Circulating concentrations of GDF11 are positively associated with TSH levels in humans

Growth differentiation factor 11 (GDF11) is a member of the transforming growth factor (TGF)-beta superfamily which declines with age and has been proposed as an anti-aging factor with regenerative effects in skeletal muscle in mice. However, recent data in humans and mice are conflicting, casting d...

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Autores: Gomez-Ambrosi, J. (Javier)|||/items/21d09997-940a-45f7-9b4b-0a9f64b2ed8e, Frühbeck, G. (Gema)|||/items/7f0b1f72-bc91-4ab0-a3fd-21e9a3fb663b, Salvador-Rodríguez, F.J. (Francisco Javier)|||/items/1175815b-412b-41a6-b91f-6dbfa349f9c8, Galofre-Ferrater, J.C. (Juan Carlos)|||/items/e7463ff9-97f4-4119-a307-fd978c0017fd, Mugueta-Uriaque, M.C. (María del Carmen)|||/items/f3632e2b-2630-43b5-ab87-78066aba7b1b, Silva-Frojan, C. (Camilo)|||/items/4037daf2-cf27-42c3-b76c-2ad9aa9465ef, Idoate-Bayón, A. (Adrián)|||/items/75796f68-3f73-4956-841e-3526d906eb4c, Ramirez-Sola, B. (Beatriz)|||/items/95970833-a061-4e49-b5d8-e6ecc6ec59c4, Rodriguez, A. (Amaia)|||/items/50976a5f-9842-47f1-8a9c-508e59996427, Catalán-Goñi, V. (Victoria)|||/items/9a5a055c-323a-4b41-800f-65abf7f22c79, Añón-Hidalgo, J. (Juan)|||/items/811946fb-858c-4643-87dd-c8bc0851e4a4
Formato: artículo
Fecha de publicación:2019
País:España
Recursos:Universidad de Navarra
Repositorio:Dadun. Depósito Académico Digital de la Universidad de Navarra
Idioma:inglés
OAI Identifier:oai:dadun.unav.edu:10171/58040
Acesso em linha:https://hdl.handle.net/10171/58040
Access Level:acceso abierto
Palavra-chave:TSH
GDF11
REE
Leptin
CRP
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spelling Circulating concentrations of GDF11 are positively associated with TSH levels in humansGomez-Ambrosi, J. (Javier)|||/items/21d09997-940a-45f7-9b4b-0a9f64b2ed8eFrühbeck, G. (Gema)|||/items/7f0b1f72-bc91-4ab0-a3fd-21e9a3fb663bSalvador-Rodríguez, F.J. (Francisco Javier)|||/items/1175815b-412b-41a6-b91f-6dbfa349f9c8Galofre-Ferrater, J.C. (Juan Carlos)|||/items/e7463ff9-97f4-4119-a307-fd978c0017fdMugueta-Uriaque, M.C. (María del Carmen)|||/items/f3632e2b-2630-43b5-ab87-78066aba7b1bSilva-Frojan, C. (Camilo)|||/items/4037daf2-cf27-42c3-b76c-2ad9aa9465efIdoate-Bayón, A. (Adrián)|||/items/75796f68-3f73-4956-841e-3526d906eb4cRamirez-Sola, B. (Beatriz)|||/items/95970833-a061-4e49-b5d8-e6ecc6ec59c4Rodriguez, A. (Amaia)|||/items/50976a5f-9842-47f1-8a9c-508e59996427Catalán-Goñi, V. (Victoria)|||/items/9a5a055c-323a-4b41-800f-65abf7f22c79Añón-Hidalgo, J. (Juan)|||/items/811946fb-858c-4643-87dd-c8bc0851e4a4TSHGDF11REELeptinCRPGrowth differentiation factor 11 (GDF11) is a member of the transforming growth factor (TGF)-beta superfamily which declines with age and has been proposed as an anti-aging factor with regenerative effects in skeletal muscle in mice. However, recent data in humans and mice are conflicting, casting doubts about its true functional actions. The aim of the present study was to analyze the potential involvement of GFD11 in energy homeostasis in particular in relation with thyroid hormones. Serum concentrations of GDF11 were measured by enzyme-linked immunosorbent assay (ELISA) in 287 subjects. A highly significant positive correlation was found between GDF11 and thyroid-stimulating hormone (TSH) concentrations (r = 0.40, p < 0.001). Neither resting energy expenditure (REE) nor REE per unit of fat-free mass (REE/FFM) were significantly correlated (p > 0.05 for both) with GDF11 levels. In a multiple linear regression analysis, the model that best predicted logGDF11 included logTSH, leptin, body mass index (BMI), age, and C-reactive protein (logCRP). This model explained 37% of the total variability of logGDF11 concentrations (p < 0.001), with only logTSH being a significant predictor of logGDF11. After segregating subjects by TSH levels, those within the low TSH group exhibited significantly decreased (p < 0.05) GDF11 concentrations as compared to the normal TSH group or the high TSH