Cargando…

Exosomal STIMATE derived from type II alveolar epithelial cells controls metabolic reprogramming of tissue-resident alveolar macrophages

Background: Complete abolition of alveolar epithelial cells (AECs) is characteristic of end-stage lung disease. Transplantation therapy of type II AECs (AEC-IIs) or AEC-IIs-derived exosomes (ADEs) have been proposed as a means of repairing injury and preventing fibrosis. However, the mechanism by wh...

Descripción completa

Detalles Bibliográficos
Autores principales: Feng, Zunyong, Jing, Zhou, Li, Qiang, Chu, Liuxi, Jiang, YuXin, Zhang, Xuanbo, Yan, Liang, Liu, Yinhua, Jiang, Jing, Xu, Ping, Chen, Qun, Wang, Ming, Yang, Hui, Zhou, Guoren, Jiang, Xiaochun, Chen, Xiaoyuan, Xia, Hongping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9925314/
https://www.ncbi.nlm.nih.gov/pubmed/36793853
http://dx.doi.org/10.7150/thno.82552
_version_ 1784888039589281792
author Feng, Zunyong
Jing, Zhou
Li, Qiang
Chu, Liuxi
Jiang, YuXin
Zhang, Xuanbo
Yan, Liang
Liu, Yinhua
Jiang, Jing
Xu, Ping
Chen, Qun
Wang, Ming
Yang, Hui
Zhou, Guoren
Jiang, Xiaochun
Chen, Xiaoyuan
Xia, Hongping
author_facet Feng, Zunyong
Jing, Zhou
Li, Qiang
Chu, Liuxi
Jiang, YuXin
Zhang, Xuanbo
Yan, Liang
Liu, Yinhua
Jiang, Jing
Xu, Ping
Chen, Qun
Wang, Ming
Yang, Hui
Zhou, Guoren
Jiang, Xiaochun
Chen, Xiaoyuan
Xia, Hongping
author_sort Feng, Zunyong
collection PubMed
description Background: Complete abolition of alveolar epithelial cells (AECs) is characteristic of end-stage lung disease. Transplantation therapy of type II AECs (AEC-IIs) or AEC-IIs-derived exosomes (ADEs) have been proposed as a means of repairing injury and preventing fibrosis. However, the mechanism by which ADEs balances airway immunity and alleviates damage and fibrosis remains unknown. Methods: We investigated STIM-activating enhancer-positive ADEs (STIMATE(+) ADEs) in the lung of 112 ALI/ARDS and 44 IPF patients, and observed the correlation between STIMATE(+) ADEs and subpopulation proportion and metabolic status of tissue-resident alveolar macrophages (TRAMs). We constructed the conditional knockout mice STIMATE(sftpc), in which STIMATE was specifically knocked out in mouse AEC-IIs and observed the effects of STIMATE(+) ADEs deficiency on disease progression, immune selection and metabolic switching of TRAMs. We constructed a BLM-induced AEC-IIs injury model to observe the salvage treatment of damage/fibrosis progression with STIMATE(+) ADEs supplementation. Results: In clinical analysis, the distinct metabolic phenotypes of AMs in ALI/ARFS and IPF were significantly perturbed by STIMATE(+) ADEs. The immune and metabolic status of TRAMs in the lungs of STIMATE(sftpc) mice was imbalanced, resulting in spontaneous inflammatory injury and respiratory disorders. STIMATE(+) ADEs are taken up by tissue-resident alveolar macrophages TRAMs to regulate high Ca(2+) responsiveness and long-term Ca(2+) signal transduction, which maintains M2-like immunophenotype and metabolism selection. This involves calcineurin (CaN)-PGC-1α pathway mediated mitochondrial biogenesis and mtDNA coding. In a bleomycin-induced mouse fibrosis model, supplementation with inhaled STIMATE(+) ADEs lessened early acute injury, prevented advanced fibrosis, alleviated ventilatory impairment and reduced mortality.
format Online
Article
Text
id pubmed-9925314
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-99253142023-02-14 Exosomal STIMATE derived from type II alveolar epithelial cells controls metabolic reprogramming of tissue-resident alveolar macrophages Feng, Zunyong Jing, Zhou Li, Qiang Chu, Liuxi Jiang, YuXin Zhang, Xuanbo Yan, Liang Liu, Yinhua Jiang, Jing Xu, Ping Chen, Qun Wang, Ming Yang, Hui Zhou, Guoren Jiang, Xiaochun Chen, Xiaoyuan Xia, Hongping Theranostics Research Paper Background: Complete abolition of alveolar epithelial cells (AECs) is characteristic of end-stage lung disease. Transplantation therapy of type II AECs (AEC-IIs) or AEC-IIs-derived exosomes (ADEs) have been proposed as a means of repairing injury and preventing fibrosis. However, the mechanism by which ADEs balances airway immunity and alleviates damage and fibrosis remains unknown. Methods: We investigated STIM-activating enhancer-positive ADEs (STIMATE(+) ADEs) in the lung of 112 ALI/ARDS and 44 IPF patients, and observed the correlation between STIMATE(+) ADEs and subpopulation proportion and metabolic status of tissue-resident alveolar macrophages (TRAMs). We constructed the conditional knockout mice STIMATE(sftpc), in which STIMATE was specifically knocked out in mouse AEC-IIs and observed the effects of STIMATE(+) ADEs deficiency on disease progression, immune selection and metabolic switching of TRAMs. We constructed a BLM-induced AEC-IIs injury model to observe