be attributed to the optimal pore size of the PCgel allowing better invasion of T lymphocytes. Our study suggests that this unique PCgel depot may offer a viable approach for localized immunotherapy for glioblastoma. American Chemical Society 2014-06-03 2014-07-14 /pmc/articles/PMC4215871/ /pubmed/24890220 http://dx.doi.org/10.1021/bm500502n Text en Copyright © 2014 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html)
spellingShingle Tsao, Ching-Ting
Kievit, Forrest M.
Ravanpay, Ali
Erickson, Ariane E.
Jensen, Michael C.
Ellenbogen, Richard G.
Zhang, Miqin
Thermoreversible Poly(ethylene glycol)-g-Chitosan Hydrogel as a Therapeutic T Lymphocyte Depot for Localized Glioblastoma Immunotherapy
title Thermoreversible Poly(ethylene glycol)-g-Chitosan Hydrogel as a Therapeutic T Lymphocyte Depot for Localized Glioblastoma Immunotherapy
title_full Thermoreversible Poly(ethylene glycol)-g-Chitosan Hydrogel as a Therapeutic T Lymphocyte Depot for Localized Glioblastoma Immunotherapy
title_fullStr Thermoreversible Poly(ethylene glycol)-g-Chitosan Hydrogel as a Therapeutic T Lymphocyte Depot for Localized Glioblastoma Immunotherapy
title_full_unstemmed Thermoreversible Poly(ethylene glycol)-g-Chitosan Hydrogel as a Therapeutic T Lymphocyte Depot for Localized Glioblastoma Immunotherapy
title_short Thermoreversible Poly(ethylene glycol)-g-Chitosan Hydrogel as a Therapeutic T Lymphocyte Depot for Localized Glioblastoma Immunotherapy
title_sort thermoreversible poly(ethylene glycol)-g-chitosan hydrogel as a therapeutic t lymphocyte depot for localized glioblastoma immunotherapy
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4215871/
https://www.ncbi.nlm.nih.gov/pubmed/24890220
http://dx.doi.org/10.1021/bm500502n
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