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Identification of Adult Patients With Classical Dyskeratosis Congenita or Cryptic Telomere Biology Disorder by Telomere Length Screening Using Age-modified Criteria

Telomere biology disorders (TBD) result from premature telomere shortening due to pathogenic germline variants in telomere maintenance-associated genes. In adults, TBD are characterized by mono/oligosymptomatic clinical manifestations (cryptic TBD) contributing to severe underdiagnosis. We present a...

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Autores principales: Tometten, Mareike, Kirschner, Martin, Meyer, Robert, Begemann, Matthias, Halfmeyer, Insa, Vieri, Margherita, Kricheldorf, Kim, Maurer, Angela, Platzbecker, Uwe, Radsak, Markus, Schafhausen, Philippe, Corbacioglu, Selim, Höchsmann, Britta, Matthias Wilk, C., Hinze, Claas, Chromik, Jörg, Heuser, Michael, Kreuter, Michael, Koschmieder, Steffen, Panse, Jens, Isfort, Susanne, Kurth, Ingo, Brümmendorf, Tim H., Beier, Fabian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Lippincott Williams & Wilkins 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10121438/
https://www.ncbi.nlm.nih.gov/pubmed/37096215
http://dx.doi.org/10.1097/HS9.0000000000000874
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author Tometten, Mareike
Kirschner, Martin
Meyer, Robert
Begemann, Matthias
Halfmeyer, Insa
Vieri, Margherita
Kricheldorf, Kim
Maurer, Angela
Platzbecker, Uwe
Radsak, Markus
Schafhausen, Philippe
Corbacioglu, Selim
Höchsmann, Britta
Matthias Wilk, C.
Hinze, Claas
Chromik, Jörg
Heuser, Michael
Kreuter, Michael
Koschmieder, Steffen
Panse, Jens
Isfort, Susanne
Kurth, Ingo
Brümmendorf, Tim H.
Beier, Fabian
author_facet Tometten, Mareike
Kirschner, Martin
Meyer, Robert
Begemann, Matthias
Halfmeyer, Insa
Vieri, Margherita
Kricheldorf, Kim
Maurer, Angela
Platzbecker, Uwe
Radsak, Markus
Schafhausen, Philippe
Corbacioglu, Selim
Höchsmann, Britta
Matthias Wilk, C.
Hinze, Claas
Chromik, Jörg
Heuser, Michael
Kreuter, Michael
Koschmieder, Steffen
Panse, Jens
Isfort, Susanne
Kurth, Ingo
Brümmendorf, Tim H.
Beier, Fabian
author_sort Tometten, Mareike
collection PubMed
description Telomere biology disorders (TBD) result from premature telomere shortening due to pathogenic germline variants in telomere maintenance-associated genes. In adults, TBD are characterized by mono/oligosymptomatic clinical manifestations (cryptic TBD) contributing to severe underdiagnosis. We present a prospective multi-institutional cohort study where telomere length (TL) screening was performed in either newly diagnosed patients with aplastic anemia (AA) or if TBD was clinically suspected by the treating physician. TL of 262 samples was measured via flow-fluorescence in situ hybridization (FISH). TL was considered suspicious once below the 10th percentile of normal individuals (standard screening) or if below 6.5 kb in patients >40 years (extended screening). In cases with shortened TL, next generation sequencing (NGS) for TBD-associated genes was performed. The patients referred fell into 6 different screening categories: (1) AA/paroxysmal nocturnal hemoglobinuria, (2) unexplained cytopenia, (3) dyskeratosis congenita, (4) myelodysplastic syndrome/acute myeloid leukemia, (5) interstitial lung disease, and (6) others. Overall, TL was found to be shortened in 120 patients (n = 86 standard and n = 34 extended screening). In 17 of the 76 (22.4%) standard patients with sufficient material for NGS, a pathogenic/likely pathogenic TBD-associated gene variant was identified. Variants of uncertain significance were detected in 17 of 76 (22.4%) standard and 6 of 29 (20.7%) extended screened patients. Expectedly, mutations were mainly found in TERT and TERC. In conclusion, TL measured by flow-FISH represents a powerful functional in vivo screening for an underlying TBD and should be performed in every newly diagnosed patient with AA as well as other patients with clinical suspicion for an underlying TBD in both children and adults.
