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Biliary damage and liver fibrosis are ameliorated in a novel mouse model lacking l-histidine decarboxylase/histamine signaling

Primary sclerosing cholangitis (PSC) is characterized by biliary damage and fibrosis. Multidrug resistance-2 gene knockout (Mdr2(−/−)) mice and PSC patients have increased histamine (HA) levels (synthesized by l-histidine decarboxylase, HDC) and HA receptor (HR) expression. Cholestatic HDC(−/−) mice...

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Autores principales: Kennedy, Lindsey, Meadows, Vik, Demieville, Jennifer, Hargrove, Laura, Virani, Shohaib, Glaser, Shannon, Zhou, Tianhao, Rinehart, Evan, Jaeger, Victoria, Kyritsi, Konstantina, Pham, Linh, Alpini, Gianfranco, Francis, Heather
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7286781/
https://www.ncbi.nlm.nih.gov/pubmed/32054995
http://dx.doi.org/10.1038/s41374-020-0405-8
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author Kennedy, Lindsey
Meadows, Vik
Demieville, Jennifer
Hargrove, Laura
Virani, Shohaib
Glaser, Shannon
Zhou, Tianhao
Rinehart, Evan
Jaeger, Victoria
Kyritsi, Konstantina
Pham, Linh
Alpini, Gianfranco
Francis, Heather
author_facet Kennedy, Lindsey
Meadows, Vik
Demieville, Jennifer
Hargrove, Laura
Virani, Shohaib
Glaser, Shannon
Zhou, Tianhao
Rinehart, Evan
Jaeger, Victoria
Kyritsi, Konstantina
Pham, Linh
Alpini, Gianfranco
Francis, Heather
author_sort Kennedy, Lindsey
collection PubMed
description Primary sclerosing cholangitis (PSC) is characterized by biliary damage and fibrosis. Multidrug resistance-2 gene knockout (Mdr2(−/−)) mice and PSC patients have increased histamine (HA) levels (synthesized by l-histidine decarboxylase, HDC) and HA receptor (HR) expression. Cholestatic HDC(−/−) mice display ameliorated biliary damage and hepatic fibrosis. The current study evaluated the effects of knockout of HDC(−/−) in Mdr2(−/−) mice (DKO) on biliary damage and hepatic fibrosis. WT, Mdr2(−/−) mice and homozygous DKO mice were used. Selected DKO mice were treated with HA. We evaluated liver damage along with HDC expression and HA serum levels. Changes in ductular reaction were evaluated along with liver fibrosis, inflammation and bile acid signaling pathways. The expression of H1HR/PKC-α/TGF-β1 and H2HR/pERK/VEGF-C was determined. In vitro, cholangiocyte lines were treated with HA with/without H1/H2 inhibitors before measuring: H1/H2HR, TGF-β1 and VEGF-C expression. Knockout of HDC ameliorates hepatic damage, ductular reaction, fibrosis, inflammation, bile acid signaling and H1HR/PKC-α/TGF-β1 and H2HR/pERK/VEGF-C signaling. Reactivation of the HDC/HA axis increased these parameters. In vitro, stimulation with HA increased HR expression and PKC-α, TGF-β1 and VEGF-C expression, which was reduced with HR inhibitors. Our data demonstrate the key role for the HDC/HA axis in the management of PSC progression.
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spelling pubmed-72867812020-08-13 Biliary damage and liver fibrosis are ameliorated in a novel mouse model lacking l-histidine decarboxylase/histamine signaling Kennedy, Lindsey Meadows, Vik Demieville, Jennifer Hargrove, Laura Virani, Shohaib Glaser, Shannon Zhou, Tianhao Rinehart, Evan Jaeger, Victoria Kyritsi, Konstantina Pham, Linh Alpini, Gianfranco Francis, Heather Lab Invest Article Primary sclerosing cholangitis (PSC) is characterized by biliary damage and fibrosis. Multidrug resistance-2 gene knockout (Mdr2(−/−)) mice and PSC patients have increased histamine (HA) levels (synthesized by l-histidine decarboxylase, HDC) and HA receptor (HR) expression. Cholestatic HDC(−/−) mice display ameliorated biliary damage and hepatic fibrosis. The current study evaluated the effects of knockout of HDC(−/−) in Mdr2(−/−) mice (DKO) on biliary damage and hepatic fibrosis. WT, Mdr2(−/−) mice and homozygous DKO mice were used. Selected DKO mice were treated with HA. We evaluated liver damage along with HDC expression and HA serum levels. Changes in ductular reaction were evaluated along with liver fibrosis, inflammation and bile acid signaling pathways. The expression of H1HR/PKC-α/TGF-β1 and H2HR/pERK/VEGF-C was determined. In vitro, cholangiocyte lines were treated with HA with/without H1/H2 inhibitors before measuring: H1/H2HR, TGF-β1 and VEGF-C expression. Knockout of HDC ameliorates hepatic damage, ductular reaction, fibrosis, inflammation, bile acid signaling and H1HR/PKC-α/TGF-β1 and H2HR/pERK/VEGF-C signaling. Reactivation of the HDC/HA axis increased these parameters. In vitro, stimulation with HA increased HR expression and PKC-α, TGF-β1 and VEGF-C expression, which was reduced with HR inhibitors. Our data demonstrate the key role for the HDC/HA axis in the management of PSC progression. 2020-02-13 2020-06 /pmc/articles/PMC7286781/ /pubmed/32054995 http://dx.doi.org/10.1038/s41374-020-0405-8 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Kennedy, Lindsey
Meadows, Vik
Demieville, Jennifer
Hargrove, Laura
Virani, Shohaib
Glaser, Shannon
Zhou, Tianhao
Rinehart, Evan
Jaeger, Victoria
Kyritsi, Konstantina
Pham, Linh
Alpini, Gianfranco
Francis, Heather
Biliary damage and liver fibrosis are ameliorated in a novel mouse model lacking l-histidine decarboxylase/histamine signaling
title Biliary damage and liver fibrosis are ameliorated in a novel mouse model lacking l-histidine decarboxylase/histamine signaling
title_full Biliary damage and liver fibrosis are ameliorated in a novel mouse model lacking l-histidine decarboxylase/histamine signaling
title_fullStr Biliary damage and liver fibrosis are ameliorated in a novel mouse model lacking l-histidine decarboxylase/histamine signaling
title_full_unstemmed Biliary damage and liver fibrosis are ameliorated in a novel mouse model lacking l-histidine decarboxylase/histamine signaling
title_short Biliary damage and liver fibrosis are ameliorated in a novel mouse model lacking l-histidine decarboxylase/histamine signaling
title_sort biliary damage and liver fibrosis are ameliorated in a novel mouse model lacking l-histidine decarboxylase/histamine signaling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7286781/
https://www.ncbi.nlm.nih.gov/pubmed/32054995
http://dx.doi.org/10.1038/s41374-020-0405-8
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