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Genetic Diagnostics in Routine Osteological Assessment of Adult Low Bone Mass Disorders

CONTEXT: Many different inherited and acquired conditions can result in premature bone fragility/low bone mass disorders (LBMDs). OBJECTIVE: We aimed to elucidate the impact of genetic testing on differential diagnosis of adult LBMDs and at defining clinical criteria for predicting monogenic forms....

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Autores principales: Oheim, Ralf, Tsourdi, Elena, Seefried, Lothar, Beller, Gisela, Schubach, Max, Vettorazzi, Eik, Stürznickel, Julian, Rolvien, Tim, Ehmke, Nadja, Delsmann, Alena, Genest, Franca, Krüger, Ulrike, Zemojtel, Tomasz, Barvencik, Florian, Schinke, Thorsten, Jakob, Franz, Hofbauer, Lorenz C, Mundlos, Stefan, Kornak, Uwe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9202726/
https://www.ncbi.nlm.nih.gov/pubmed/35276006
http://dx.doi.org/10.1210/clinem/dgac147
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author Oheim, Ralf
Tsourdi, Elena
Seefried, Lothar
Beller, Gisela
Schubach, Max
Vettorazzi, Eik
Stürznickel, Julian
Rolvien, Tim
Ehmke, Nadja
Delsmann, Alena
Genest, Franca
Krüger, Ulrike
Zemojtel, Tomasz
Barvencik, Florian
Schinke, Thorsten
Jakob, Franz
Hofbauer, Lorenz C
Mundlos, Stefan
Kornak, Uwe
author_facet Oheim, Ralf
Tsourdi, Elena
Seefried, Lothar
Beller, Gisela
Schubach, Max
Vettorazzi, Eik
Stürznickel, Julian
Rolvien, Tim
Ehmke, Nadja
Delsmann, Alena
Genest, Franca
Krüger, Ulrike
Zemojtel, Tomasz
Barvencik, Florian
Schinke, Thorsten
Jakob, Franz
Hofbauer, Lorenz C
Mundlos, Stefan
Kornak, Uwe
author_sort Oheim, Ralf
collection PubMed
description CONTEXT: Many different inherited and acquired conditions can result in premature bone fragility/low bone mass disorders (LBMDs). OBJECTIVE: We aimed to elucidate the impact of genetic testing on differential diagnosis of adult LBMDs and at defining clinical criteria for predicting monogenic forms. METHODS: Four clinical centers broadly recruited a cohort of 394 unrelated adult women before menopause and men younger than 55 years with a bone mineral density (BMD) Z-score < -2.0 and/or pathological fractures. After exclusion of secondary causes or unequivocal clinical/biochemical hallmarks of monogenic LBMDs, all participants were genotyped by targeted next-generation sequencing. RESULTS: In total, 20.8% of the participants carried rare disease-causing variants (DCVs) in genes known to cause osteogenesis imperfecta (COL1A1, COL1A2), hypophosphatasia (ALPL), and early-onset osteoporosis (LRP5, PLS3, and WNT1). In addition, we identified rare DCVs in ENPP1, LMNA, NOTCH2, and ZNF469. Three individuals had autosomal recessive, 75 autosomal dominant, and 4 X-linked disorders. A total of 9.7% of the participants harbored variants of unknown significance. A regression analysis revealed that the likelihood of detecting a DCV correlated with a positive family history of osteoporosis, peripheral fractures (> 2), and a high normal body mass index (BMI). In contrast, mutation frequencies did not correlate with age, prevalent vertebral fractures, BMD, or biochemical parameters. In individuals without monogenic disease-causing rare variants, common variants predisposing for low BMD (eg, in LRP5) were overrepresented. CONCLUSION: The overlapping spectra of monogenic adult LBMD can be easily disentangled by genetic testing and the proposed clinical criteria can help to maximize the diagnostic yield.
