Cargando…

Engineered neutrophil apoptotic bodies ameliorate myocardial infarction by promoting macrophage efferocytosis and inflammation resolution

Inflammatory response plays a critical role in myocardial infarction (MI) repair. The neutrophil apoptosis and subsequent macrophage ingestion can result in inflammation resolution and initiate regeneration, while the therapeutic strategy that simulates and enhances this natural process has not been...

Descripción completa

Detalles Bibliográficos
Autores principales: Bao, Lili, Dou, Geng, Tian, Ran, Lv, Yajie, Ding, Feng, Liu, Siying, Zhao, Ruifeng, Zhao, Lu, Zhou, Jun, Weng, Lin, Dong, Yan, Li, Bei, Liu, Shiyu, Chen, Xin, Jin, Yan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8586716/
https://www.ncbi.nlm.nih.gov/pubmed/34820565
http://dx.doi.org/10.1016/j.bioactmat.2021.08.008
_version_ 1784597950406590464
author Bao, Lili
Dou, Geng
Tian, Ran
Lv, Yajie
Ding, Feng
Liu, Siying
Zhao, Ruifeng
Zhao, Lu
Zhou, Jun
Weng, Lin
Dong, Yan
Li, Bei
Liu, Shiyu
Chen, Xin
Jin, Yan
author_facet Bao, Lili
Dou, Geng
Tian, Ran
Lv, Yajie
Ding, Feng
Liu, Siying
Zhao, Ruifeng
Zhao, Lu
Zhou, Jun
Weng, Lin
Dong, Yan
Li, Bei
Liu, Shiyu
Chen, Xin
Jin, Yan
author_sort Bao, Lili
collection PubMed
description Inflammatory response plays a critical role in myocardial infarction (MI) repair. The neutrophil apoptosis and subsequent macrophage ingestion can result in inflammation resolution and initiate regeneration, while the therapeutic strategy that simulates and enhances this natural process has not been established. Here, we constructed engineered neutrophil apoptotic bodies (eNABs) to simulate natural neutrophil apoptosis, which regulated inflammation response and enhanced MI repair. The eNABs were fabricated by combining natural neutrophil apoptotic body membrane which has excellent inflammation-tropism and immunoregulatory properties, and mesoporous silica nanoparticles loaded with hexyl 5-aminolevulinate hydrochloride (HAL). The eNABs actively targeted to macrophages and the encapsulated HAL simultaneously initiated the biosynthesis pathway of heme to produce anti-inflammatory bilirubin after intracellular release, thereby further enhancing the anti-inflammation effects. In in vivo studies, the eNABs efficiently modulated inflammation responses in the infarcted region to ameliorate cardiac function. This study demonstrates an effective biomimetic construction strategy to regulate macrophage functions for MI repair.
format Online
Article
Text
id pubmed-8586716
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher KeAi Publishing
record_format MEDLINE/PubMed
spelling pubmed-85867162021-11-23 Engineered neutrophil apoptotic bodies ameliorate myocardial infarction by promoting macrophage efferocytosis and inflammation resolution Bao, Lili Dou, Geng Tian, Ran Lv, Yajie Ding, Feng Liu, Siying Zhao, Ruifeng Zhao, Lu Zhou, Jun Weng, Lin Dong, Yan Li, Bei Liu, Shiyu Chen, Xin Jin, Yan Bioact Mater Article Inflammatory response plays a critical role in myocardial infarction (MI) repair. The neutrophil apoptosis and subsequent macrophage ingestion can result in inflammation resolution and initiate regeneration, while the therapeutic strategy that simulates and enhances this natural process has not been established. Here, we constructed engineered neutrophil apoptotic bodies (eNABs) to simulate natural neutrophil apoptosis, which regulated inflammation response and enhanced MI repair. The eNABs were fabricated by combining natural neutrophil apoptotic body membrane which has excellent inflammation-tropism and immunoregulatory properties, and mesoporous silica nanoparticles loaded with hexyl 5-aminolevulinate hydrochloride (HAL). The eNABs actively targeted to macrophages and the encapsulated HAL simultaneously initiated the biosynthesis pathway of heme to produce anti-inflammatory bilirubin after intracellular release, thereby further enhancing the anti-inflammation effects. In in vivo studies, the eNABs efficiently modulated inflammation responses in the infarcted region to ameliorate cardiac function. This study demonstrates an effective biomimetic construction strategy to regulate macrophage functions for MI repair. KeAi Publishing 2021-08-27 /pmc/articles/PMC8586716/ /pubmed/34820565 http://dx.doi.org/10.1016/j.bioactmat.2021.08.008 Text en © 2021 The Authors https://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
