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Body Mass Index in Multiple Sclerosis modulates ceramide-induced DNA methylation and disease course

BACKGROUND: Multiple Sclerosis (MS) results from genetic predisposition and environmental variables, including elevated Body Mass Index (BMI) in early life. This study addresses the effect of BMI on the epigenome of monocytes and disease course in MS. METHODS: Fifty-four therapy-naive Relapsing Remi...

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Autores principales: Castro, Kamilah, Ntranos, Achilles, Amatruda, Mario, Petracca, Maria, Kosa, Peter, Chen, Emily Y., Morstein, Johannes, Trauner, Dirk, Watson, Corey T., Kiebish, Michael A., Bielekova, Bibiana, Inglese, Matilde, Katz Sand, Ilana, Casaccia, Patrizia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6557766/
https://www.ncbi.nlm.nih.gov/pubmed/30981648
http://dx.doi.org/10.1016/j.ebiom.2019.03.087
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author Castro, Kamilah
Ntranos, Achilles
Amatruda, Mario
Petracca, Maria
Kosa, Peter
Chen, Emily Y.
Morstein, Johannes
Trauner, Dirk
Watson, Corey T.
Kiebish, Michael A.
Bielekova, Bibiana
Inglese, Matilde
Katz Sand, Ilana
Casaccia, Patrizia
author_facet Castro, Kamilah
Ntranos, Achilles
Amatruda, Mario
Petracca, Maria
Kosa, Peter
Chen, Emily Y.
Morstein, Johannes
Trauner, Dirk
Watson, Corey T.
Kiebish, Michael A.
Bielekova, Bibiana
Inglese, Matilde
Katz Sand, Ilana
Casaccia, Patrizia
author_sort Castro, Kamilah
collection PubMed
description BACKGROUND: Multiple Sclerosis (MS) results from genetic predisposition and environmental variables, including elevated Body Mass Index (BMI) in early life. This study addresses the effect of BMI on the epigenome of monocytes and disease course in MS. METHODS: Fifty-four therapy-naive Relapsing Remitting (RR) MS patients with high and normal BMI received clinical and MRI evaluation. Blood samples were immunophenotyped, and processed for unbiased plasma lipidomic profiling and genome-wide DNA methylation analysis of circulating monocytes. The main findings at baseline were validated in an independent cohort of 91 therapy-naïve RRMS patients. Disease course was evaluated by a two-year longitudinal follow up and mechanistic hypotheses tested in human cell cultures and in animal models of MS. FINDINGS: Higher monocytic counts and plasma ceramides, and hypermethylation of genes involved in negative regulation of cell proliferation were detected in the high BMI group of MS patients compared to normal BMI. Ceramide treatment of monocytic cell cultures increased proliferation in a dose-dependent manner and was prevented by DNA methylation inhibitors. The high BMI group of MS patients showed a negative correlation between monocytic counts and brain volume. Those subjects at a two-year follow-up showed increased T1 lesion load, increased disease activity, and worsened clinical disability. Lastly, the relationship between body weight, monocytic infiltration, DNA methylation and disease course was validated in mouse models of MS. INTERPRETATION: High BMI negatively impacts disease course in Multiple Sclerosis by modulating monocyte cell number through ceramide-induced DNA methylation of anti-proliferative genes. FUND: This work was supported by funds from the Friedman Brain Institute, NIH, and Multiple Sclerosis Society.
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spelling pubmed-65577662019-06-13 Body Mass Index in Multiple Sclerosis modulates ceramide-induced DNA methylation and disease course Castro, Kamilah Ntranos, Achilles Amatruda, Mario Petracca, Maria Kosa, Peter Chen, Emily Y. Morstein, Johannes Trauner, Dirk Watson, Corey T. Kiebish, Michael A. Bielekova, Bibiana Inglese, Matilde Katz Sand, Ilana Casaccia, Patrizia EBioMedicine Research paper BACKGROUND: Multiple Sclerosis (MS) results from genetic predisposition and environmental variables, including elevated Body Mass Index (BMI) in early life. This study addresses the effect of BMI on the epigenome of monocytes and disease course in MS. METHODS: Fifty-four therapy-naive Relapsing Remitting (RR) MS patients with high and normal BMI received clinical and MRI evaluation. Blood samples were immunophenotyped, and processed for unbiased plasma lipidomic profiling and genome-wide DNA methylation analysis of circulating monocytes. The main findings at baseline were validated in an independent cohort of 91 therapy-naïve RRMS patients. Disease course was evaluated by a two-year longitudinal follow up and mechanistic hypotheses tested in human cell cultures and in animal models of MS. FINDINGS: Higher monocytic counts and plasma ceramides, and hypermethylation of genes involved in negative regulation of cell proliferation were detected in the high BMI group of MS patients compared to normal BMI. Ceramide treatment of monocytic cell cultures increased proliferation in a dose-dependent manner and was prevented by DNA methylation inhibitors. The high BMI group of MS patients showed a negative correlation between monocytic counts and brain volume. Those subjects at a two-year follow-up showed increased T1 lesion load, increased disease activity, and worsened clinical disability. Lastly, the relationship between body weight, monocytic infiltration, DNA methylation and disease course was validated in mouse models of MS. INTERPRETATION: High BMI negatively impacts disease course in Multiple Sclerosis by modulating monocyte cell number through ceramide-induced DNA methylation of anti-proliferative genes. FUND: This work was supported by funds from the Friedman Brain Institute, NIH, and Multiple Sclerosis Society. Elsevier 2019-04-10 /pmc/articles/PMC6557766/ /pubmed/30981648 http://dx.doi.org/10.1016/j.ebiom.2019.03.087 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
Castro, Kamilah
Ntranos, Achilles
Amatruda, Mario
Petracca, Maria
Kosa, Peter
Chen, Emily Y.
Morstein, Johannes
Trauner, Dirk
Watson, Corey T.
Kiebish, Michael A.
Bielekova, Bibiana
Inglese, Matilde
Katz Sand, Ilana
Casaccia, Patrizia
Body Mass Index in Multiple Sclerosis modulates ceramide-induced DNA methylation and disease course
title Body Mass Index in Multiple Sclerosis modulates ceramide-induced DNA methylation and disease course
title_full Body Mass Index in Multiple Sclerosis modulates ceramide-induced DNA methylation and disease course
title_fullStr Body Mass Index in Multiple Sclerosis modulates ceramide-induced DNA methylation and disease course
title_full_unstemmed Body Mass Index in Multiple Sclerosis modulates ceramide-induced DNA methylation and disease course
title_short Body Mass Index in Multiple Sclerosis modulates ceramide-induced DNA methylation and disease course
title_sort body mass index in multiple sclerosis modulates ceramide-induced dna methylation and disease course
topic Research paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6557766/
https://www.ncbi.nlm.nih.gov/pubmed/30981648
http://dx.doi.org/10.1016/j.ebiom.2019.03.087
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