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spelling pubmed-92027262022-06-21 Genetic Diagnostics in Routine Osteological Assessment of Adult Low Bone Mass Disorders Oheim, Ralf Tsourdi, Elena Seefried, Lothar Beller, Gisela Schubach, Max Vettorazzi, Eik Stürznickel, Julian Rolvien, Tim Ehmke, Nadja Delsmann, Alena Genest, Franca Krüger, Ulrike Zemojtel, Tomasz Barvencik, Florian Schinke, Thorsten Jakob, Franz Hofbauer, Lorenz C Mundlos, Stefan Kornak, Uwe J Clin Endocrinol Metab Online Only Articles CONTEXT: Many different inherited and acquired conditions can result in premature bone fragility/low bone mass disorders (LBMDs). OBJECTIVE: We aimed to elucidate the impact of genetic testing on differential diagnosis of adult LBMDs and at defining clinical criteria for predicting monogenic forms. METHODS: Four clinical centers broadly recruited a cohort of 394 unrelated adult women before menopause and men younger than 55 years with a bone mineral density (BMD) Z-score < -2.0 and/or pathological fractures. After exclusion of secondary causes or unequivocal clinical/biochemical hallmarks of monogenic LBMDs, all participants were genotyped by targeted next-generation sequencing. RESULTS: In total, 20.8% of the participants carried rare disease-causing variants (DCVs) in genes known to cause osteogenesis imperfecta (COL1A1, COL1A2), hypophosphatasia (ALPL), and early-onset osteoporosis (LRP5, PLS3, and WNT1). In addition, we identified rare DCVs in ENPP1, LMNA, NOTCH2, and ZNF469. Three individuals had autosomal recessive, 75 autosomal dominant, and 4 X-linked disorders. A total of 9.7% of the participants harbored variants of unknown significance. A regression analysis revealed that the likelihood of detecting a DCV correlated with a positive family history of osteoporosis, peripheral fractures (> 2), and a high normal body mass index (BMI). In contrast, mutation frequencies did not correlate with age, prevalent vertebral fractures, BMD, or biochemical parameters. In individuals without monogenic disease-causing rare variants, common variants predisposing for low BMD (eg, in LRP5) were overrepresented. CONCLUSION: The overlapping spectra of monogenic adult LBMD can be easily disentangled by genetic testing and the proposed clinical criteria can help to maximize the diagnostic yield. Oxford University Press 2022-03-11 /pmc/articles/PMC9202726/ /pubmed/35276006 http://dx.doi.org/10.1210/clinem/dgac147 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of the Endocrine Society. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs licence (https://creativecommons.org/licenses/by-nc-nd/4.0/), which permits non-commercial reproduction and distribution of the work, in any medium, provided the original work is not altered or transformed in any way, and that the work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Online Only Articles
Oheim, Ralf
Tsourdi, Elena
Seefried, Lothar
Beller, Gisela
Schubach, Max
Vettorazzi, Eik
Stürznickel, Julian
Rolvien, Tim
Ehmke, Nadja
Delsmann, Alena
Genest, Franca
Krüger, Ulrike
Zemojtel, Tomasz
Barvencik, Florian
Schinke, Thorsten
Jakob, Franz
Hofbauer, Lorenz C
Mundlos, Stefan
Kornak, Uwe
Genetic Diagnostics in Routine Osteological Assessment of Adult Low Bone Mass Disorders
title Genetic Diagnostics in Routine Osteological Assessment of Adult Low Bone Mass Disorders
title_full Genetic Diagnostics in Routine Osteological Assessment of Adult Low Bone Mass Disorders
title_fullStr Genetic Diagnostics in Routine Osteological Assessment of Adult Low Bone Mass Disorders
title_full_unstemmed Genetic Diagnostics in Routine Osteological Assessment of Adult Low Bone Mass Disorders
title_short Genetic Diagnostics in Routine Osteological Assessment of Adult Low Bone Mass Disorders
title_sort genetic diagnostics in routine osteological assessment of adult low bone mass disorders
topic Online Only Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9202726/
https://www.ncbi.nlm.nih.gov/pubmed/35276006
http://dx.doi.org/10.1210/clinem/dgac147
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