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Biodegradable electrospun nanofibrous platform integrating antiplatelet therapy-chemotherapy for preventing postoperative tumor recurrence and metastasis

The perioperative trauma-related platelet recruitment and activation severely affect tumor recurrence and metastasis. Therefore, efficiently killing residual tumor cells and simultaneously inhibiting platelet activation to block platelet-cancer cell interaction might be a promising strategy to preve...

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Autores principales: Li, Jianye, Li, Jiaojiao, Yao, Yuzhu, Yong, Tuying, Bie, Nana, Wei, Zhaohan, Li, Xin, Li, Shiyu, Qin, Jiaqi, Jia, Haibo, Du, Qing, Yang, Xiangliang, Gan, Lu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9065196/
https://www.ncbi.nlm.nih.gov/pubmed/35547751
http://dx.doi.org/10.7150/thno.69795
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author Li, Jianye
Li, Jiaojiao
Yao, Yuzhu
Yong, Tuying
Bie, Nana
Wei, Zhaohan
Li, Xin
Li, Shiyu
Qin, Jiaqi
Jia, Haibo
Du, Qing
Yang, Xiangliang
Gan, Lu
author_facet Li, Jianye
Li, Jiaojiao
Yao, Yuzhu
Yong, Tuying
Bie, Nana
Wei, Zhaohan
Li, Xin
Li, Shiyu
Qin, Jiaqi
Jia, Haibo
Du, Qing
Yang, Xiangliang
Gan, Lu
author_sort Li, Jianye
collection PubMed
description The perioperative trauma-related platelet recruitment and activation severely affect tumor recurrence and metastasis. Therefore, efficiently killing residual tumor cells and simultaneously inhibiting platelet activation to block platelet-cancer cell interaction might be a promising strategy to prevent postoperative tumor recurrence and metastasis. Methods: Biodegradable PLGA electrospun nanofibrous films co-delivering doxorubicin-loaded tumor repopulating cell-derived microparticles (DOX-MPs) and aspirin (ASA) were developed as the implant materials (DOX-MPs/ASA@NF) for postoperative in-situ treatment. The characterization, cytotoxicity against tumor cells, inhibition in platelet activation-triggered proliferation, migration and metastasis of tumor cells and in vivo anti-recurrence and anti-metastasis activity induced by DOX-MPs/ASA@NF were systematically evaluated. Results: PLGA nanofibrous films facilitate the enhanced distribution of DOX-MPs as well as DOX-MPs and ASA release in a time-programmed manner within the tumor resection cavity. The released DOX-MPs efficiently kill the residual tumor cells, while ASA decreases platelet activation and inhibits platelet-promoted proliferation, migration and metastasis of tumor cells, resulting in the remarkable inhibition of postoperative tumor recurrence and metastasis. Conclusions: DOX-MPs/ASA@NF may be a promising candidate to prevent the recurrence and metastasis of resectable tumors.
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spelling pubmed-90651962022-05-10 Biodegradable electrospun nanofibrous platform integrating antiplatelet therapy-chemotherapy for preventing postoperative tumor recurrence and metastasis Li, Jianye Li, Jiaojiao Yao, Yuzhu Yong, Tuying Bie, Nana Wei, Zhaohan Li, Xin Li, Shiyu Qin, Jiaqi Jia, Haibo Du, Qing Yang, Xiangliang Gan, Lu Theranostics Research Paper The perioperative trauma-related platelet recruitment and activation severely affect tumor recurrence and metastasis. Therefore, efficiently killing residual tumor cells and simultaneously inhibiting platelet activation to block platelet-cancer cell interaction might be a promising strategy to prevent postoperative tumor recurrence and metastasis. Methods: Biodegradable PLGA electrospun nanofibrous films co-delivering doxorubicin-loaded tumor repopulating cell-derived microparticles (DOX-MPs) and aspirin (ASA) were developed as the implant materials (DOX-MPs/ASA@NF) for postoperative in-situ treatment. The characterization, cytotoxicity against tumor cells, inhibition in platelet activation-triggered proliferation, migration and metastasis of tumor cells and in vivo anti-recurrence and anti-metastasis activity induced by DOX-MPs/ASA@NF were systematically evaluated. Results: PLGA nanofibrous films facilitate the enhanced distribution of DOX-MPs as well as DOX-MPs and ASA release in a time-programmed manner within the tumor resection cavity. The released DOX-MPs efficiently kill the residual tumor cells, while ASA decreases platelet activation and inhibits platelet-promoted proliferation, migration and metastasis of tumor cells, resulting in the remarkable inhibition of postoperative tumor recurrence and metastasis. Conclusions: DOX-MPs/ASA@NF may be a promising candidate to prevent the recurrence and metastasis of resectable tumors. Ivyspring International Publisher 2022-04-24 /pmc/articles/PMC9065196/ /pubmed/35547751 http://dx.doi.org/10.7150/thno.69795 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Li, Jianye
Li, Jiaojiao
Yao, Yuzhu
Yong, Tuying
Bie, Nana
Wei, Zhaohan
Li, Xin
Li, Shiyu
Qin, Jiaqi
Jia, Haibo
Du, Qing
Yang, Xiangliang
Gan, Lu
Biodegradable electrospun nanofibrous platform integrating antiplatelet therapy-chemotherapy for preventing postoperative tumor recurrence and metastasis
title Biodegradable electrospun nanofibrous platform integrating antiplatelet therapy-chemotherapy for preventing postoperative tumor recurrence and metastasis
title_full Biodegradable electrospun nanofibrous platform integrating antiplatelet therapy-chemotherapy for preventing postoperative tumor recurrence and metastasis
title_fullStr Biodegradable electrospun nanofibrous platform integrating antiplatelet therapy-chemotherapy for preventing postoperative tumor recurrence and metastasis
title_full_unstemmed Biodegradable electrospun nanofibrous platform integrating antiplatelet therapy-chemotherapy for preventing postoperative tumor recurrence and metastasis
title_short Biodegradable electrospun nanofibrous platform integrating antiplatelet therapy-chemotherapy for preventing postoperative tumor recurrence and metastasis
title_sort biodegradable electrospun nanofibrous platform integrating antiplatelet therapy-chemotherapy for preventing postoperative tumor recurrence and metastasis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9065196/
https://www.ncbi.nlm.nih.gov/pubmed/35547751
http://dx.doi.org/10.7150/thno.69795
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