Host-Microbiome Synergistic Control on Sphingolipid Metabolism by Mechanotransduction in Model Arthritis

Chronic inflammatory autoimmune disorders are systemic diseases with increasing incidence and still lack a cure. More recently, attention has been placed in understanding gastrointestinal (GI) dysbiosis and, although important progress has been made in this area, it is currently unclear to what exte...

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Main Authors: Xiaoyuan Zhou, Valentina Devescovi, Yuanhua Liu, Jennifer E. Dent, Christine Nardini
Format: Article
Language:English
Published: MDPI AG 2019-04-01
Series:Biomolecules
Subjects:
Online Access:https://www.mdpi.com/2218-273X/9/4/144
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spelling doaj-36fdbf739e4d42868afe0d8a67e49ae82020-11-25T00:52:34ZengMDPI AGBiomolecules2218-273X2019-04-019414410.3390/biom9040144biom9040144Host-Microbiome Synergistic Control on Sphingolipid Metabolism by Mechanotransduction in Model ArthritisXiaoyuan Zhou0Valentina Devescovi1Yuanhua Liu2Jennifer E. Dent3Christine Nardini4Department of Neurology, University of California, San Francisco, CA 94158, USACAS-MPG Partner Institute for Computational Biology, Shanghai Institutes for Biological Sciences, Shanghai 200031, ChinaCAS-MPG Partner Institute for Computational Biology, Shanghai Institutes for Biological Sciences, Shanghai 200031, ChinaNORSAS Consultancy Ltd., Hoveton, Norwich, Norfolk, NR128QP, UKCAS-MPG Partner Institute for Computational Biology, Shanghai Institutes for Biological Sciences, Shanghai 200031, ChinaChronic inflammatory autoimmune disorders are systemic diseases with increasing incidence and still lack a cure. More recently, attention has been placed in understanding gastrointestinal (GI) dysbiosis and, although important progress has been made in this area, it is currently unclear to what extent microbiome manipulation can be used in the treatment of autoimmune disorders. Via the use of appropriate models, rheumatoid arthritis (RA), a well-known exemplar of such pathologies, can be exploited to shed light on the currently overlooked effects of existing therapies on the GI microbiome. In this direction, we here explore the crosstalk between the GI microbiome and the host immunity in model arthritis (collagen induced arthritis, CIA). By exploiting <i>omics</i> from samples of limited invasiveness (blood and stools), we assess the host-microbiome responses to standard therapy (methotrexate, MTX) combined with mechanical subcutaneous stimulation (MS) and to mechanical stimulation alone. When MS is involved, results reveal the sphingolipid metabolism as the trait d&#8217;union among known hallmarks of (model) RA, namely: Imbalance in the S1P-S1PR1 axis, expansion of <i>Prevotella sp.</i>, and invariant Natural Killer T (iNKT)-penia, thus offering the base of a rationale to mechanically modulate this pathway as a therapeutic target in RA.https://www.mdpi.com/2218-273X/9/4/144rheumatoid arthritishost-microbiome interactionsphingolipids metabolism<i>Prevotella sp.</i>iNKT
collection DOAJ
language English
format Article
sources DOAJ
author Xiaoyuan Zhou
Valentina Devescovi
Yuanhua Liu
Jennifer E. Dent
Christine Nardini
spellingShingle Xiaoyuan Zhou
Valentina Devescovi
Yuanhua Liu
Jennifer E. Dent
Christine Nardini
Host-Microbiome Synergistic Control on Sphingolipid Metabolism by Mechanotransduction in Model Arthritis
Biomolecules
rheumatoid arthritis
host-microbiome interaction
sphingolipids metabolism
<i>Prevotella sp.</i>
iNKT
author_facet Xiaoyuan Zhou
Valentina Devescovi
Yuanhua Liu
Jennifer E. Dent
Christine Nardini
author_sort Xiaoyuan Zhou
title Host-Microbiome Synergistic Control on Sphingolipid Metabolism by Mechanotransduction in Model Arthritis
title_short Host-Microbiome Synergistic Control on Sphingolipid Metabolism by Mechanotransduction in Model Arthritis
title_full Host-Microbiome Synergistic Control on Sphingolipid Metabolism by Mechanotransduction in Model Arthritis
title_fullStr Host-Microbiome Synergistic Control on Sphingolipid Metabolism by Mechanotransduction in Model Arthritis
title_full_unstemmed Host-Microbiome Synergistic Control on Sphingolipid Metabolism by Mechanotransduction in Model Arthritis
title_sort host-microbiome synergistic control on sphingolipid metabolism by mechanotransduction in model arthritis
publisher MDPI AG
series Biomolecules
issn 2218-273X
publishDate 2019-04-01
description Chronic inflammatory autoimmune disorders are systemic diseases with increasing incidence and still lack a cure. More recently, attention has been placed in understanding gastrointestinal (GI) dysbiosis and, although important progress has been made in this area, it is currently unclear to what extent microbiome manipulation can be used in the treatment of autoimmune disorders. Via the use of appropriate models, rheumatoid arthritis (RA), a well-known exemplar of such pathologies, can be exploited to shed light on the currently overlooked effects of existing therapies on the GI microbiome. In this direction, we here explore the crosstalk between the GI microbiome and the host immunity in model arthritis (collagen induced arthritis, CIA). By exploiting <i>omics</i> from samples of limited invasiveness (blood and stools), we assess the host-microbiome responses to standard therapy (methotrexate, MTX) combined with mechanical subcutaneous stimulation (MS) and to mechanical stimulation alone. When MS is involved, results reveal the sphingolipid metabolism as the trait d&#8217;union among known hallmarks of (model) RA, namely: Imbalance in the S1P-S1PR1 axis, expansion of <i>Prevotella sp.</i>, and invariant Natural Killer T (iNKT)-penia, thus offering the base of a rationale to mechanically modulate this pathway as a therapeutic target in RA.
topic rheumatoid arthritis
host-microbiome interaction
sphingolipids metabolism
<i>Prevotella sp.</i>
iNKT
url https://www.mdpi.com/2218-273X/9/4/144
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