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Engineering extracellular vesicles with platelet membranes fusion enhanced targeted therapeutic angiogenesis in a mouse model of myocardial ischemia reperfusion

Therapeutic angiogenesis is one promising strategy for the treatment of ischemic heart disease, which is the leading cause of death globally. In recent years, extracellular vesicles (EVs) have quickly gained much attention as a cell-free approach to stimulate angiogenesis. However, clinical applicat...

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Autores principales: Li, Qiyu, Song, Yanan, Wang, Qiaozi, Chen, Jing, Gao, Jinfeng, Tan, Haipeng, Li, Su, Wu, Yuan, Yang, Hongbo, Huang, Hanwei, Yu, Yang, Li, Yao, Zhang, Ning, Huang, Zheyong, Pang, Zhiqing, Qian, Juying, Ge, Junbo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7914364/
https://www.ncbi.nlm.nih.gov/pubmed/33664870
http://dx.doi.org/10.7150/thno.52496
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author Li, Qiyu
Song, Yanan
Wang, Qiaozi
Chen, Jing
Gao, Jinfeng
Tan, Haipeng
Li, Su
Wu, Yuan
Yang, Hongbo
Huang, Hanwei
Yu, Yang
Li, Yao
Zhang, Ning
Huang, Zheyong
Pang, Zhiqing
Qian, Juying
Ge, Junbo
author_facet Li, Qiyu
Song, Yanan
Wang, Qiaozi
Chen, Jing
Gao, Jinfeng
Tan, Haipeng
Li, Su
Wu, Yuan
Yang, Hongbo
Huang, Hanwei
Yu, Yang
Li, Yao
Zhang, Ning
Huang, Zheyong
Pang, Zhiqing
Qian, Juying
Ge, Junbo
author_sort Li, Qiyu
collection PubMed
description Therapeutic angiogenesis is one promising strategy for the treatment of ischemic heart disease, which is the leading cause of death globally. In recent years, extracellular vesicles (EVs) have quickly gained much attention as a cell-free approach to stimulate angiogenesis. However, clinical applications of EVs are limited by their insufficient targeting capability. Herein, we introduce a method to enhance therapeutic angiogenesis based on platelet membrane-engineered EVs. Methods: Platelet-mimetic EVs (P-EVs) were fabricated by fusing the membranes of EVs with platelet membranes by extrusion. A mouse model of myocardial ischemia reperfusion (MI/R) was established and injected with PBS, EVs, and P-EVs to evaluate their targeting ability and therapeutic angiogenesis efficacy. Results: P-EVs inherited the adhesive proteins and natural targeting ability to injured vasculature of platelets and retained the pro-angiogenic potential of EVs. In the MI/R model, P-EVs preferentially accumulated in the injured endothelium of the ischemic hearts and enhanced the angiogenesis potency of EVs. Conclusions: This engineering strategy to modify pre-isolated EVs with platelet membranes by membrane fusion bestows EVs with the targeting ability of platelets and offers an exciting opportunity to design other targeted EVs fused with cell membranes from different sources for therapeutic angiogenesis.
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spelling pubmed-79143642021-03-03 Engineering extracellular vesicles with platelet membranes fusion enhanced targeted therapeutic angiogenesis in a mouse model of myocardial ischemia reperfusion Li, Qiyu Song, Yanan Wang, Qiaozi Chen, Jing Gao, Jinfeng Tan, Haipeng Li, Su Wu, Yuan Yang, Hongbo Huang, Hanwei Yu, Yang Li, Yao Zhang, Ning Huang, Zheyong Pang, Zhiqing Qian, Juying Ge, Junbo Theranostics Research Paper Therapeutic angiogenesis is one promising strategy for the treatment of ischemic heart disease, which is the leading cause of death globally. In recent years, extracellular vesicles (EVs) have quickly gained much attention as a cell-free approach to stimulate angiogenesis. However, clinical applications of EVs are limited by their insufficient targeting capability. Herein, we introduce a method to enhance therapeutic angiogenesis based on platelet membrane-engineered EVs. Methods: Platelet-mimetic EVs (P-EVs) were fabricated by fusing the membranes of EVs with platelet membranes by extrusion. A mouse model of myocardial ischemia reperfusion (MI/R) was established and injected with PBS, EVs, and P-EVs to evaluate their targeting ability and therapeutic angiogenesis efficacy. Results: P-EVs inherited the adhesive proteins and natural targeting ability to injured vasculature of platelets and retained the pro-angiogenic potential of EVs. In the MI/R model, P-EVs preferentially accumulated in the injured endothelium of the ischemic hearts and enhanced the angiogenesis potency of EVs. Conclusions: This engineering strategy to modify pre-isolated EVs with platelet membranes by membrane fusion bestows EVs with the targeting ability of platelets and offers an exciting opportunity to design other targeted EVs fused with cell membranes from different sources for therapeutic angiogenesis. Ivyspring International Publisher 2021-02-06 /pmc/articles/PMC7914364/ /pubmed/33664870 http://dx.doi.org/10.7150/thno.52496 Text en © The author(s) 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, Qiyu
Song, Yanan
Wang, Qiaozi
Chen, Jing
Gao, Jinfeng
Tan, Haipeng
Li, Su
Wu, Yuan
Yang, Hongbo
Huang, Hanwei
Yu, Yang
Li, Yao
Zhang, Ning
Huang, Zheyong
Pang, Zhiqing
Qian, Juying
Ge, Junbo
Engineering extracellular vesicles with platelet membranes fusion enhanced targeted therapeutic angiogenesis in a mouse model of myocardial ischemia reperfusion
title Engineering extracellular vesicles with platelet membranes fusion enhanced targeted therapeutic angiogenesis in a mouse model of myocardial ischemia reperfusion
title_full Engineering extracellular vesicles with platelet membranes fusion enhanced targeted therapeutic angiogenesis in a mouse model of myocardial ischemia reperfusion
title_fullStr Engineering extracellular vesicles with platelet membranes fusion enhanced targeted therapeutic angiogenesis in a mouse model of myocardial ischemia reperfusion
title_full_unstemmed Engineering extracellular vesicles with platelet membranes fusion enhanced targeted therapeutic angiogenesis in a mouse model of myocardial ischemia reperfusion
title_short Engineering extracellular vesicles with platelet membranes fusion enhanced targeted therapeutic angiogenesis in a mouse model of myocardial ischemia reperfusion
title_sort engineering extracellular vesicles with platelet membranes fusion enhanced targeted therapeutic angiogenesis in a mouse model of myocardial ischemia reperfusion
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7914364/
https://www.ncbi.nlm.nih.gov/pubmed/33664870
http://dx.doi.org/10.7150/thno.52496
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