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The ability to suppress macrophage-mediated inflammation in orbital fat stem cells is controlled by miR-671-5p

INTRODUCTION: Our previous works demonstrated that systemic orbital fat-derived stem cell (OFSC) transplantation was effective in ameliorating lipopolysaccharide (LPS)-induced extensive acute lung injury (ALI) in vivo mainly through paracrine regulation of macrophage-mediated cytokine-storm. In this...

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Autores principales: Lien, Gi-Shih, Liu, Jen-Fang, Chien, Ming-Hsien, Hsu, Wei-Tse, Chang, Tzu-Hao, Ku, Chia-Chi, Ji, Andrea Tung-Qian, Tan, Peng, Hsieh, Ting-Lieh, Lee, Liang-Ming, Ho, Jennifer H
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4247678/
https://www.ncbi.nlm.nih.gov/pubmed/25124290
http://dx.doi.org/10.1186/scrt486
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author Lien, Gi-Shih
Liu, Jen-Fang
Chien, Ming-Hsien
Hsu, Wei-Tse
Chang, Tzu-Hao
Ku, Chia-Chi
Ji, Andrea Tung-Qian
Tan, Peng
Hsieh, Ting-Lieh
Lee, Liang-Ming
Ho, Jennifer H
author_facet Lien, Gi-Shih
Liu, Jen-Fang
Chien, Ming-Hsien
Hsu, Wei-Tse
Chang, Tzu-Hao
Ku, Chia-Chi
Ji, Andrea Tung-Qian
Tan, Peng
Hsieh, Ting-Lieh
Lee, Liang-Ming
Ho, Jennifer H
author_sort Lien, Gi-Shih
collection PubMed
description INTRODUCTION: Our previous works demonstrated that systemic orbital fat-derived stem cell (OFSC) transplantation was effective in ameliorating lipopolysaccharide (LPS)-induced extensive acute lung injury (ALI) in vivo mainly through paracrine regulation of macrophage-mediated cytokine-storm. In this study, we explore the molecular mechanism(s) of OFSCs regulating macrophage activity in a cytokine-inducible fashion. METHODS: LPS (100 ng/ml)-activated macrophages were treated by conditioned medium from OFSCs (OFSCs-CM) or non-contact cultured with OFSCs for 6 hours. The potency of OFSCs on macrophage proliferation and pro-inflammation ability were determined. Expression levels of pro-inflammatory cytokines in macrophages, inducible immuno-modulatory factors in OFSCs, were investigated. Deep sequencing analysis as well as interaction between microRNA (miRNA) and genes of immuno-modulators in OFSCs induced by activated macrophages was predicted by miRTar. Transfection of miRNA inhibitor into OFSCs was performed. Real-time RT-PCR and transplantation of OFSCs into mice with LPS-induced ALI confirmed the in vitro and in vivo mechanism. RESULTS: The paracrine effect of OFSCs on inhibition of macrophage pro-inflammatory cytokine release was more potent than induction of macrophage G0/G1 cell cycle arrest. OFSCs-CM suppressed LPS-induced inducible nitric oxide synthetase and the pro-inflammatory cytokines such as tumor necrosis factor-alpha (TNF-α), interleukin (IL)-1 alpha, and IL-1 beta expression in macrophages. Under non-contact culture, LPS-activated macrophages effectively triggered the expression of soluble immuno-modulating factors in OFSCs, i.e., IL-10, IL-1 receptor antagonist (IL-1 RA), indoleamine 2,3-dioxygenase, and soluble TNF receptor type II (sTNF RII). Under miRTar prediction, miR-671-5p was identified as a critical microRNA in regulation of multiple immune-modulating factors in OFSCs response to macrophages. The baseline level of miR-671-5p was high in OFSCs, and down-regulation of miR-671-5p upon co-culture with activated macrophages was observed. MiR-671-5p inhibitor transfection into OFSCs selectively enhanced the IL-1 RA and sTNF RII expressions. In addition, inhibition of miR-671-5p in OFSCs enhanced the anti-inflammatory ability against LPS-induced ALI. CONCLUSION: The paracrine effect of OFSCs inhibits the pro-inflammatory ability and proliferation of macrophages. The immune-modulation capacity of OFSCs can be triggered by activated macrophages, and down-regulation of miR-671-5p enhances OFSC immuno-modulation ability by up-regulating IL-1 RA and sTNF RII expression.
