Cargando…
A CpG-Oligodeoxynucleotide Suppresses Th2/Th17 Inflammation by Inhibiting IL-33/ST2 Signaling in Mice from a Model of Adoptive Dendritic Cell Transfer of Smoke-Induced Asthma
Tobacco smoke exposure is a major environmental risk factor that facilitates the development and progression of asthma. Our previous study showed that CpG oligodeoxynucleotide (CpG-ODN) inhibits thymic stromal lymphopoietin (TSLP)-dendritic cells (DCs) to reduce Th2/Th17-related inflammatory respons...
Autores principales: | , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9962992/ https://www.ncbi.nlm.nih.gov/pubmed/36834541 http://dx.doi.org/10.3390/ijms24043130 |
_version_ | 1784896140456493056 |
---|---|
author | Yang, Xuena Su, Beiting Liu, Jing Zheng, Li Tao, Peizhi Lin, Yusen Zou, Xiaoling Yang, Hailing Wu, Wenbin Meng, Ping Zhang, Tiantuo Li, Hongtao |
author_facet | Yang, Xuena Su, Beiting Liu, Jing Zheng, Li Tao, Peizhi Lin, Yusen Zou, Xiaoling Yang, Hailing Wu, Wenbin Meng, Ping Zhang, Tiantuo Li, Hongtao |
author_sort | Yang, Xuena |
collection | PubMed |
description | Tobacco smoke exposure is a major environmental risk factor that facilitates the development and progression of asthma. Our previous study showed that CpG oligodeoxynucleotide (CpG-ODN) inhibits thymic stromal lymphopoietin (TSLP)-dendritic cells (DCs) to reduce Th2/Th17-related inflammatory response in smoke-related asthma. However, the mechanism underlying CpG-ODN -downregulated TSLP remains unclear. A combined house dust mite (HDM)/cigarette smoke extract (CSE) model was used to assess the effects of CpG-ODN on airway inflammation, Th2/Th17 immune response, and amount of IL-33/ST2 and TSLP in mice with smoke-related asthma induced by adoptive transfer of bone-marrow-derived dendritic cells (BMDCs) and in the cultured human bronchial epithelium (HBE) cells administered anti-ST2, HDM, and/or CSE. In vivo, compared to the HDM alone model, the combined HDM/CSE model had aggravated inflammatory responses, while CpG-ODN attenuated airway inflammation, airway collagen deposition, and goblet cell hyperplasia and reduced the levels of IL-33/ST2, TSLP, and Th2/Th17-cytokines in the combined model. In vitro, IL-33/ST2 pathway activation promoted TSLP production in HBE cells, which could be inhibited by CpG-ODN. CpG-ODN administration alleviated Th2/Th17 inflammatory response, decreased the infiltration of inflammatory cells into the airway, and improved the remodeling of smoke-related asthma. The underlying mechanism may be that CpG-ODN inhibits the TSLP-DCs pathway by downregulating the IL-33/ST2 axis. |
format | Online Article Text |
id | pubmed-9962992 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-99629922023-02-26 A CpG-Oligodeoxynucleotide Suppresses Th2/Th17 Inflammation by Inhibiting IL-33/ST2 Signaling in Mice from a Model of Adoptive Dendritic Cell Transfer of Smoke-Induced Asthma Yang, Xuena Su, Beiting Liu, Jing Zheng, Li Tao, Peizhi Lin, Yusen Zou, Xiaoling Yang, Hailing Wu, Wenbin Meng, Ping Zhang, Tiantuo Li, Hongtao Int J Mol Sci Article Tobacco smoke exposure is a major environmental risk factor that facilitates the development and progression of asthma. Our previous study showed that CpG oligodeoxynucleotide (CpG-ODN) inhibits thymic stromal lymphopoietin (TSLP)-dendritic cells (DCs) to reduce Th2/Th17-related inflammatory response in smoke-related asthma. However, the mechanism underlying CpG-ODN -downregulated TSLP remains unclear. A combined house dust mite (HDM)/cigarette smoke extract (CSE) model was used to assess the effects of CpG-ODN on airway inflammation, Th2/Th17 immune response, and amount of IL-33/ST2 and TSLP in mice with smoke-related asthma induced by adoptive transfer of bone-marrow-derived dendritic cells (BMDCs) and in the cultured human bronchial epithelium (HBE) cells administered anti-ST2, HDM, and/or CSE. In vivo, compared to the HDM alone model, the combined HDM/CSE model had aggravated inflammatory responses, while CpG-ODN attenuated airway inflammation, airway collagen