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Deletion of Hsd11b1 suppresses caloric restriction-induced bone marrow adiposity in male but not female mice.
Lovdel, Andrea; Suchacki, Karla J; Roberts, Fiona; Sulston, Richard J; Wallace, Robert J; Thomas, Benjamin J; Bell, Rachel M B; Pruñonosa Cervera, Iris; Macpherson, Gavin J; Morton, Nicholas M; Homer, Natalie Z M; Chapman, Karen E; Cawthorn, William P.
Afiliação
  • Lovdel A; University/BHF Centre for Cardiovascular Science, The University of Edinburgh, The Queen's Medical Research Institute, Edinburgh BioQuarter, Edinburgh, UK.
  • Suchacki KJ; University/BHF Centre for Cardiovascular Science, The University of Edinburgh, The Queen's Medical Research Institute, Edinburgh BioQuarter, Edinburgh, UK.
  • Roberts F; University/BHF Centre for Cardiovascular Science, The University of Edinburgh, The Queen's Medical Research Institute, Edinburgh BioQuarter, Edinburgh, UK.
  • Sulston RJ; University/BHF Centre for Cardiovascular Science, The University of Edinburgh, The Queen's Medical Research Institute, Edinburgh BioQuarter, Edinburgh, UK.
  • Wallace RJ; Department of Orthopaedics, The University of Edinburgh, Edinburgh, UK.
  • Thomas BJ; University/BHF Centre for Cardiovascular Science, The University of Edinburgh, The Queen's Medical Research Institute, Edinburgh BioQuarter, Edinburgh, UK.
  • Bell RMB; University/BHF Centre for Cardiovascular Science, The University of Edinburgh, The Queen's Medical Research Institute, Edinburgh BioQuarter, Edinburgh, UK.
  • Pruñonosa Cervera I; University/BHF Centre for Cardiovascular Science, The University of Edinburgh, The Queen's Medical Research Institute, Edinburgh BioQuarter, Edinburgh, UK.
  • Macpherson GJ; Department of Orthopaedic Surgery, Royal Infirmary of Edinburgh, Edinburgh, UK.
  • Morton NM; University/BHF Centre for Cardiovascular Science, The University of Edinburgh, The Queen's Medical Research Institute, Edinburgh BioQuarter, Edinburgh, UK.
  • Homer NZM; Centre for Systems Health and Integrated Metabolic Research, Department of Biosciences, School of Science and Technology, Nottingham Trent University, Nottingham, UK.
  • Chapman KE; University/BHF Centre for Cardiovascular Science, The University of Edinburgh, The Queen's Medical Research Institute, Edinburgh BioQuarter, Edinburgh, UK.
  • Cawthorn WP; University/BHF Centre for Cardiovascular Science, The University of Edinburgh, The Queen's Medical Research Institute, Edinburgh BioQuarter, Edinburgh, UK.
J Endocrinol ; 262(2)2024 Aug 01.
Article em En | MEDLINE | ID: mdl-38805506
ABSTRACT
Bone marrow adipose tissue (BMAT) comprises >10% of total adipose mass in healthy humans. It increases in diverse conditions, including ageing, obesity, osteoporosis, glucocorticoid therapy, and notably, during caloric restriction (CR). BMAT potentially influences skeletal, metabolic, and immune functions, but the mechanisms of BMAT expansion remain poorly understood. Our hypothesis is that, during CR, excessive glucocorticoid activity drives BMAT expansion. The enzyme 11ß-hydroxysteroid dehydrogenase type 1 (11ß-HSD1) amplifies glucocorticoid activity by catalysing intracellular regeneration of active glucocorticoids from inert 11-keto forms. Mice lacking 11ß-HSD1 resist metabolic dysregulation and bone loss during exogenous glucocorticoid excess; thus, we hypothesised that 11ß-HSD1 knockout mice would also resist excessive glucocorticoid action during CR, thereby restrining BMAT expansion and bone loss. To test this, we first confirmed that 11ß-HSD1 is expressed in mouse and human bone marrow. We then investigated the effects of CR in male and female control and 11ß-HSD1 knockout mice from 9 to 15 weeks of age. CR increased Hsd11b1 mRNA in adipose tissue and bone marrow. Deletion of Hsd11b1 did not alter bone or BMAT characteristics in mice fed a control diet and had little effect on tibial bone microarchitecture during CR. Notably, Hsd11b1 deletion attenuated the CR-induced increases in BMAT and prevented increases in bone marrow corticosterone in males but not females. This was not associated with suppression of glucocorticoid target genes in bone marrow. Instead, knockout males had increased progesterone in plasma and bone marrow. Together, our findings show that knockout of 11ß-HSD1 prevents CR-induced BMAT expansion in a sex-specific manner and highlights progesterone as a potential new regulator of bone marrow adiposity.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Medula Óssea / Camundongos Knockout / Restrição Calórica / 11-beta-Hidroxiesteroide Desidrogenase Tipo 1 / Adiposidade Limite: Animals / Female / Humans / Male Idioma: En Revista: J Endocrinol Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Reino Unido

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Medula Óssea / Camundongos Knockout / Restrição Calórica / 11-beta-Hidroxiesteroide Desidrogenase Tipo 1 / Adiposidade Limite: Animals / Female / Humans / Male Idioma: En Revista: J Endocrinol Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Reino Unido