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Propranolol Suppresses the T-Helper Cell Depletion-Related Immune Dysfunction in Cirrhotic Mice

Bacterial translocation (BT) and splenomegaly contribute to cirrhosis-associated immune dysfunction (CAID) including T cell depletion, infection, and chronic inflammation. β-blockers have been reported to decrease BT and improve splenomegaly. This study explores the modulation of β1 and β2 adrenergi...

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Autores principales: Tsai, Hung-Cheng, Hsu, Chien-Fu, Huang, Chia-Chang, Huang, Shiang-Fen, Li, Tzu-Hao, Yang, Ying-Ying, Lin, Ming-Wei, Lee, Tzung-Yan, Liu, Chih-Wei, Huang, Yi-Hsiang, Hou, Ming-Chih, Lin, Han-Chieh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7140430/
https://www.ncbi.nlm.nih.gov/pubmed/32138352
http://dx.doi.org/10.3390/cells9030604
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author Tsai, Hung-Cheng
Hsu, Chien-Fu
Huang, Chia-Chang
Huang, Shiang-Fen
Li, Tzu-Hao
Yang, Ying-Ying
Lin, Ming-Wei
Lee, Tzung-Yan
Liu, Chih-Wei
Huang, Yi-Hsiang
Hou, Ming-Chih
Lin, Han-Chieh
author_facet Tsai, Hung-Cheng
Hsu, Chien-Fu
Huang, Chia-Chang
Huang, Shiang-Fen
Li, Tzu-Hao
Yang, Ying-Ying
Lin, Ming-Wei
Lee, Tzung-Yan
Liu, Chih-Wei
Huang, Yi-Hsiang
Hou, Ming-Chih
Lin, Han-Chieh
author_sort Tsai, Hung-Cheng
collection PubMed
description Bacterial translocation (BT) and splenomegaly contribute to cirrhosis-associated immune dysfunction (CAID) including T cell depletion, infection, and chronic inflammation. β-blockers have been reported to decrease BT and improve splenomegaly. This study explores the modulation of β1 and β2 adrenergic receptors (ADRB1/ADRB2) by propranolol treatment on the peripheral and splenic immune dysfunction of cirrhotic mice. In vivo experiments were performed in bile duct ligation (BDL)- and thioacetamide (TAA)-cirrhotic mice receiving two weeks of propranolol treatment. Acute effects of propranolol were evaluated in T-helper (Th) cells isolated from spleen of cirrhotic mice. Over-expression of β1 and β2 adrenergic receptors (ADRB1/ADRB2) in spleen and T lymphocytes was associated with high peripheral/splenic lipopolysaccharide binding protein levels. Moreover, a decrease in Th cells percentage, increase in Treg subset, and cytokines were accompanied by increased apoptosis, proliferation, and reduced white pulp hyperplasia in cirrhotic mice, which were counteracted by propranolol treatment. The Th-cell depletion, systemic inflammation, BT, and infection were improved by chronic propranolol treatment. Acute propranolol treatment inhibited apoptosis, Treg-conditioned differentiation, and promoted Th2-conditioned differentiation through ADRB-cyclic adenosine monophosphate (cAMP) signals in cirrhotic mice. In conclusion, suppression of ADRB1 and ADRB2 expressions in spleen and splenic T lymphocytes by acute and chronic propranolol treatment ameliorate systemic and splenic immune dysfunction in cirrhosis.
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spelling pubmed-71404302020-04-13 Propranolol Suppresses the T-Helper Cell Depletion-Related Immune Dysfunction in Cirrhotic Mice Tsai, Hung-Cheng Hsu, Chien-Fu Huang, Chia-Chang Huang, Shiang-Fen Li, Tzu-Hao Yang, Ying-Ying Lin, Ming-Wei Lee, Tzung-Yan Liu, Chih-Wei Huang, Yi-Hsiang Hou, Ming-Chih Lin, Han-Chieh Cells Article Bacterial translocation (BT) and splenomegaly contribute to cirrhosis-associated immune dysfunction (CAID) including T cell depletion, infection, and chronic inflammation. β-blockers have been reported to decrease BT and improve splenomegaly. This study explores the modulation of β1 and β2 adrenergic receptors (ADRB1/ADRB2) by propranolol treatment on the peripheral and splenic immune dysfunction of cirrhotic mice. In vivo experiments were performed in bile duct ligation (BDL)- and thioacetamide (TAA)-cirrhotic mice receiving two weeks of propranolol treatment. Acute effects of propranolol were evaluated in T-helper (Th) cells isolated from spleen of cirrhotic mice. Over-expression of β1 and β2 adrenergic receptors (ADRB1/ADRB2) in spleen and T lymphocytes was associated with high peripheral/splenic lipopolysaccharide binding protein levels. Moreover, a decrease in Th cells percentage, increase in Treg subset, and cytokines were accompanied by increased apoptosis, proliferation, and reduced white pulp hyperplasia in cirrhotic mice, which were counteracted by propranolol treatment. The Th-cell depletion, systemic inflammation, BT, and infection were improved by chronic propranolol treatment. Acute propranolol treatment inhibited apoptosis, Treg-conditioned differentiation, and promoted Th2-conditioned differentiation through ADRB-cyclic adenosine monophosphate (cAMP) signals in cirrhotic mice. In conclusion, suppression of ADRB1 and ADRB2 expressions in spleen and splenic T lymphocytes by acute and chronic propranolol treatment ameliorate systemic and splenic immune dysfunction in cirrhosis. MDPI 2020-03-03 /pmc/articles/PMC7140430/ /pubmed/32138352 http://dx.doi.org/10.3390/cells9030604 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tsai, Hung-Cheng
Hsu, Chien-Fu
Huang, Chia-Chang
Huang, Shiang-Fen
Li, Tzu-Hao
Yang, Ying-Ying
Lin, Ming-Wei
Lee, Tzung-Yan
Liu, Chih-Wei
Huang, Yi-Hsiang
Hou, Ming-Chih
Lin, Han-Chieh
Propranolol Suppresses the T-Helper Cell Depletion-Related Immune Dysfunction in Cirrhotic Mice
title Propranolol Suppresses the T-Helper Cell Depletion-Related Immune Dysfunction in Cirrhotic Mice
title_full Propranolol Suppresses the T-Helper Cell Depletion-Related Immune Dysfunction in Cirrhotic Mice
title_fullStr Propranolol Suppresses the T-Helper Cell Depletion-Related Immune Dysfunction in Cirrhotic Mice
title_full_unstemmed Propranolol Suppresses the T-Helper Cell Depletion-Related Immune Dysfunction in Cirrhotic Mice
title_short Propranolol Suppresses the T-Helper Cell Depletion-Related Immune Dysfunction in Cirrhotic Mice
title_sort propranolol suppresses the t-helper cell depletion-related immune dysfunction in cirrhotic mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7140430/
https://www.ncbi.nlm.nih.gov/pubmed/32138352
http://dx.doi.org/10.3390/cells9030604
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