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iPSC modeling of severe aplastic anemia reveals impaired differentiation and telomere shortening in blood progenitors.
Melguizo-Sanchis, Dario; Xu, Yaobo; Taheem, Dheraj; Yu, Min; Tilgner, Katarzyna; Barta, Tomas; Gassner, Katja; Anyfantis, George; Wan, Tengfei; Elango, Ramu; Alharthi, Sameer; El-Harouni, Ashraf A; Przyborski, Stefan; Adam, Soheir; Saretzki, Gabriele; Samarasinghe, Sujith; Armstrong, Lyle; Lako, Majlinda.
Affiliation
  • Melguizo-Sanchis D; Institute of Genetic Medicine, Newcastle University, Newcastle, UK.
  • Xu Y; Institute of Genetic Medicine, Newcastle University, Newcastle, UK.
  • Taheem D; Institute of Genetic Medicine, Newcastle University, Newcastle, UK.
  • Yu M; Institute of Genetic Medicine, Newcastle University, Newcastle, UK.
  • Tilgner K; Institute of Genetic Medicine, Newcastle University, Newcastle, UK.
  • Barta T; Institute of Genetic Medicine, Newcastle University, Newcastle, UK.
  • Gassner K; Institute of Genetic Medicine, Newcastle University, Newcastle, UK.
  • Anyfantis G; Institute of Genetic Medicine, Newcastle University, Newcastle, UK.
  • Wan T; The Ageing Biology Centre. Institute for Cell and Molecular Biosciences, Newcastle University, Newcastle, UK.
  • Elango R; Princess Al Jawhara Al-Brahim Center of Excellence in Research of Hereditary Disorders, King Abdulaziz University, Jeddah, Saudi Arabia.
  • Alharthi S; Princess Al Jawhara Al-Brahim Center of Excellence in Research of Hereditary Disorders, King Abdulaziz University, Jeddah, Saudi Arabia.
  • El-Harouni AA; Princess Al Jawhara Al-Brahim Center of Excellence in Research of Hereditary Disorders, King Abdulaziz University, Jeddah, Saudi Arabia.
  • Przyborski S; Department of Bioscience, Durham University, Durham, UK.
  • Adam S; Hematology Department, King Abdulaziz University, Jeddah, Saudi Arabia.
  • Saretzki G; Department of Medicine, Duke University Medical Center, Durham, USA.
  • Samarasinghe S; The Ageing Biology Centre. Institute for Cell and Molecular Biosciences, Newcastle University, Newcastle, UK.
  • Armstrong L; Department of Hematology, Great Ormond Street Hospital for Children NHS Foundation Trust, London, UK.
  • Lako M; Institute of Genetic Medicine, Newcastle University, Newcastle, UK.
Cell Death Dis ; 9(2): 128, 2018 01 26.
Article in En | MEDLINE | ID: mdl-29374141
ABSTRACT
Aplastic Anemia (AA) is a bone marrow failure (BMF) disorder, resulting in bone marrow hypocellularity and peripheral pancytopenia. Severe aplastic anemia (SAA) is a subset of AA defined by a more severe phenotype. Although the immunological nature of SAA pathogenesis is widely accepted, there is an increasing recognition of the role of dysfunctional hematopoietic stem cells in the disease phenotype. While pediatric SAA can be attributable to genetic causes, evidence is evolving on previously unrecognized genetic etiologies in a proportion of adults with SAA. Thus, there is an urgent need to better understand the pathophysiology of SAA, which will help to inform the course of disease progression and treatment options. We have derived induced pluripotent stem cell (iPSC) from three unaffected controls and three SAA patients and have shown that this in vitro model mimics two key features of the disease (1) the failure to maintain telomere length during the reprogramming process and hematopoietic differentiation resulting in SAA-iPSC and iPSC-derived-hematopoietic progenitors with shorter telomeres than controls; (2) the impaired ability of SAA-iPSC-derived hematopoietic progenitors to give rise to erythroid and myeloid cells. While apoptosis and DNA damage response to replicative stress is similar between the control and SAA-iPSC-derived-hematopoietic progenitors, the latter show impaired proliferation which was not restored by eltrombopag, a drug which has been shown to restore hematopoiesis in SAA patients. Together, our data highlight the utility of patient specific iPSC in providing a disease model for SAA and predicting patient responses to various treatment modalities.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Hematopoietic Stem Cells / Cell Differentiation / Induced Pluripotent Stem Cells / Telomere Shortening / Anemia, Aplastic / Models, Biological Type of study: Observational_studies / Prognostic_studies / Risk_factors_studies Limits: Humans Language: En Journal: Cell Death Dis Year: 2018 Document type: Article Affiliation country: Reino Unido

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Hematopoietic Stem Cells / Cell Differentiation / Induced Pluripotent Stem Cells / Telomere Shortening / Anemia, Aplastic / Models, Biological Type of study: Observational_studies / Prognostic_studies / Risk_factors_studies Limits: Humans Language: En Journal: Cell Death Dis Year: 2018 Document type: Article Affiliation country: Reino Unido