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Cell relay-delivery improves targeting and therapeutic efficacy in tumors

Cell-mediated drug delivery system (CDDS) has shown great potential for cancer therapy. However, a single cell-mediated drug delivery mechanism has not generally been successful, particularly for systemic administration. To augment the antitumor therapy efficacy, herein, we propose a strategy of cel...

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Autores principales: Feng, Ye, Liu, Qianqian, Li, Yi, Han, Yang, Liang, Meng, Wang, Hao, Yao, Qing, Wang, Yuli, Yang, Meiyan, Li, Zhiping, Gong, Wei, Yang, Yang, Gao, Chunsheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7689215/
https://www.ncbi.nlm.nih.gov/pubmed/33294731
http://dx.doi.org/10.1016/j.bioactmat.2020.11.014
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author Feng, Ye
Liu, Qianqian
Li, Yi
Han, Yang
Liang, Meng
Wang, Hao
Yao, Qing
Wang, Yuli
Yang, Meiyan
Li, Zhiping
Gong, Wei
Yang, Yang
Gao, Chunsheng
author_facet Feng, Ye
Liu, Qianqian
Li, Yi
Han, Yang
Liang, Meng
Wang, Hao
Yao, Qing
Wang, Yuli
Yang, Meiyan
Li, Zhiping
Gong, Wei
Yang, Yang
Gao, Chunsheng
author_sort Feng, Ye
collection PubMed
description Cell-mediated drug delivery system (CDDS) has shown great potential for cancer therapy. However, a single cell-mediated drug delivery mechanism has not generally been successful, particularly for systemic administration. To augment the antitumor therapy efficacy, herein, we propose a strategy of cell relay-delivery for the use of artificially damaging/aging erythrocytes to hitchhike on circulating monocytes/macrophages for intratumoral accumulation of anticancer drugs. This biomimetic relay-delivery strategy was derived from the manner in which circulating monocytes/macrophages in body specifically engulf damaged/senescent erythrocytes and actively transmigrate into the tumor bulk. The strategy elegantly combines the natural functions of both cells, which therefore provides a new perspective to challenge current obstacles in drug delivery. According to the strategy, we developed biotinylated erythrocyte-poly (lactic-co-glycolic acid) (PLGA) nanoparticle hybrid DDSs (bE-NPs) using avidin-biotin coupling. In such a system, biotinylated erythrocytes can mimic the natural property of damaged/senescent erythrocytes, while PLGA NPs are capable of encapsulating anticancer drugs and promoting sustained drug release. Anticancer drugs can effectively target tumor sites by two steps. First, by using biotinylated erythrocytes as the carrier, the drug-loaded PLGA NPs could be specifically phagocytized by monocytes/macrophages. Second, by taking advantage of the tumor-tropic property of monocytes/macrophages, the drug-loaded PLGA NPs could be efficiently transported into the tumor bulk. After encapsulating vincristine (VIN) as the model drug, bE-NPs exhibited the most favorable antitumor effects in vitro and in vivo by the cell relay-delivery effect. These results demonstrate that the cell relay-delivery provides a potential method for improving tumor treatment efficacy.
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spelling pubmed-76892152020-12-07 Cell relay-delivery improves targeting and therapeutic efficacy in tumors Feng, Ye Liu, Qianqian Li, Yi Han, Yang Liang, Meng Wang, Hao Yao, Qing Wang, Yuli Yang, Meiyan Li, Zhiping Gong, Wei Yang, Yang Gao, Chunsheng Bioact Mater Article Cell-mediated drug delivery system (CDDS) has shown great potential for cancer therapy. However, a single cell-mediated drug delivery mechanism has not generally been successful, particularly for systemic administration. To augment the antitumor therapy efficacy, herein, we propose a strategy of cell relay-delivery for the use of artificially damaging/aging erythrocytes to hitchhike on circulating monocytes/macrophages for intratumoral accumulation of anticancer drugs. This biomimetic relay-delivery strategy was derived from the manner in which circulating monocytes/macrophages in body specifically engulf damaged/senescent erythrocytes and actively transmigrate into the tumor bulk. The strategy elegantly combines the natural functions of both cells, which therefore provides a new perspective to challenge current obstacles in drug delivery. According to the strategy, we developed biotinylated erythrocyte-poly (lactic-co-glycolic acid) (PLGA) nanoparticle hybrid DDSs (bE-NPs) using avidin-biotin coupling. In such a system, biotinylated erythrocytes can mimic the natural property of damaged/senescent erythrocytes, while PLGA NPs are capable of encapsulating anticancer drugs and promoting sustained drug release. Anticancer drugs can effectively target tumor sites by two steps. First, by using biotinylated erythrocytes as the carrier, the drug-loaded PLGA NPs could be specifically phagocytized by monocytes/macrophages. Second, by taking advantage of the tumor-tropic property of monocytes/macrophages, the drug-loaded PLGA NPs could be efficiently transported into the tumor bulk. After encapsulating vincristine (VIN) as the model drug, bE-NPs exhibited the most favorable antitumor effects in vitro and in vivo by the cell relay-delivery effect. These results demonstrate that the cell relay-delivery provides a potential method for improving tumor treatment efficacy. KeAi Publishing 2020-11-19 /pmc/articles/PMC7689215/ /pubmed/33294731 http://dx.doi.org/10.1016/j.bioactmat.2020.11.014 Text en © 2020 The Authors. Production and hosting by Elsevier B.V. on behalf of KeAi Communications Co., Ltd. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Feng, Ye
Liu, Qianqian
Li, Yi
Han, Yang
Liang, Meng
Wang, Hao
Yao, Qing
Wang, Yuli
Yang, Meiyan
Li, Zhiping
Gong, Wei
Yang, Yang
Gao, Chunsheng
Cell relay-delivery improves targeting and therapeutic efficacy in tumors
title Cell relay-delivery improves targeting and therapeutic efficacy in tumors
title_full Cell relay-delivery improves targeting and therapeutic efficacy in tumors
title_fullStr Cell relay-delivery improves targeting and therapeutic efficacy in tumors
title_full_unstemmed Cell relay-delivery improves targeting and therapeutic efficacy in tumors
title_short Cell relay-delivery improves targeting and therapeutic efficacy in tumors
title_sort cell relay-delivery improves targeting and therapeutic efficacy in tumors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7689215/
https://www.ncbi.nlm.nih.gov/pubmed/33294731
http://dx.doi.org/10.1016/j.bioactmat.2020.11.014
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