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Metabolomic profiling identifies potential pathways involved in the interaction of iron homeostasis with glucose metabolism

OBJECTIVE: Elevated serum ferritin has been linked to type 2 diabetes (T2D) and adverse health outcomes in subjects with the Metabolic Syndrome (MetS). As the mechanisms underlying the negative impact of excess iron have so far remained elusive, we aimed to identify potential links between iron home...

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Autores principales: Stechemesser, Lars, Eder, Sebastian K., Wagner, Andrej, Patsch, Wolfgang, Feldman, Alexandra, Strasser, Michael, Auer, Simon, Niederseer, David, Huber-Schönauer, Ursula, Paulweber, Bernhard, Zandanell, Stephan, Ruhaltinger, Sandra, Weghuber, Daniel, Haschke-Becher, Elisabeth, Grabmer, Christoph, Rohde, Eva, Datz, Christian, Felder, Thomas K., Aigner, Elmar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5220278/
https://www.ncbi.nlm.nih.gov/pubmed/28123936
http://dx.doi.org/10.1016/j.molmet.2016.10.006
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author Stechemesser, Lars
Eder, Sebastian K.
Wagner, Andrej
Patsch, Wolfgang
Feldman, Alexandra
Strasser, Michael
Auer, Simon
Niederseer, David
Huber-Schönauer, Ursula
Paulweber, Bernhard
Zandanell, Stephan
Ruhaltinger, Sandra
Weghuber, Daniel
Haschke-Becher, Elisabeth
Grabmer, Christoph
Rohde, Eva
Datz, Christian
Felder, Thomas K.
Aigner, Elmar
author_facet Stechemesser, Lars
Eder, Sebastian K.
Wagner, Andrej
Patsch, Wolfgang
Feldman, Alexandra
Strasser, Michael
Auer, Simon
Niederseer, David
Huber-Schönauer, Ursula
Paulweber, Bernhard
Zandanell, Stephan
Ruhaltinger, Sandra
Weghuber, Daniel
Haschke-Becher, Elisabeth
Grabmer, Christoph
Rohde, Eva
Datz, Christian
Felder, Thomas K.
Aigner, Elmar
author_sort Stechemesser, Lars
collection PubMed
description OBJECTIVE: Elevated serum ferritin has been linked to type 2 diabetes (T2D) and adverse health outcomes in subjects with the Metabolic Syndrome (MetS). As the mechanisms underlying the negative impact of excess iron have so far remained elusive, we aimed to identify potential links between iron homeostasis and metabolic pathways. METHODS: In a cross-sectional study, data were obtained from 163 patients, allocated to one of three groups: (1) lean, healthy controls (n = 53), (2) MetS without hyperferritinemia (n = 54) and (3) MetS with hyperferritinemia (n = 56). An additional phlebotomy study included 29 patients with biopsy-proven iron overload before and after iron removal. A detailed clinical and biochemical characterization was obtained and metabolomic profiling was performed via a targeted metabolomics approach. RESULTS: Subjects with MetS and elevated ferritin had higher fasting glucose (p < 0.001), HbA1c (p = 0.035) and 1 h glucose in oral glucose tolerance test (p = 0.002) compared to MetS subjects without iron overload, whereas other clinical and biochemical features of the MetS were not different. The metabolomic study revealed significant differences between MetS with high and low ferritin in the serum concentrations of sarcosine, citrulline and particularly long-chain phosphatidylcholines. Methionine, glutamate, and long-chain phosphatidylcholines were significantly different before and after phlebotomy (p < 0.05 for all metabolites). CONCLUSIONS: Our data suggest that high serum ferritin concentrations are linked to impaired glucose homeostasis in subjects with the MetS. Iron excess is associated to distinct changes in the serum concentrations of phosphatidylcholine subsets. A pathway involving sarcosine and citrulline also may be involved in iron-induced impairment of glucose metabolism.
