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Molecular, Genetic, and Biochemical Nutrition Commons

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Full-Text Articles in Molecular, Genetic, and Biochemical Nutrition

Vulnerable And Resilient Phenotypes In A Mouse Model Of Anorexia Nervosa, Jeff A. Beeler, Devry Mourra, Roseanna M. Zanca, Abigail Kalmbach, Celia Gellman, Benjamin Y. Klein, Rebecca Ravenelle, Peter Serrano, Holly Moore, Stephen Rayport, Susana Mingote, Nesha Burghard Jan 2021

Vulnerable And Resilient Phenotypes In A Mouse Model Of Anorexia Nervosa, Jeff A. Beeler, Devry Mourra, Roseanna M. Zanca, Abigail Kalmbach, Celia Gellman, Benjamin Y. Klein, Rebecca Ravenelle, Peter Serrano, Holly Moore, Stephen Rayport, Susana Mingote, Nesha Burghard

Advanced Science Research Center

Background

Increased physical activity is a common feature of anorexia nervosa (AN). Although high activity levels are associated with greater risk of developing AN, particularly when combined with dieting, most individuals who diet and exercise maintain a healthy body weight. It is unclear why some individuals develop AN while most do not. A rodent model of resilience and vulnerability to AN would be valuable to research. Dopamine, which is believed to play a crucial role in AN, regulates both reward and activity and may modulate vulnerability.

Methods

Adolescent and young adult female C57BL/6N mice were tested in the activity-based anorexia …


Body Mass Index In Multiple Sclerosis Modulates Ceramide-Induced Dna Methylation And Disease Course, Kamilah Castro, Achilles Ntranos, Mario Amatruda, Maria Petracca, Peter Kosa, Emily Y. Chen, Johannes Morstein, Dirk Trauner, Corey T. Watson, Michael A. Kiebish, Bibiana Bielekova, Matilde Inglese, Ilana Katz Sand, Patricia Casaccia Apr 2019

Body Mass Index In Multiple Sclerosis Modulates Ceramide-Induced Dna Methylation And Disease Course, Kamilah Castro, Achilles Ntranos, Mario Amatruda, Maria Petracca, Peter Kosa, Emily Y. Chen, Johannes Morstein, Dirk Trauner, Corey T. Watson, Michael A. Kiebish, Bibiana Bielekova, Matilde Inglese, Ilana Katz Sand, Patricia Casaccia

Advanced Science Research Center

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 …