Cargando…

Intranasal Delivery of Gene-Edited Microglial Exosomes Improves Neurological Outcomes after Intracerebral Hemorrhage by Regulating Neuroinflammation

Neural inflammatory response is a crucial pathological change in intracerebral hemorrhage (ICH) which accelerates the formation of perihematomal edema and aggravates neural cell death. Although surgical and drug treatments for ICH have advanced rapidly in recent years, therapeutic strategies that ta...

Descripción completa

Detalles Bibliográficos
Autores principales: Guo, Mengtian, Ge, Xintong, Wang, Conglin, Yin, Zhenyu, Jia, Zexi, Hu, Tianpeng, Li, Meimei, Wang, Dong, Han, Zhaoli, Wang, Lu, Xiong, Xiangyang, Chen, Fanglian, Lei, Ping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10137037/
https://www.ncbi.nlm.nih.gov/pubmed/37190604
http://dx.doi.org/10.3390/brainsci13040639
_version_ 1785032362847895552
author Guo, Mengtian
Ge, Xintong
Wang, Conglin
Yin, Zhenyu
Jia, Zexi
Hu, Tianpeng
Li, Meimei
Wang, Dong
Han, Zhaoli
Wang, Lu
Xiong, Xiangyang
Chen, Fanglian
Lei, Ping
author_facet Guo, Mengtian
Ge, Xintong
Wang, Conglin
Yin, Zhenyu
Jia, Zexi
Hu, Tianpeng
Li, Meimei
Wang, Dong
Han, Zhaoli
Wang, Lu
Xiong, Xiangyang
Chen, Fanglian
Lei, Ping
author_sort Guo, Mengtian
collection PubMed
description Neural inflammatory response is a crucial pathological change in intracerebral hemorrhage (ICH) which accelerates the formation of perihematomal edema and aggravates neural cell death. Although surgical and drug treatments for ICH have advanced rapidly in recent years, therapeutic strategies that target and control neuroinflammation are still limited. Exosomes are important carriers for information transfer among cells. They have also been regarded as a promising therapeutic tool in translational medicine, with low immunogenicity, high penetration through the blood-brain barrier, and ease of modification. In our previous research, we have found that exogenous administration of miRNA-124-overexpressed microglial exosomes (Exo-124) are effective in improving post-injury cognitive impairment. From this, we evaluated the potential therapeutic effects of miRNA-124-enriched microglial exosomes on the ICH mice in the present study. We found that the gene-edited exosomes could attenuate neuro-deficits and brain edema, improve blood–brain barrier integrity, and reduce neural cell death. Moreover, the protective effect of Exo-124 was abolished in mice depleted of Gr-1(+) myeloid cells. It suggested that the exosomes exerted their functions by limiting the infiltration of leukocyte into the brain, thus controlling neuroinflammation following the onset of ICH. In conclusion, our findings provided a promising therapeutic strategy for improving neuroinflammation in ICH. It also opens a new avenue for intranasal delivery of exosome therapy using miRNA-edited microglial exosomes.
format Online
Article
Text
id pubmed-10137037
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-101370372023-04-28 Intranasal Delivery of Gene-Edited Microglial Exosomes Improves Neurological Outcomes after Intracerebral Hemorrhage by Regulating Neuroinflammation Guo, Mengtian Ge, Xintong Wang, Conglin Yin, Zhenyu Jia, Zexi Hu, Tianpeng Li, Meimei Wang, Dong Han, Zhaoli Wang, Lu Xiong, Xiangyang Chen, Fanglian Lei, Ping Brain Sci Article Neural inflammatory response is a crucial pathological change in intracerebral hemorrhage (ICH) which accelerates the formation of perihematomal edema and aggravates neural cell death. Although surgical and drug treatments for ICH have advanced rapidly in recent years, therapeutic strategies that target and control neuroinflammation are still limited. Exosomes are important carriers for information transfer among cells. They have also been regarded as a promising therapeutic tool in translational medicine, with low immunogenicity, high penetration through the blood-brain barrier, and ease of modification. In our previous research, we have found that exogenous administration of miRNA-124-overexpressed microglial exosomes (Exo-124) are effective in improving post-injury cognitive impairment. From this, we evaluated the potential therapeutic effects of miRNA-124-enriched microglial