the salvage treatment of damage/fibrosis progression with STIMATE(+) ADEs supplementation. Results: In clinical analysis, the distinct metabolic phenotypes of AMs in ALI/ARFS and IPF were significantly perturbed by STIMATE(+) ADEs. The immune and metabolic status of TRAMs in the lungs of STIMATE(sftpc) mice was imbalanced, resulting in spontaneous inflammatory injury and respiratory disorders. STIMATE(+) ADEs are taken up by tissue-resident alveolar macrophages TRAMs to regulate high Ca(2+) responsiveness and long-term Ca(2+) signal transduction, which maintains M2-like immunophenotype and metabolism selection. This involves calcineurin (CaN)-PGC-1α pathway mediated mitochondrial biogenesis and mtDNA coding. In a bleomycin-induced mouse fibrosis model, supplementation with inhaled STIMATE(+) ADEs lessened early acute injury, prevented advanced fibrosis, alleviated ventilatory impairment and reduced mortality. Ivyspring International Publisher 2023-01-22 /pmc/articles/PMC9925314/ /pubmed/36793853 http://dx.doi.org/10.7150/thno.82552 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
Feng, Zunyong
Jing, Zhou
Li, Qiang
Chu, Liuxi
Jiang, YuXin
Zhang, Xuanbo
Yan, Liang
Liu, Yinhua
Jiang, Jing
Xu, Ping
Chen, Qun
Wang, Ming
Yang, Hui
Zhou, Guoren
Jiang, Xiaochun
Chen, Xiaoyuan
Xia, Hongping
Exosomal STIMATE derived from type II alveolar epithelial cells controls metabolic reprogramming of tissue-resident alveolar macrophages
title Exosomal STIMATE derived from type II alveolar epithelial cells controls metabolic reprogramming of tissue-resident alveolar macrophages
title_full Exosomal STIMATE derived from type II alveolar epithelial cells controls metabolic reprogramming of tissue-resident alveolar macrophages
title_fullStr Exosomal STIMATE derived from type II alveolar epithelial cells controls metabolic reprogramming of tissue-resident alveolar macrophages
title_full_unstemmed Exosomal STIMATE derived from type II alveolar epithelial cells controls metabolic reprogramming of tissue-resident alveolar macrophages
title_short Exosomal STIMATE derived from type II alveolar epithelial cells controls metabolic reprogramming of tissue-resident alveolar macrophages
title_sort exosomal stimate derived from type ii alveolar epithelial cells controls metabolic reprogramming of tissue-resident alveolar macrophages
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9925314/
https://www.ncbi.nlm.nih.gov/pubmed/36793853
http://dx.doi.org/10.7150/thno.82552
work_keys_str_mv AT fengzunyong exosomalstimatederivedfromtypeiialveolarepithelialcellscontrolsmetabolicreprogrammingoftissueresidentalveolarmacrophages
AT jingzhou exosomalstimatederivedfromtypeiialveolarepithelialcellscontrolsmetabolicreprogrammingoftissueresidentalveolarmacrophages
AT liqiang exosomalstimatederivedfromtypeiialveolarepithelialcellscontrolsmetabolicreprogrammingoftissueresidentalveolarmacrophages
AT chuliuxi exosomalstimatederivedfromtypeiialveolarepithelialcellscontrolsmetabolicreprogrammingoftissueresidentalveolarmacrophages
AT jiangyuxin exosomalstimatederivedfromtypeiialveolarepithelialcellscontrolsmetabolicreprogrammingoftissueresidentalveolarmacrophages
AT zhangxuanbo exosomalstimatederivedfromtypeiialveolarepithelialcellscontrolsmetabolicreprogrammingoftissueresidentalveolarmacrophages
AT yanliang exosomalstimatederivedfromtypeiialveolarepithelialcellscontrolsmetabolicreprogrammingoftissueresidentalveolarmacrophages
AT liuyinhua exosomalstimatederivedfromtypeiialveolarepithelialcellscontrolsmetabolicreprogrammingoftissueresidentalveolarmacrophages
AT jiangjing exosomalstimatederivedfromtypeiialveolarepithelialcellscontrolsmetabolicreprogrammingoftissueresidentalveolarmacrophages
AT xuping exosomalstimatederivedfromtypeiialveolarepithelialcellscontrolsmetabolicreprogrammingoftissueresidentalveolarmacrophages
AT chenqun exosomalstimatederivedfromtypeiialveolarepithelialcellscontrolsmetabolicreprogrammingoftissueresidentalveolarmacrophages
AT wangming exosomalstimatederivedfromtypeiialveolarepithelialcellscontrolsmetabolicreprogrammingoftissueresidentalveolarmacrophages
AT yanghui exosomalstimatederivedfromtypeiialveolarepithelialcellscontrolsmetabolicreprogrammingoftissueresidentalveolarmacrophages
AT zhouguoren exosomalstimatederivedfromtypeiialveolarepithelialcellscontrolsmetabolicreprogrammingoftissueresidentalveolarmacrophages
AT jiangxiaochun exosomalstimatederivedfromtypeiialveolarepithelialcellscontrolsmetabolicreprogrammingoftissueresidentalveolarmacrophages
AT chenxiaoyuan exosomalstimatederivedfromtypeiialveolarepithelialcellscontrolsmetabolicreprogrammingoftissueresidentalveolarmacrophages
AT xiahongping exosomalstimatederivedfromtypeiialveolarepithelialcellscontrolsmetabolicreprogrammingoftissueresidentalveolarmacrophages