group. A significant correlation of GDF11 levels with logCRP (r = 0.19, p = 0.025) was found. GDF11 levels were not related to the presence of hypertension or cardiopathy. In conclusion, our results show that circulating concentrations of GDF11 are closely associated with TSH concentrations and reduced in subjects with low TSH levels. However, GDF11 is not related to the regulation of energy expenditure. Our data also suggest that GDF11 may be involved in the regulation of inflammation, without relation to cardiac function. Further research is needed to elucidate the role of GDF11 in metabolism and its potential involvement in thyroid pathophysiology.Dadun. Depósito Académico Digital Universidad de Navarra20192019-08-0920192019-01-0120192019-01-01journal articlehttp://purl.org/coar/resource_type/c_6501info:eu-repo/semantics/articleapplication/pdfhttps://hdl.handle.net/10171/58040reponame:Dadun. Depósito Académico Digital de la Universidad de Navarrainstname:Universidad de NavarraInglésengopen accesshttp://purl.org/coar/access_right/c_abf2info:eu-repo/semantics/openAccessoai:dadun.unav.edu:10171/580402026-06-21T12:47:57Z
dc.title.none.fl_str_mv Circulating concentrations of GDF11 are positively associated with TSH levels in humans
title Circulating concentrations of GDF11 are positively associated with TSH levels in humans
spellingShingle Circulating concentrations of GDF11 are positively associated with TSH levels in humans
Gomez-Ambrosi, J. (Javier)|||/items/21d09997-940a-45f7-9b4b-0a9f64b2ed8e
TSH
GDF11
REE
Leptin
CRP
title_short Circulating concentrations of GDF11 are positively associated with TSH levels in humans
title_full Circulating concentrations of GDF11 are positively associated with TSH levels in humans
title_fullStr Circulating concentrations of GDF11 are positively associated with TSH levels in humans
title_full_unstemmed Circulating concentrations of GDF11 are positively associated with TSH levels in humans
title_sort Circulating concentrations of GDF11 are positively associated with TSH levels in humans
dc.creator.none.fl_str_mv Gomez-Ambrosi, J. (Javier)|||/items/21d09997-940a-45f7-9b4b-0a9f64b2ed8e
Frühbeck, G. (Gema)|||/items/7f0b1f72-bc91-4ab0-a3fd-21e9a3fb663b
Salvador-Rodríguez, F.J. (Francisco Javier)|||/items/1175815b-412b-41a6-b91f-6dbfa349f9c8
Galofre-Ferrater, J.C. (Juan Carlos)|||/items/e7463ff9-97f4-4119-a307-fd978c0017fd
Mugueta-Uriaque, M.C. (María del Carmen)|||/items/f3632e2b-2630-43b5-ab87-78066aba7b1b
Silva-Frojan, C. (Camilo)|||/items/4037daf2-cf27-42c3-b76c-2ad9aa9465ef
Idoate-Bayón, A. (Adrián)|||/items/75796f68-3f73-4956-841e-3526d906eb4c
Ramirez-Sola, B. (Beatriz)|||/items/95970833-a061-4e49-b5d8-e6ecc6ec59c4
Rodriguez, A. (Amaia)|||/items/50976a5f-9842-47f1-8a9c-508e59996427
Catalán-Goñi, V. (Victoria)|||/items/9a5a055c-323a-4b41-800f-65abf7f22c79
Añón-Hidalgo, J. (Juan)|||/items/811946fb-858c-4643-87dd-c8bc0851e4a4
author Gomez-Ambrosi, J. (Javier)|||/items/21d09997-940a-45f7-9b4b-0a9f64b2ed8e
author_facet Gomez-Ambrosi, J. (Javier)|||/items/21d09997-940a-45f7-9b4b-0a9f64b2ed8e
Frühbeck, G. (Gema)|||/items/7f0b1f72-bc91-4ab0-a3fd-21e9a3fb663b
Salvador-Rodríguez, F.J. (Francisco Javier)|||/items/1175815b-412b-41a6-b91f-6dbfa349f9c8
Galofre-Ferrater, J.C. (Juan Carlos)|||/items/e7463ff9-97f4-4119-a307-fd978c0017fd
Mugueta-Uriaque, M.C. (María del Carmen)|||/items/f3632e2b-2630-43b5-ab87-78066aba7b1b
Silva-Frojan, C. (Camilo)|||/items/4037daf2-cf27-42c3-b76c-2ad9aa9465ef
Idoate-Bayón, A. (Adrián)|||/items/75796f68-3f73-4956-841e-3526d906eb4c
Ramirez-Sola, B. (Beatriz)|||/items/95970833-a061-4e49-b5d8-e6ecc6ec59c4
Rodriguez, A. (Amaia)|||/items/50976a5f-9842-47f1-8a9c-508e59996427
Catalán-Goñi, V. (Victoria)|||/items/9a5a055c-323a-4b41-800f-65abf7f22c79
Añón-Hidalgo, J. (Juan)|||/items/811946fb-858c-4643-87dd-c8bc0851e4a4
author_role author
author2 Frühbeck, G. (Gema)|||/items/7f0b1f72-bc91-4ab0-a3fd-21e9a3fb663b
Salvador-Rodríguez, F.J. (Francisco Javier)|||/items/1175815b-412b-41a6-b91f-6dbfa349f9c8