Bao, Lili
Dou, Geng
Tian, Ran
Lv, Yajie
Ding, Feng
Liu, Siying
Zhao, Ruifeng
Zhao, Lu
Zhou, Jun
Weng, Lin
Dong, Yan
Li, Bei
Liu, Shiyu
Chen, Xin
Jin, Yan
Engineered neutrophil apoptotic bodies ameliorate myocardial infarction by promoting macrophage efferocytosis and inflammation resolution
title Engineered neutrophil apoptotic bodies ameliorate myocardial infarction by promoting macrophage efferocytosis and inflammation resolution
title_full Engineered neutrophil apoptotic bodies ameliorate myocardial infarction by promoting macrophage efferocytosis and inflammation resolution
title_fullStr Engineered neutrophil apoptotic bodies ameliorate myocardial infarction by promoting macrophage efferocytosis and inflammation resolution
title_full_unstemmed Engineered neutrophil apoptotic bodies ameliorate myocardial infarction by promoting macrophage efferocytosis and inflammation resolution
title_short Engineered neutrophil apoptotic bodies ameliorate myocardial infarction by promoting macrophage efferocytosis and inflammation resolution
title_sort engineered neutrophil apoptotic bodies ameliorate myocardial infarction by promoting macrophage efferocytosis and inflammation resolution
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8586716/
https://www.ncbi.nlm.nih.gov/pubmed/34820565
http://dx.doi.org/10.1016/j.bioactmat.2021.08.008
work_keys_str_mv AT baolili engineeredneutrophilapoptoticbodiesamelioratemyocardialinfarctionbypromotingmacrophageefferocytosisandinflammationresolution
AT dougeng engineeredneutrophilapoptoticbodiesamelioratemyocardialinfarctionbypromotingmacrophageefferocytosisandinflammationresolution
AT tianran engineeredneutrophilapoptoticbodiesamelioratemyocardialinfarctionbypromotingmacrophageefferocytosisandinflammationresolution
AT lvyajie engineeredneutrophilapoptoticbodiesamelioratemyocardialinfarctionbypromotingmacrophageefferocytosisandinflammationresolution
AT dingfeng engineeredneutrophilapoptoticbodiesamelioratemyocardialinfarctionbypromotingmacrophageefferocytosisandinflammationresolution
AT liusiying engineeredneutrophilapoptoticbodiesamelioratemyocardialinfarctionbypromotingmacrophageefferocytosisandinflammationresolution
AT zhaoruifeng engineeredneutrophilapoptoticbodiesamelioratemyocardialinfarctionbypromotingmacrophageefferocytosisandinflammationresolution
AT zhaolu engineeredneutrophilapoptoticbodiesamelioratemyocardialinfarctionbypromotingmacrophageefferocytosisandinflammationresolution
AT zhoujun engineeredneutrophilapoptoticbodiesamelioratemyocardialinfarctionbypromotingmacrophageefferocytosisandinflammationresolution
AT wenglin engineeredneutrophilapoptoticbodiesamelioratemyocardialinfarctionbypromotingmacrophageefferocytosisandinflammationresolution
AT dongyan engineeredneutrophilapoptoticbodiesamelioratemyocardialinfarctionbypromotingmacrophageefferocytosisandinflammationresolution
AT libei engineeredneutrophilapoptoticbodiesamelioratemyocardialinfarctionbypromotingmacrophageefferocytosisandinflammationresolution
AT liushiyu engineeredneutrophilapoptoticbodiesamelioratemyocardialinfarctionbypromotingmacrophageefferocytosisandinflammationresolution
AT chenxin engineeredneutrophilapoptoticbodiesamelioratemyocardialinfarctionbypromotingmacrophageefferocytosisandinflammationresolution
AT jinyan engineeredneutrophilapoptoticbodiesamelioratemyocardialinfarctionbypromotingmacrophageefferocytosisandinflammationresolution