Generation of two isogenic sickle cell disease induced pluripotent stem cell lines from testicular fibroblasts

Curative bone marrow transplantation (BMT) therapies for sickle cell disease (SCD) can cause infertility. The Fertility Preservation Program (FPP) in Pittsburgh cryopreserves testicular tissues for SCD patients prior to BMT in anticipation that those tissues can be thawed in the future and matured t...

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Main Authors: Mitchell R. Harancher, Meena Sukhwani, Carlos A. Castro, Michael H. Hsieh, Kyle E. Orwig
Format: Article
Language:English
Published: Elsevier 2023-12-01
Series:Stem Cell Research
Online Access:http://www.sciencedirect.com/science/article/pii/S187350612300243X
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author Mitchell R. Harancher
Meena Sukhwani
Carlos A. Castro
Michael H. Hsieh
Kyle E. Orwig
author_facet Mitchell R. Harancher
Meena Sukhwani
Carlos A. Castro
Michael H. Hsieh
Kyle E. Orwig
author_sort Mitchell R. Harancher
collection DOAJ
description Curative bone marrow transplantation (BMT) therapies for sickle cell disease (SCD) can cause infertility. The Fertility Preservation Program (FPP) in Pittsburgh cryopreserves testicular tissues for SCD patients prior to BMT in anticipation that those tissues can be thawed in the future and matured to produce sperm. Here, we generated and validated two isogenic patient-derived induced pluripotent stem cell (iPSC) lines from testicular biopsy fibroblasts of a 12-year-old SCD patient.
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spelling doaj.art-7166c5f4e1a648bcacc6878ea1ae38122023-12-07T05:28:25ZengElsevierStem Cell Research1873-50612023-12-0173103257Generation of two isogenic sickle cell disease induced pluripotent stem cell lines from testicular fibroblastsMitchell R. Harancher0Meena Sukhwani1Carlos A. Castro2Michael H. Hsieh3Kyle E. Orwig4Molecular Genetics and Developmental Biology Graduate Program, University of Pittsburgh School of Medicine, USA; Department of Obstetrics, Gynecology and Reproductive Sciences, Magee-Womens Research Institute, University of Pittsburgh School of Medicine, USADepartment of Obstetrics, Gynecology and Reproductive Sciences, Magee-Womens Research Institute, University of Pittsburgh School of Medicine, USADepartment of Obstetrics, Gynecology and Reproductive Sciences, Magee-Womens Research Institute, University of Pittsburgh School of Medicine, USAChildren’s National Hospital, Washington, DC, USAMolecular Genetics and Developmental Biology Graduate Program, University of Pittsburgh School of Medicine, USA; Department of Obstetrics, Gynecology and Reproductive Sciences, Magee-Womens Research Institute, University of Pittsburgh School of Medicine, USA; Corresponding author.Curative bone marrow transplantation (BMT) therapies for sickle cell disease (SCD) can cause infertility. The Fertility Preservation Program (FPP) in Pittsburgh cryopreserves testicular tissues for SCD patients prior to BMT in anticipation that those tissues can be thawed in the future and matured to produce sperm. Here, we generated and validated two isogenic patient-derived induced pluripotent stem cell (iPSC) lines from testicular biopsy fibroblasts of a 12-year-old SCD patient.http://www.sciencedirect.com/science/article/pii/S187350612300243X
spellingShingle Mitchell R. Harancher
Meena Sukhwani
Carlos A. Castro
Michael H. Hsieh
Kyle E. Orwig
Generation of two isogenic sickle cell disease induced pluripotent stem cell lines from testicular fibroblasts
Stem Cell Research
title Generation of two isogenic sickle cell disease induced pluripotent stem cell lines from testicular fibroblasts
title_full Generation of two isogenic sickle cell disease induced pluripotent stem cell lines from testicular fibroblasts
title_fullStr Generation of two isogenic sickle cell disease induced pluripotent stem cell lines from testicular fibroblasts
title_full_unstemmed Generation of two isogenic sickle cell disease induced pluripotent stem cell lines from testicular fibroblasts
title_short Generation of two isogenic sickle cell disease induced pluripotent stem cell lines from testicular fibroblasts
title_sort generation of two isogenic sickle cell disease induced pluripotent stem cell lines from testicular fibroblasts
url http://www.sciencedirect.com/science/article/pii/S187350612300243X
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