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spelling pubmed-101214382023-04-23 Identification of Adult Patients With Classical Dyskeratosis Congenita or Cryptic Telomere Biology Disorder by Telomere Length Screening Using Age-modified Criteria Tometten, Mareike Kirschner, Martin Meyer, Robert Begemann, Matthias Halfmeyer, Insa Vieri, Margherita Kricheldorf, Kim Maurer, Angela Platzbecker, Uwe Radsak, Markus Schafhausen, Philippe Corbacioglu, Selim Höchsmann, Britta Matthias Wilk, C. Hinze, Claas Chromik, Jörg Heuser, Michael Kreuter, Michael Koschmieder, Steffen Panse, Jens Isfort, Susanne Kurth, Ingo Brümmendorf, Tim H. Beier, Fabian Hemasphere Article Telomere biology disorders (TBD) result from premature telomere shortening due to pathogenic germline variants in telomere maintenance-associated genes. In adults, TBD are characterized by mono/oligosymptomatic clinical manifestations (cryptic TBD) contributing to severe underdiagnosis. We present a prospective multi-institutional cohort study where telomere length (TL) screening was performed in either newly diagnosed patients with aplastic anemia (AA) or if TBD was clinically suspected by the treating physician. TL of 262 samples was measured via flow-fluorescence in situ hybridization (FISH). TL was considered suspicious once below the 10th percentile of normal individuals (standard screening) or if below 6.5 kb in patients >40 years (extended screening). In cases with shortened TL, next generation sequencing (NGS) for TBD-associated genes was performed. The patients referred fell into 6 different screening categories: (1) AA/paroxysmal nocturnal hemoglobinuria, (2) unexplained cytopenia, (3) dyskeratosis congenita, (4) myelodysplastic syndrome/acute myeloid leukemia, (5) interstitial lung disease, and (6) others. Overall, TL was found to be shortened in 120 patients (n = 86 standard and n = 34 extended screening). In 17 of the 76 (22.4%) standard patients with sufficient material for NGS, a pathogenic/likely pathogenic TBD-associated gene variant was identified. Variants of uncertain significance were detected in 17 of 76 (22.4%) standard and 6 of 29 (20.7%) extended screened patients. Expectedly, mutations were mainly found in TERT and TERC. In conclusion, TL measured by flow-FISH represents a powerful functional in vivo screening for an underlying TBD and should be performed in every newly diagnosed patient with AA as well as other patients with clinical suspicion for an underlying TBD in both children and adults. Lippincott Williams & Wilkins 2023-04-20 /pmc/articles/PMC10121438/ /pubmed/37096215 http://dx.doi.org/10.1097/HS9.0000000000000874 Text en Copyright © 2023 the Author(s). Published by Wolters Kluwer Health, Inc. on behalf of the European Hematology Association. https://creativecommons.org/licenses/by-nc-sa/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 License (https://creativecommons.org/licenses/by-nc-sa/4.0/) , which allows others to remix, tweak, and build upon the work non-commercially, as long as the author is credited and the new creations are licensed under the identical terms.
spellingShingle Article
Tometten, Mareike
Kirschner, Martin
Meyer, Robert
Begemann, Matthias
Halfmeyer, Insa
Vieri, Margherita
Kricheldorf, Kim
Maurer, Angela
Platzbecker, Uwe
Radsak, Markus
Schafhausen, Philippe
Corbacioglu, Selim
Höchsmann, Britta
Matthias Wilk, C.
Hinze, Claas
Chromik, Jörg
Heuser, Michael
Kreuter, Michael
Koschmieder, Steffen
Panse, Jens
Isfort, Susanne
Kurth, Ingo
Brümmendorf, Tim H.
Beier, Fabian
Identification of Adult Patients With Classical Dyskeratosis Congenita or Cryptic Telomere Biology Disorder by Telomere Length Screening Using Age-modified Criteria
title Identification of Adult Patients With Classical Dyskeratosis Congenita or Cryptic Telomere Biology Disorder by Telomere Length Screening Using Age-modified Criteria
title_full Identification of Adult Patients With Classical Dyskeratosis Congenita or Cryptic Telomere Biology Disorder by Telomere Length Screening Using Age-modified Criteria
title_fullStr Identification of Adult Patients With Classical Dyskeratosis Congenita or Cryptic Telomere Biology Disorder by Telomere Length Screening Using Age-modified Criteria
title_full_unstemmed Identification of Adult Patients With Classical Dyskeratosis Congenita or Cryptic Telomere Biology Disorder by Telomere Length Screening Using Age-modified Criteria
title_short Identification of Adult Patients With Classical Dyskeratosis Congenita or Cryptic Telomere Biology Disorder by Telomere Length Screening Using Age-modified Criteria
title_sort identification of adult patients with classical dyskeratosis congenita or cryptic telomere biology disorder by telomere length screening using age-modified criteria
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10121438/
https://www.ncbi.nlm.nih.gov/pubmed/37096215
http://dx.doi.org/10.1097/HS9.0000000000000874
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