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spelling pubmed-52202782017-01-25 Metabolomic profiling identifies potential pathways involved in the interaction of iron homeostasis with glucose metabolism Stechemesser, Lars Eder, Sebastian K. Wagner, Andrej Patsch, Wolfgang Feldman, Alexandra Strasser, Michael Auer, Simon Niederseer, David Huber-Schönauer, Ursula Paulweber, Bernhard Zandanell, Stephan Ruhaltinger, Sandra Weghuber, Daniel Haschke-Becher, Elisabeth Grabmer, Christoph Rohde, Eva Datz, Christian Felder, Thomas K. Aigner, Elmar Mol Metab Original Article OBJECTIVE: Elevated serum ferritin has been linked to type 2 diabetes (T2D) and adverse health outcomes in subjects with the Metabolic Syndrome (MetS). As the mechanisms underlying the negative impact of excess iron have so far remained elusive, we aimed to identify potential links between iron homeostasis and metabolic pathways. METHODS: In a cross-sectional study, data were obtained from 163 patients, allocated to one of three groups: (1) lean, healthy controls (n = 53), (2) MetS without hyperferritinemia (n = 54) and (3) MetS with hyperferritinemia (n = 56). An additional phlebotomy study included 29 patients with biopsy-proven iron overload before and after iron removal. A detailed clinical and biochemical characterization was obtained and metabolomic profiling was performed via a targeted metabolomics approach. RESULTS: Subjects with MetS and elevated ferritin had higher fasting glucose (p < 0.001), HbA1c (p = 0.035) and 1 h glucose in oral glucose tolerance test (p = 0.002) compared to MetS subjects without iron overload, whereas other clinical and biochemical features of the MetS were not different. The metabolomic study revealed significant differences between MetS with high and low ferritin in the serum concentrations of sarcosine, citrulline and particularly long-chain phosphatidylcholines. Methionine, glutamate, and long-chain phosphatidylcholines were significantly different before and after phlebotomy (p < 0.05 for all metabolites). CONCLUSIONS: Our data suggest that high serum ferritin concentrations are linked to impaired glucose homeostasis in subjects with the MetS. Iron excess is associated to distinct changes in the serum concentrations of phosphatidylcholine subsets. A pathway involving sarcosine and citrulline also may be involved in iron-induced impairment of glucose metabolism. Elsevier 2016-10-31 /pmc/articles/PMC5220278/ /pubmed/28123936 http://dx.doi.org/10.1016/j.molmet.2016.10.006 Text en © 2016 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 Original Article
Stechemesser, Lars
Eder, Sebastian K.
Wagner, Andrej
Patsch, Wolfgang
Feldman, Alexandra
Strasser, Michael
Auer, Simon
Niederseer, David
Huber-Schönauer, Ursula
Paulweber, Bernhard
Zandanell, Stephan
Ruhaltinger, Sandra
Weghuber, Daniel
Haschke-Becher, Elisabeth
Grabmer, Christoph
Rohde, Eva
Datz, Christian
Felder, Thomas K.
Aigner, Elmar
Metabolomic profiling identifies potential pathways involved in the interaction of iron homeostasis with glucose metabolism
title Metabolomic profiling identifies potential pathways involved in the interaction of iron homeostasis with glucose metabolism
title_full Metabolomic profiling identifies potential pathways involved in the interaction of iron homeostasis with glucose metabolism
title_fullStr Metabolomic profiling identifies potential pathways involved in the interaction of iron homeostasis with glucose metabolism
title_full_unstemmed Metabolomic profiling identifies potential pathways involved in the interaction of iron homeostasis with glucose metabolism
title_short Metabolomic profiling identifies potential pathways involved in the interaction of iron homeostasis with glucose metabolism
title_sort metabolomic profiling identifies potential pathways involved in the interaction of iron homeostasis with glucose metabolism
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5220278/
https://www.ncbi.nlm.nih.gov/pubmed/28123936
http://dx.doi.org/10.1016/j.molmet.2016.10.006
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