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Functional secretome analysis reveals Annexin-A1 as important paracrine factor derived from fetal mesenchymal stem cells in hepatic regeneration

BACKGROUND: Human mesenchymal stem/stromal cells (MSCs) and their secreted molecules exert beneficial effects in injured tissues by promoting tissue regeneration and angiogenesis and by inhibiting inflammation and fibrosis. We have previously demonstrated that the therapeutic activity of fetal MSCs...

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Autores principales: Zagoura, Dimitra, Trohatou, Ourania, Makridakis, Manousos, Kollia, Antonia, Kokla, Nikolitsa, Mokou, Marika, Psaraki, Adriana, Eliopoulos, Aristides G., Vlahou, Antonia, Roubelakis, Maria G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6642415/
https://www.ncbi.nlm.nih.gov/pubmed/31303498
http://dx.doi.org/10.1016/j.ebiom.2019.07.009
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author Zagoura, Dimitra
Trohatou, Ourania
Makridakis, Manousos
Kollia, Antonia
Kokla, Nikolitsa
Mokou, Marika
Psaraki, Adriana
Eliopoulos, Aristides G.
Vlahou, Antonia
Roubelakis, Maria G.
author_facet Zagoura, Dimitra
Trohatou, Ourania
Makridakis, Manousos
Kollia, Antonia
Kokla, Nikolitsa
Mokou, Marika
Psaraki, Adriana
Eliopoulos, Aristides G.
Vlahou, Antonia
Roubelakis, Maria G.
author_sort Zagoura, Dimitra
collection PubMed
description BACKGROUND: Human mesenchymal stem/stromal cells (MSCs) and their secreted molecules exert beneficial effects in injured tissues by promoting tissue regeneration and angiogenesis and by inhibiting inflammation and fibrosis. We have previously demonstrated that the therapeutic activity of fetal MSCs derived from amniotic fluid (AF-MSCs) and their hepatic progenitor-like cells (HPL) is mediated by paracrine effects in a mouse model of acute hepatic failure (AHF). METHODS: Herein, we have combined proteomic profiling of the AF-MSCs and HPL cell secretome with ex vivo and in vivo functional studies to identify specific soluble factors, which underpin tissue regeneration in AHF. FINDINGS: The anti-inflammatory molecule Annexin-A1 (ANXA1) was detected at high levels in both AF-MSC and HPL cell secretome. Further functional analyses revealed that the shRNA-mediated knock-down of ANXA1 in MSCs (shANXA1-MSCs) decreased their proliferative, clonogenic and migratory potential, as well as their ability to differentiate into HPL cells. Liver progenitors (oval cells) from AHF mice displayed reduced proliferation when cultured ex vivo in the presence of conditioned media from shANXA1-MSCs compared to control MSCs secretome. Intra-hepatic delivery of conditioned media from control MSCs but not shANXA1-MSCs reduced liver damage and circulating levels of pro-inflammatory cytokines in AHF. INTERPRETATION: Collectively, our study uncovers secreted Annexin-A1 as a novel effector of MSCs in liver regeneration and further underscores the potential of cell-free therapeutic strategies for liver diseases. FUND: Fondation Santé, GILEAD Asklipeios Grant, Fellowships of Excellence – Siemens, IKY, Reinforcement of Postdoctoral Researchers, IKY.
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spelling pubmed-66424152019-07-23 Functional secretome analysis reveals Annexin-A1 as important paracrine factor derived from fetal mesenchymal stem cells in hepatic regeneration Zagoura, Dimitra Trohatou, Ourania Makridakis, Manousos Kollia, Antonia Kokla, Nikolitsa Mokou, Marika Psaraki, Adriana Eliopoulos, Aristides G. Vlahou, Antonia Roubelakis, Maria G. EBioMedicine Research paper BACKGROUND: Human mesenchymal stem/stromal cells (MSCs) and their secreted molecules exert beneficial effects in injured tissues by promoting tissue regeneration and angiogenesis and by inhibiting inflammation and fibrosis. We have previously demonstrated that the therapeutic activity of fetal MSCs derived from amniotic fluid (AF-MSCs) and their hepatic progenitor-like cells (HPL) is mediated by paracrine effects in a mouse model of acute hepatic failure (AHF). METHODS: Herein, we have combined proteomic profiling of the AF-MSCs and HPL cell secretome with ex vivo and in vivo functional studies to identify specific soluble factors, which underpin tissue regeneration in AHF. FINDINGS: The anti-inflammatory molecule Annexin-A1 (ANXA1) was detected at high levels in both AF-MSC and HPL cell secretome. Further functional analyses revealed that the shRNA-mediated knock-down of ANXA1 in MSCs (shANXA1-MSCs) decreased their proliferative, clonogenic and migratory potential, as well as their ability to differentiate into HPL cells. Liver progenitors (oval cells) from AHF mice displayed reduced proliferation when cultured ex vivo in the presence of conditioned media from shANXA1-MSCs compared to control MSCs secretome. Intra-hepatic delivery of conditioned media from control MSCs but not shANXA1-MSCs reduced liver damage and circulating levels of pro-inflammatory cytokines in AHF. INTERPRETATION: Collectively, our study uncovers secreted Annexin-A1 as a novel effector of MSCs in liver regeneration and further underscores the potential of cell-free therapeutic strategies for liver diseases. FUND: Fondation Santé, GILEAD Asklipeios Grant, Fellowships of Excellence – Siemens, IKY, Reinforcement of Postdoctoral Researchers, IKY. Elsevier 2019-07-12 /pmc/articles/PMC6642415/ /pubmed/31303498 http://dx.doi.org/10.1016/j.ebiom.2019.07.009 Text en © 2019 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research paper
Zagoura, Dimitra
Trohatou, Ourania
Makridakis, Manousos
Kollia, Antonia
Kokla, Nikolitsa
Mokou, Marika
Psaraki, Adriana
Eliopoulos, Aristides G.
Vlahou, Antonia
Roubelakis, Maria G.
Functional secretome analysis reveals Annexin-A1 as important paracrine factor derived from fetal mesenchymal stem cells in hepatic regeneration
title Functional secretome analysis reveals Annexin-A1 as important paracrine factor derived from fetal mesenchymal stem cells in hepatic regeneration
title_full Functional secretome analysis reveals Annexin-A1 as important paracrine factor derived from fetal mesenchymal stem cells in hepatic regeneration
title_fullStr Functional secretome analysis reveals Annexin-A1 as important paracrine factor derived from fetal mesenchymal stem cells in hepatic regeneration
title_full_unstemmed Functional secretome analysis reveals Annexin-A1 as important paracrine factor derived from fetal mesenchymal stem cells in hepatic regeneration
title_short Functional secretome analysis reveals Annexin-A1 as important paracrine factor derived from fetal mesenchymal stem cells in hepatic regeneration
title_sort functional secretome analysis reveals annexin-a1 as important paracrine factor derived from fetal mesenchymal stem cells in hepatic regeneration
topic Research paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6642415/
https://www.ncbi.nlm.nih.gov/pubmed/31303498
http://dx.doi.org/10.1016/j.ebiom.2019.07.009
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