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F4/80(+) Kupffer Cell-Derived Oncostatin M Sustains the Progression Phase of Liver Regeneration through Inhibition of TGF-β2 Pathway

The role of Kupffer cells (KCs) in liver regeneration is complicated and controversial. To investigate the distinct role of F4/80(+) KCs at the different stages of the regeneration process, two-thirds partial hepatectomy (PHx) was performed in mice to induce physiological liver regeneration. In pre-...

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Autores principales: Lu, Qingjun, Shen, Hao, Yu, Han, Fu, Jing, Dong, Hui, Chen, Yao, Wang, Hongyang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8069260/
https://www.ncbi.nlm.nih.gov/pubmed/33924385
http://dx.doi.org/10.3390/molecules26082231
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author Lu, Qingjun
Shen, Hao
Yu, Han
Fu, Jing
Dong, Hui
Chen, Yao
Wang, Hongyang
author_facet Lu, Qingjun
Shen, Hao
Yu, Han
Fu, Jing
Dong, Hui
Chen, Yao
Wang, Hongyang
author_sort Lu, Qingjun
collection PubMed
description The role of Kupffer cells (KCs) in liver regeneration is complicated and controversial. To investigate the distinct role of F4/80(+) KCs at the different stages of the regeneration process, two-thirds partial hepatectomy (PHx) was performed in mice to induce physiological liver regeneration. In pre- or post-PHx, the clearance of KCs by intraperitoneal injection of the anti-F4/80 antibody (α-F4/80) was performed to study the distinct role of F4/80(+) KCs during the regenerative process. In RNA sequencing of isolated F4/80(+) KCs, the initiation phase was compared with the progression phase. Immunohistochemistry and immunofluorescence staining of Ki67, HNF-4α, CD-31, and F4/80 and Western blot of the TGF-β2 pathway were performed. Depletion of F4/80(+) KCs in pre-PHx delayed the peak of hepatocyte proliferation from 48 h to 120 h, whereas depletion in post-PHx unexpectedly led to persistent inhibition of hepatocyte proliferation, indicating the distinct role of F4/80(+) KCs in the initiation and progression phases of liver regeneration. F4/80(+) KC depletion in post-PHx could significantly increase TGF-β2 serum levels, while TGF-βRI partially rescued the impaired proliferation of hepatocytes. Additionally, F4/80(+) KC depletion in post-PHx significantly lowered the expression of oncostatin M (OSM), a key downstream mediator of interleukin-6, which is required for hepatocyte proliferation during liver regeneration. In vivo, recombinant OSM (r-OSM) treatment alleviated the inhibitory effect of α-F4/80 on the regenerative progression. Collectively, F4/80(+) KCs release OSM to inhibit TGF-β2 activation, sustaining hepatocyte proliferation by releasing a proliferative brake.
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spelling pubmed-80692602021-04-26 F4/80(+) Kupffer Cell-Derived Oncostatin M Sustains the Progression Phase of Liver Regeneration through Inhibition of TGF-β2 Pathway Lu, Qingjun Shen, Hao Yu, Han Fu, Jing Dong, Hui Chen, Yao Wang, Hongyang Molecules Article The role of Kupffer cells (KCs) in liver regeneration is complicated and controversial. To investigate the distinct role of F4/80(+) KCs at the different stages of the regeneration process, two-thirds partial hepatectomy (PHx) was performed in mice to induce physiological liver regeneration. In pre- or post-PHx, the clearance of KCs by intraperitoneal injection of the anti-F4/80 antibody (α-F4/80) was performed to study the distinct role of F4/80(+) KCs during the regenerative process. In RNA sequencing of isolated F4/80(+) KCs, the initiation phase was compared with the progression phase. Immunohistochemistry and immunofluorescence staining of Ki67, HNF-4α, CD-31, and F4/80 and Western blot of the TGF-β2 pathway were performed. Depletion of F4/80(+) KCs in pre-PHx delayed the peak of hepatocyte proliferation from 48 h to 120 h, whereas depletion in post-PHx unexpectedly led to persistent inhibition of hepatocyte proliferation, indicating the distinct role of F4/80(+) KCs in the initiation and progression phases of liver regeneration. F4/80(+) KC depletion in post-PHx could significantly increase TGF-β2 serum levels, while TGF-βRI partially rescued the impaired proliferation of hepatocytes. Additionally, F4/80(+) KC depletion in post-PHx significantly lowered the expression of oncostatin M (OSM), a key downstream mediator of interleukin-6, which is required for hepatocyte proliferation during liver regeneration. In vivo, recombinant OSM (r-OSM) treatment alleviated the inhibitory effect of α-F4/80 on the regenerative progression. Collectively, F4/80(+) KCs release OSM to inhibit TGF-β2 activation, sustaining hepatocyte proliferation by releasing a proliferative brake. MDPI 2021-04-13 /pmc/articles/PMC8069260/ /pubmed/33924385 http://dx.doi.org/10.3390/molecules26082231 Text en © 2021 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
Lu, Qingjun
Shen, Hao
Yu, Han
Fu, Jing
Dong, Hui
Chen, Yao
Wang, Hongyang
F4/80(+) Kupffer Cell-Derived Oncostatin M Sustains the Progression Phase of Liver Regeneration through Inhibition of TGF-β2 Pathway
title F4/80(+) Kupffer Cell-Derived Oncostatin M Sustains the Progression Phase of Liver Regeneration through Inhibition of TGF-β2 Pathway
title_full F4/80(+) Kupffer Cell-Derived Oncostatin M Sustains the Progression Phase of Liver Regeneration through Inhibition of TGF-β2 Pathway
title_fullStr F4/80(+) Kupffer Cell-Derived Oncostatin M Sustains the Progression Phase of Liver Regeneration through Inhibition of TGF-β2 Pathway
title_full_unstemmed F4/80(+) Kupffer Cell-Derived Oncostatin M Sustains the Progression Phase of Liver Regeneration through Inhibition of TGF-β2 Pathway
title_short F4/80(+) Kupffer Cell-Derived Oncostatin M Sustains the Progression Phase of Liver Regeneration through Inhibition of TGF-β2 Pathway
title_sort f4/80(+) kupffer cell-derived oncostatin m sustains the progression phase of liver regeneration through inhibition of tgf-β2 pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8069260/
https://www.ncbi.nlm.nih.gov/pubmed/33924385
http://dx.doi.org/10.3390/molecules26082231
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