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Neobaicalein Inhibits Th17 Cell Differentiation Resulting in Recovery of Th17/Treg Ratio through Blocking STAT3 Signaling Activation

Huangqin is the dried root of Scutellaria baicalensis Georgi, which has been widely utilized for heat-clearing (Qingre) and dewetting (Zaoshi), heat-killed (Xiehuo) and detoxifying (Jiedu) in the concept of Traditional Chinese Medicine and is used for treating inflammation and cancer in clinical for...

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Autores principales: Chen, Jian-Yu, Yang, Ying-Jie, Ma, Xue-Qin, Cao, Qi, Wei, Shan-Shan, Pan, Rong-Rong, Nan, Li-Hong, Liu, Yao-Jun, Cao, Yan, Tian, Xiao-Yun, Deng, Shan, Cheng, Zai-Xing, Wang, Can-Jian, Chen, Tao, Zheng, Yan-Fang, Huang, Ming-Qing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9822447/
https://www.ncbi.nlm.nih.gov/pubmed/36615213
http://dx.doi.org/10.3390/molecules28010018
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author Chen, Jian-Yu
Yang, Ying-Jie
Ma, Xue-Qin
Cao, Qi
Wei, Shan-Shan
Pan, Rong-Rong
Nan, Li-Hong
Liu, Yao-Jun
Cao, Yan
Tian, Xiao-Yun
Deng, Shan
Cheng, Zai-Xing
Wang, Can-Jian
Chen, Tao
Zheng, Yan-Fang
Huang, Ming-Qing
author_facet Chen, Jian-Yu
Yang, Ying-Jie
Ma, Xue-Qin
Cao, Qi
Wei, Shan-Shan
Pan, Rong-Rong
Nan, Li-Hong
Liu, Yao-Jun
Cao, Yan
Tian, Xiao-Yun
Deng, Shan
Cheng, Zai-Xing
Wang, Can-Jian
Chen, Tao
Zheng, Yan-Fang
Huang, Ming-Qing
author_sort Chen, Jian-Yu
collection PubMed
description Huangqin is the dried root of Scutellaria baicalensis Georgi, which has been widely utilized for heat-clearing (Qingre) and dewetting (Zaoshi), heat-killed (Xiehuo) and detoxifying (Jiedu) in the concept of Traditional Chinese Medicine and is used for treating inflammation and cancer in clinical formulas. Neobaicalein (NEO) is of flavonoid isolated from Huangqin and has been reported to possess prominent anti-inflammatory effects in published work. Th17/Treg balance shift to Th17 cells is an essential reason for autoimmune inflammatory diseases. However, the role NEO plays in Th17 and Treg and the underlying mechanism has not been elucidated yet. Network pharmacology-based study revealed that NEO predominantly regulated IL-17 signaling pathway. Moreover, our result shown that NEO (3–30 μmol/L) down-regulated Th17 differentiation and cellular supernatant and intracellular IL-17A level and tumor necrosis factor α production in a concentration-dependent manner. The further mechanism research revealed that NEO also specifically inhibited phosphorylation of STAT3(Tyr725) and STAT4 (Y693) without influence on activation of STAT5 and STAT6 in splenocytes. Immunofluorescence results illuminated that NEO effectively blocked STAT3 translocated into nucleus. Interestingly, NEO at appreciated dose could only inhibit Th17 cell differentiation and have no effect on Treg differentiation. The present study revealed that NEO effectively inhibited Th17 cell differentiation through specifically blocking the activation of STAT3 signaling without inactivation of STAT5 and STAT6. Additional inhibitory effect on activation of STAT4 by NEO also suggested the potential for antagonism against Th1 differentiation. All work suggested that NEO may be a potential candidate for immunoregulation and treating autoimmune inflammatory diseases through inhibiting immune cell viability and T cell differentiation.
