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Lifetime congenital isolated GH deficiency does not protect from the development of diabetes

OBJECTIVES: Adult subjects with untreated, lifetime, isolated GH deficiency (IGHD) due to a homozygous GHRH receptor gene mutation (MUT/MUT) residing in Itabaianinha, Brazil, present with lower BMI, higher prevalence of impaired glucose tolerance (IGT), increased insulin sensitivity (IS), and reduce...

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Autores principales: Vicente, Taísa A R, Rocha, Ívina E S, Salvatori, Roberto, Oliveira, Carla R P, Pereira, Rossana M C, Souza, Anita H O, Campos, Viviane C, Santos, Elenilde G, Diniz, Rachel D C Araújo, Valença, Eugênia H O, Epitácio-Pereira, Carlos C, Oliveira, Mario C P, Mari, Andrea, Aguiar-Oliveira, Manuel H
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioScientifica 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3689269/
https://www.ncbi.nlm.nih.gov/pubmed/23795286
http://dx.doi.org/10.1530/EC-13-0014
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author Vicente, Taísa A R
Rocha, Ívina E S
Salvatori, Roberto
Oliveira, Carla R P
Pereira, Rossana M C
Souza, Anita H O
Campos, Viviane C
Santos, Elenilde G
Diniz, Rachel D C Araújo
Valença, Eugênia H O
Epitácio-Pereira, Carlos C
Oliveira, Mario C P
Mari, Andrea
Aguiar-Oliveira, Manuel H
author_facet Vicente, Taísa A R
Rocha, Ívina E S
Salvatori, Roberto
Oliveira, Carla R P
Pereira, Rossana M C
Souza, Anita H O
Campos, Viviane C
Santos, Elenilde G
Diniz, Rachel D C Araújo
Valença, Eugênia H O
Epitácio-Pereira, Carlos C
Oliveira, Mario C P
Mari, Andrea
Aguiar-Oliveira, Manuel H
author_sort Vicente, Taísa A R
collection PubMed
description OBJECTIVES: Adult subjects with untreated, lifetime, isolated GH deficiency (IGHD) due to a homozygous GHRH receptor gene mutation (MUT/MUT) residing in Itabaianinha, Brazil, present with lower BMI, higher prevalence of impaired glucose tolerance (IGT), increased insulin sensitivity (IS), and reduced β-cell function (βCF) when compared with non-BMI-matched homozygous normal controls. However, the prevalence of diabetes mellitus (DM) in this cohort is unknown. Comparing their IS and βCF with BMI-matched individuals heterozygous for the same mutation (MUT/N) may be useful to elucidate the role of the GH–IGF1 axis in IS and βCF. The purposes of this work were to verify the prevalence of IGT and DM in adult MUT/MUT subjects from this kindred and to compare IS and βCF in MUT/MUT and MUT/N. DESIGN: Cross-sectional study. METHODS: We studied most (51) of the living IGHD adults of this kindred who are GH naive. The oral glucose tolerance test (OGTT) could be performed in 34 subjects, fasting glucose was measured in 15, while two had a previous diagnosis of DM. The OGTT results of 24 MUT/MUT subjects were compared with those of 25 BMI-matched MUT/N subjects. IS was assessed by homeostatic model assessment of insulin resistance (HOMA–IR), quantitative IS check index, and oral glucose IS index for 2 and 3 h. βCF was assayed by HOMA-β, insulinogenic index, and the area under the curve of insulin:glucose ratio. RESULTS: The prevalence of DM and IGT in IGHD was 15.68 and 38.23% respectively. IS was increased and βCF was reduced in MUT/MUT in comparison with MUT/N. CONCLUSIONS: Lifetime, untreated IGHD increases IS, impairs βCF, and does not provide protection from diabetes.
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spelling pubmed-36892692013-06-21 Lifetime congenital isolated GH deficiency does not protect from the development of diabetes Vicente, Taísa A R Rocha, Ívina E S Salvatori, Roberto Oliveira, Carla R P Pereira, Rossana M C Souza, Anita H O Campos, Viviane C Santos, Elenilde G Diniz, Rachel D C Araújo Valença, Eugênia H O Epitácio-Pereira, Carlos C Oliveira, Mario C P Mari, Andrea Aguiar-Oliveira, Manuel H Endocr Connect Research OBJECTIVES: Adult subjects with untreated, lifetime, isolated GH deficiency (IGHD) due to a homozygous GHRH receptor gene mutation (MUT/MUT) residing in Itabaianinha, Brazil, present with lower BMI, higher prevalence of impaired glucose tolerance (IGT), increased insulin sensitivity (IS), and reduced β-cell function (βCF) when compared with non-BMI-matched homozygous normal controls. However, the prevalence of diabetes mellitus (DM) in this cohort is unknown. Comparing their IS and βCF with BMI-matched individuals heterozygous for the same mutation (MUT/N) may be useful to elucidate the role of the GH–IGF1 axis in IS and βCF. The purposes of this work were to verify the prevalence of IGT and DM in adult MUT/MUT subjects from this kindred and to compare IS and βCF in MUT/MUT and MUT/N. DESIGN: Cross-sectional study. METHODS: We studied most (51) of the living IGHD adults of this kindred who are GH naive. The oral glucose tolerance test (OGTT) could be performed in 34 subjects, fasting glucose was measured in 15, while two had a previous diagnosis of DM. The OGTT results of 24 MUT/MUT subjects were compared with those of 25 BMI-matched MUT/N subjects. IS was assessed by homeostatic model assessment of insulin resistance (HOMA–IR), quantitative IS check index, and oral glucose IS index for 2 and 3 h. βCF was assayed by HOMA-β, insulinogenic index, and the area under the curve of insulin:glucose ratio. RESULTS: The prevalence of DM and IGT in IGHD was 15.68 and 38.23% respectively. IS was increased and βCF was reduced in MUT/MUT in comparison with MUT/N. CONCLUSIONS: Lifetime, untreated IGHD increases IS, impairs βCF, and does not provide protection from diabetes. BioScientifica 2013-06-15 /pmc/articles/PMC3689269/ /pubmed/23795286 http://dx.doi.org/10.1530/EC-13-0014 Text en © 2013 The Authors http://creativecommons.org/licenses/by/3.0/deed.en_GB This work is licensed under a Creative Commons Attribution 3.0 Unported License (http://creativecommons.org/licenses/by/3.0/deed.en_GB) .
spellingShingle Research
Vicente, Taísa A R
Rocha, Ívina E S
Salvatori, Roberto
Oliveira, Carla R P
Pereira, Rossana M C
Souza, Anita H O
Campos, Viviane C
Santos, Elenilde G
Diniz, Rachel D C Araújo
Valença, Eugênia H O
Epitácio-Pereira, Carlos C
Oliveira, Mario C P
Mari, Andrea
Aguiar-Oliveira, Manuel H
Lifetime congenital isolated GH deficiency does not protect from the development of diabetes
title Lifetime congenital isolated GH deficiency does not protect from the development of diabetes
title_full Lifetime congenital isolated GH deficiency does not protect from the development of diabetes
title_fullStr Lifetime congenital isolated GH deficiency does not protect from the development of diabetes
title_full_unstemmed Lifetime congenital isolated GH deficiency does not protect from the development of diabetes
title_short Lifetime congenital isolated GH deficiency does not protect from the development of diabetes
title_sort lifetime congenital isolated gh deficiency does not protect from the development of diabetes
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3689269/
https://www.ncbi.nlm.nih.gov/pubmed/23795286
http://dx.doi.org/10.1530/EC-13-0014
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