Galofre-Ferrater, J.C. (Juan Carlos)|||/items/e7463ff9-97f4-4119-a307-fd978c0017fd
Mugueta-Uriaque, M.C. (María del Carmen)|||/items/f3632e2b-2630-43b5-ab87-78066aba7b1b
Silva-Frojan, C. (Camilo)|||/items/4037daf2-cf27-42c3-b76c-2ad9aa9465ef
Idoate-Bayón, A. (Adrián)|||/items/75796f68-3f73-4956-841e-3526d906eb4c
Ramirez-Sola, B. (Beatriz)|||/items/95970833-a061-4e49-b5d8-e6ecc6ec59c4
Rodriguez, A. (Amaia)|||/items/50976a5f-9842-47f1-8a9c-508e59996427
Catalán-Goñi, V. (Victoria)|||/items/9a5a055c-323a-4b41-800f-65abf7f22c79
Añón-Hidalgo, J. (Juan)|||/items/811946fb-858c-4643-87dd-c8bc0851e4a4
author2_role author
author
author
author
author
author
author
author
author
author
dc.contributor.none.fl_str_mv Dadun. Depósito Académico Digital Universidad de Navarra
dc.subject.none.fl_str_mv TSH
GDF11
REE
Leptin
CRP
topic TSH
GDF11
REE
Leptin
CRP
description Growth differentiation factor 11 (GDF11) is a member of the transforming growth factor (TGF)-beta superfamily which declines with age and has been proposed as an anti-aging factor with regenerative effects in skeletal muscle in mice. However, recent data in humans and mice are conflicting, casting doubts about its true functional actions. The aim of the present study was to analyze the potential involvement of GFD11 in energy homeostasis in particular in relation with thyroid hormones. Serum concentrations of GDF11 were measured by enzyme-linked immunosorbent assay (ELISA) in 287 subjects. A highly significant positive correlation was found between GDF11 and thyroid-stimulating hormone (TSH) concentrations (r = 0.40, p < 0.001). Neither resting energy expenditure (REE) nor REE per unit of fat-free mass (REE/FFM) were significantly correlated (p > 0.05 for both) with GDF11 levels. In a multiple linear regression analysis, the model that best predicted logGDF11 included logTSH, leptin, body mass index (BMI), age, and C-reactive protein (logCRP). This model explained 37% of the total variability of logGDF11 concentrations (p < 0.001), with only logTSH being a significant predictor of logGDF11. After segregating subjects by TSH levels, those within the low TSH group exhibited significantly decreased (p < 0.05) GDF11 concentrations as compared to the normal TSH group or the high TSH group. A significant correlation of GDF11 levels with logCRP (r = 0.19, p = 0.025) was found. GDF11 levels were not related to the presence of hypertension or cardiopathy. In conclusion, our results show that circulating concentrations of GDF11 are closely associated with TSH concentrations and reduced in subjects with low TSH levels. However, GDF11 is not related to the regulation of energy expenditure. Our data also suggest that GDF11 may be involved in the regulation of inflammation, without relation to cardiac function. Further research is needed to elucidate the role of GDF11 in metabolism and its potential involvement in thyroid pathophysiology.
publishDate 2019
dc.date.none.fl_str_mv 2019
2019-08-09
2019
2019-01-01
2019
2019-01-01
dc.type.none.fl_str_mv journal article
http://purl.org/coar/resource_type/c_6501
dc.type.openaire.fl_str_mv info:eu-repo/semantics/article
format article
dc.identifier.none.fl_str_mv https://hdl.handle.net/10171/58040
url https://hdl.handle.net/10171/58040
dc.language.none.fl_str_mv Inglés
eng
language_invalid_str_mv Inglés
language eng
dc.rights.none.fl_str_mv open access
http://purl.org/coar/access_right/c_abf2
dc.rights.openaire.fl_str_mv info:eu-repo/semantics/openAccess
rights_invalid_str_mv open access
http://purl.org/coar/access_right/c_abf2
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
dc.source.none.fl_str_mv reponame:Dadun. Depósito Académico Digital de la Universidad de Navarra
instname:Universidad de Navarra
instname_str Universidad de Navarra
reponame_str Dadun. Depósito Académico Digital de la Universidad de Navarra
collection Dadun. Depósito Académico Digital de la Universidad de Navarra
repository.name.fl_str_mv
repository.mail.fl_str_mv
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