deposition, and goblet cell hyperplasia and reduced the levels of IL-33/ST2, TSLP, and Th2/Th17-cytokines in the combined model. In vitro, IL-33/ST2 pathway activation promoted TSLP production in HBE cells, which could be inhibited by CpG-ODN. CpG-ODN administration alleviated Th2/Th17 inflammatory response, decreased the infiltration of inflammatory cells into the airway, and improved the remodeling of smoke-related asthma. The underlying mechanism may be that CpG-ODN inhibits the TSLP-DCs pathway by downregulating the IL-33/ST2 axis. MDPI 2023-02-04 /pmc/articles/PMC9962992/ /pubmed/36834541 http://dx.doi.org/10.3390/ijms24043130 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 Yang, Xuena Su, Beiting Liu, Jing Zheng, Li Tao, Peizhi Lin, Yusen Zou, Xiaoling Yang, Hailing Wu, Wenbin Meng, Ping Zhang, Tiantuo Li, Hongtao A CpG-Oligodeoxynucleotide Suppresses Th2/Th17 Inflammation by Inhibiting IL-33/ST2 Signaling in Mice from a Model of Adoptive Dendritic Cell Transfer of Smoke-Induced Asthma |
title | A CpG-Oligodeoxynucleotide Suppresses Th2/Th17 Inflammation by Inhibiting IL-33/ST2 Signaling in Mice from a Model of Adoptive Dendritic Cell Transfer of Smoke-Induced Asthma |
title_full | A CpG-Oligodeoxynucleotide Suppresses Th2/Th17 Inflammation by Inhibiting IL-33/ST2 Signaling in Mice from a Model of Adoptive Dendritic Cell Transfer of Smoke-Induced Asthma |
title_fullStr | A CpG-Oligodeoxynucleotide Suppresses Th2/Th17 Inflammation by Inhibiting IL-33/ST2 Signaling in Mice from a Model of Adoptive Dendritic Cell Transfer of Smoke-Induced Asthma |
title_full_unstemmed | A CpG-Oligodeoxynucleotide Suppresses Th2/Th17 Inflammation by Inhibiting IL-33/ST2 Signaling in Mice from a Model of Adoptive Dendritic Cell Transfer of Smoke-Induced Asthma |
title_short | A CpG-Oligodeoxynucleotide Suppresses Th2/Th17 Inflammation by Inhibiting IL-33/ST2 Signaling in Mice from a Model of Adoptive Dendritic Cell Transfer of Smoke-Induced Asthma |
title_sort | cpg-oligodeoxynucleotide suppresses th2/th17 inflammation by inhibiting il-33/st2 signaling in mice from a model of adoptive dendritic cell transfer of smoke-induced asthma |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9962992/ https://www.ncbi.nlm.nih.gov/pubmed/36834541 http://dx.doi.org/10.3390/ijms24043130 |
work_keys_str_mv | AT yangxuena acpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT subeiting acpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT liujing acpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT zhengli acpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT taopeizhi acpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT linyusen acpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT zouxiaoling acpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT yanghailing acpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT wuwenbin acpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT mengping acpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT zhangtiantuo acpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT lihongtao acpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT yangxuena cpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT subeiting cpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT liujing cpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT zhengli cpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT taopeizhi cpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT linyusen cpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT zouxiaoling cpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT yanghailing cpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT wuwenbin cpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT mengping cpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT zhangtiantuo cpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma AT lihongtao cpgoligodeoxynucleotidesuppressesth2th17inflammationbyinhibitingil33st2signalinginmicefromamodelofadoptivedendriticcelltransferofsmokeinducedasthma |