exosomes on the ICH mice in the present study. We found that the gene-edited exosomes could attenuate neuro-deficits and brain edema, improve blood–brain barrier integrity, and reduce neural cell death. Moreover, the protective effect of Exo-124 was abolished in mice depleted of Gr-1(+) myeloid cells. It suggested that the exosomes exerted their functions by limiting the infiltration of leukocyte into the brain, thus controlling neuroinflammation following the onset of ICH. In conclusion, our findings provided a promising therapeutic strategy for improving neuroinflammation in ICH. It also opens a new avenue for intranasal delivery of exosome therapy using miRNA-edited microglial exosomes. MDPI 2023-04-08 /pmc/articles/PMC10137037/ /pubmed/37190604 http://dx.doi.org/10.3390/brainsci13040639 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Guo, Mengtian
Ge, Xintong
Wang, Conglin
Yin, Zhenyu
Jia, Zexi
Hu, Tianpeng
Li, Meimei
Wang, Dong
Han, Zhaoli
Wang, Lu
Xiong, Xiangyang
Chen, Fanglian
Lei, Ping
Intranasal Delivery of Gene-Edited Microglial Exosomes Improves Neurological Outcomes after Intracerebral Hemorrhage by Regulating Neuroinflammation
title Intranasal Delivery of Gene-Edited Microglial Exosomes Improves Neurological Outcomes after Intracerebral Hemorrhage by Regulating Neuroinflammation
title_full Intranasal Delivery of Gene-Edited Microglial Exosomes Improves Neurological Outcomes after Intracerebral Hemorrhage by Regulating Neuroinflammation
title_fullStr Intranasal Delivery of Gene-Edited Microglial Exosomes Improves Neurological Outcomes after Intracerebral Hemorrhage by Regulating Neuroinflammation
title_full_unstemmed Intranasal Delivery of Gene-Edited Microglial Exosomes Improves Neurological Outcomes after Intracerebral Hemorrhage by Regulating Neuroinflammation
title_short Intranasal Delivery of Gene-Edited Microglial Exosomes Improves Neurological Outcomes after Intracerebral Hemorrhage by Regulating Neuroinflammation
title_sort intranasal delivery of gene-edited microglial exosomes improves neurological outcomes after intracerebral hemorrhage by regulating neuroinflammation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10137037/
https://www.ncbi.nlm.nih.gov/pubmed/37190604
http://dx.doi.org/10.3390/brainsci13040639
work_keys_str_mv AT guomengtian intranasaldeliveryofgeneeditedmicroglialexosomesimprovesneurologicaloutcomesafterintracerebralhemorrhagebyregulatingneuroinflammation
AT gexintong intranasaldeliveryofgeneeditedmicroglialexosomesimprovesneurologicaloutcomesafterintracerebralhemorrhagebyregulatingneuroinflammation
AT wangconglin intranasaldeliveryofgeneeditedmicroglialexosomesimprovesneurologicaloutcomesafterintracerebralhemorrhagebyregulatingneuroinflammation
AT yinzhenyu intranasaldeliveryofgeneeditedmicroglialexosomesimprovesneurologicaloutcomesafterintracerebralhemorrhagebyregulatingneuroinflammation
AT jiazexi intranasaldeliveryofgeneeditedmicroglialexosomesimprovesneurologicaloutcomesafterintracerebralhemorrhagebyregulatingneuroinflammation
AT hutianpeng intranasaldeliveryofgeneeditedmicroglialexosomesimprovesneurologicaloutcomesafterintracerebralhemorrhagebyregulatingneuroinflammation
AT limeimei intranasaldeliveryofgeneeditedmicroglialexosomesimprovesneurologicaloutcomesafterintracerebralhemorrhagebyregulatingneuroinflammation
AT wangdong intranasaldeliveryofgeneeditedmicroglialexosomesimprovesneurologicaloutcomesafterintracerebralhemorrhagebyregulatingneuroinflammation
AT hanzhaoli intranasaldeliveryofgeneeditedmicroglialexosomesimprovesneurologicaloutcomesafterintracerebralhemorrhagebyregulatingneuroinflammation
AT wanglu intranasaldeliveryofgeneeditedmicroglialexosomesimprovesneurologicaloutcomesafterintracerebralhemorrhagebyregulatingneuroinflammation
AT xiongxiangyang intranasaldeliveryofgeneeditedmicroglialexosomesimprovesneurologicaloutcomesafterintracerebralhemorrhagebyregulatingneuroinflammation
AT chenfanglian intranasaldeliveryofgeneeditedmicroglialexosomesimprovesneurologicaloutcomesafterintracerebralhemorrhagebyregulatingneuroinflammation
AT leiping intranasaldeliveryofgeneeditedmicroglialexosomesimprovesneurologicaloutcomesafterintracerebralhemorrhagebyregulatingneuroinflammation