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spelling pubmed-42476782014-11-30 The ability to suppress macrophage-mediated inflammation in orbital fat stem cells is controlled by miR-671-5p Lien, Gi-Shih Liu, Jen-Fang Chien, Ming-Hsien Hsu, Wei-Tse Chang, Tzu-Hao Ku, Chia-Chi Ji, Andrea Tung-Qian Tan, Peng Hsieh, Ting-Lieh Lee, Liang-Ming Ho, Jennifer H Stem Cell Res Ther Research INTRODUCTION: Our previous works demonstrated that systemic orbital fat-derived stem cell (OFSC) transplantation was effective in ameliorating lipopolysaccharide (LPS)-induced extensive acute lung injury (ALI) in vivo mainly through paracrine regulation of macrophage-mediated cytokine-storm. In this study, we explore the molecular mechanism(s) of OFSCs regulating macrophage activity in a cytokine-inducible fashion. METHODS: LPS (100 ng/ml)-activated macrophages were treated by conditioned medium from OFSCs (OFSCs-CM) or non-contact cultured with OFSCs for 6 hours. The potency of OFSCs on macrophage proliferation and pro-inflammation ability were determined. Expression levels of pro-inflammatory cytokines in macrophages, inducible immuno-modulatory factors in OFSCs, were investigated. Deep sequencing analysis as well as interaction between microRNA (miRNA) and genes of immuno-modulators in OFSCs induced by activated macrophages was predicted by miRTar. Transfection of miRNA inhibitor into OFSCs was performed. Real-time RT-PCR and transplantation of OFSCs into mice with LPS-induced ALI confirmed the in vitro and in vivo mechanism. RESULTS: The paracrine effect of OFSCs on inhibition of macrophage pro-inflammatory cytokine release was more potent than induction of macrophage G0/G1 cell cycle arrest. OFSCs-CM suppressed LPS-induced inducible nitric oxide synthetase and the pro-inflammatory cytokines such as tumor necrosis factor-alpha (TNF-α), interleukin (IL)-1 alpha, and IL-1 beta expression in macrophages. Under non-contact culture, LPS-activated macrophages effectively triggered the expression of soluble immuno-modulating factors in OFSCs, i.e., IL-10, IL-1 receptor antagonist (IL-1 RA), indoleamine 2,3-dioxygenase, and soluble TNF receptor type II (sTNF RII). Under miRTar prediction, miR-671-5p was identified as a critical microRNA in regulation of multiple immune-modulating factors in OFSCs response to macrophages. The baseline level of miR-671-5p was high in OFSCs, and down-regulation of miR-671-5p upon co-culture with activated macrophages was observed. MiR-671-5p inhibitor transfection into OFSCs selectively enhanced the IL-1 RA and sTNF RII expressions. In addition, inhibition of miR-671-5p in OFSCs enhanced the anti-inflammatory ability against LPS-induced ALI. CONCLUSION: The paracrine effect of OFSCs inhibits the pro-inflammatory ability and proliferation of macrophages. The immune-modulation capacity of OFSCs can be triggered by activated macrophages, and down-regulation of miR-671-5p enhances OFSC immuno-modulation ability by up-regulating IL-1 RA and sTNF RII expression. BioMed Central 2014-08-13 /pmc/articles/PMC4247678/ /pubmed/25124290 http://dx.doi.org/10.1186/scrt486 Text en © Lien et al.; licensee BioMed Central Ltd. 2014 This article is published under license to BioMed Central Ltd. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Lien, Gi-Shih
Liu, Jen-Fang
Chien, Ming-Hsien
Hsu, Wei-Tse
Chang, Tzu-Hao
Ku, Chia-Chi
Ji, Andrea Tung-Qian
Tan, Peng
Hsieh, Ting-Lieh
Lee, Liang-Ming
Ho, Jennifer H
The ability to suppress macrophage-mediated inflammation in orbital fat stem cells is controlled by miR-671-5p
title The ability to suppress macrophage-mediated inflammation in orbital fat stem cells is controlled by miR-671-5p
title_full The ability to suppress macrophage-mediated inflammation in orbital fat stem cells is controlled by miR-671-5p
title_fullStr The ability to suppress macrophage-mediated inflammation in orbital fat stem cells is controlled by miR-671-5p
title_full_unstemmed The ability to suppress macrophage-mediated inflammation in orbital fat stem cells is controlled by miR-671-5p
title_short The ability to suppress macrophage-mediated inflammation in orbital fat stem cells is controlled by miR-671-5p
title_sort ability to suppress macrophage-mediated inflammation in orbital fat stem cells is controlled by mir-671-5p
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4247678/
https://www.ncbi.nlm.nih.gov/pubmed/25124290
http://dx.doi.org/10.1186/scrt486
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