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spelling pubmed-98224472023-01-07 Neobaicalein Inhibits Th17 Cell Differentiation Resulting in Recovery of Th17/Treg Ratio through Blocking STAT3 Signaling Activation Chen, Jian-Yu Yang, Ying-Jie Ma, Xue-Qin Cao, Qi Wei, Shan-Shan Pan, Rong-Rong Nan, Li-Hong Liu, Yao-Jun Cao, Yan Tian, Xiao-Yun Deng, Shan Cheng, Zai-Xing Wang, Can-Jian Chen, Tao Zheng, Yan-Fang Huang, Ming-Qing Molecules Article Huangqin is the dried root of Scutellaria baicalensis Georgi, which has been widely utilized for heat-clearing (Qingre) and dewetting (Zaoshi), heat-killed (Xiehuo) and detoxifying (Jiedu) in the concept of Traditional Chinese Medicine and is used for treating inflammation and cancer in clinical formulas. Neobaicalein (NEO) is of flavonoid isolated from Huangqin and has been reported to possess prominent anti-inflammatory effects in published work. Th17/Treg balance shift to Th17 cells is an essential reason for autoimmune inflammatory diseases. However, the role NEO plays in Th17 and Treg and the underlying mechanism has not been elucidated yet. Network pharmacology-based study revealed that NEO predominantly regulated IL-17 signaling pathway. Moreover, our result shown that NEO (3–30 μmol/L) down-regulated Th17 differentiation and cellular supernatant and intracellular IL-17A level and tumor necrosis factor α production in a concentration-dependent manner. The further mechanism research revealed that NEO also specifically inhibited phosphorylation of STAT3(Tyr725) and STAT4 (Y693) without influence on activation of STAT5 and STAT6 in splenocytes. Immunofluorescence results illuminated that NEO effectively blocked STAT3 translocated into nucleus. Interestingly, NEO at appreciated dose could only inhibit Th17 cell differentiation and have no effect on Treg differentiation. The present study revealed that NEO effectively inhibited Th17 cell differentiation through specifically blocking the activation of STAT3 signaling without inactivation of STAT5 and STAT6. Additional inhibitory effect on activation of STAT4 by NEO also suggested the potential for antagonism against Th1 differentiation. All work suggested that NEO may be a potential candidate for immunoregulation and treating autoimmune inflammatory diseases through inhibiting immune cell viability and T cell differentiation. MDPI 2022-12-20 /pmc/articles/PMC9822447/ /pubmed/36615213 http://dx.doi.org/10.3390/molecules28010018 Text en © 2022 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
Chen, Jian-Yu
Yang, Ying-Jie
Ma, Xue-Qin
Cao, Qi
Wei, Shan-Shan
Pan, Rong-Rong
Nan, Li-Hong
Liu, Yao-Jun
Cao, Yan
Tian, Xiao-Yun
Deng, Shan
Cheng, Zai-Xing
Wang, Can-Jian
Chen, Tao
Zheng, Yan-Fang
Huang, Ming-Qing
Neobaicalein Inhibits Th17 Cell Differentiation Resulting in Recovery of Th17/Treg Ratio through Blocking STAT3 Signaling Activation
title Neobaicalein Inhibits Th17 Cell Differentiation Resulting in Recovery of Th17/Treg Ratio through Blocking STAT3 Signaling Activation
title_full Neobaicalein Inhibits Th17 Cell Differentiation Resulting in Recovery of Th17/Treg Ratio through Blocking STAT3 Signaling Activation
title_fullStr Neobaicalein Inhibits Th17 Cell Differentiation Resulting in Recovery of Th17/Treg Ratio through Blocking STAT3 Signaling Activation
title_full_unstemmed Neobaicalein Inhibits Th17 Cell Differentiation Resulting in Recovery of Th17/Treg Ratio through Blocking STAT3 Signaling Activation
title_short Neobaicalein Inhibits Th17 Cell Differentiation Resulting in Recovery of Th17/Treg Ratio through Blocking STAT3 Signaling Activation
title_sort neobaicalein inhibits th17 cell differentiation resulting in recovery of th17/treg ratio through blocking stat3 signaling activation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9822447/
https://www.ncbi.nlm.nih.gov/pubmed/36615213
http://dx.doi.org/10.3390/molecules28010018
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