Showing 61 - 80 results of 187 for search '"Induced pluripotent stem cell"', query time: 0.08s Refine Results
  1. 61

    Generation of a human induced pluripotent stem cell line (UNIFEi001-A) from a patient with Spinocerebellar ataxia type 1 (SCA1) by Mariangela Pappadà, Sara Melija, Martina Facchini, Mara Martino, Sofia Minarini, Anna Caproni, Chiara Nordi, Paola Rimessi, Rita Selvatici, Peggy Marconi

    Published 2025-03-01
    “…Spinocerebellar ataxia type 1 (SCA1) is one of six SCAs related to the expansion of a CAG repeat, encoding glutamine. Induced pluripotent stem cells were generated by reprogramming fibroblasts isolated from a patient affected by SCA1, through the transduction of three viral vectors derived from a non-integrative virus. …”
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    Inhibition of JAK-STAT ERK/MAPK and Glycogen Synthase Kinase-3 Induces a Change in Gene Expression Profile of Bovine Induced Pluripotent Stem Cells by Luis F. Malaver-Ortega, Huseyin Sumer, Jun Liu, Paul J. Verma

    Published 2016-01-01
    “…With the advent of nuclear reprogramming, bovine induced pluripotent stem cells (biPSCs) have been generated. These cells represent examples of a transient-intermediate state of pluripotency with remarkable characteristics and biotechnological potential. …”
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    In Vitro Characterization of Motor Neurons and Purkinje Cells Differentiated from Induced Pluripotent Stem Cells Generated from Patients with Autosomal Recessive Spastic Ataxia of Charlevoix-Saguenay by Aurélie Louit, Marie-Josée Beaudet, Mathieu Blais, François Gros-Louis, Nicolas Dupré, François Berthod

    Published 2023-01-01
    “…To investigate the impact of the mutated sacsin protein in these cells in vitro, induced pluripotent stem cell- (iPSC-) derived motor neurons and iPSC-derived Purkinje cells were generated from three ARSACS patients. …”
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  8. 68

    Comparative Analysis of Tenogenic Gene Expression in Tenocyte-Derived Induced Pluripotent Stem Cells and Bone Marrow-Derived Mesenchymal Stem Cells in Response to Biochemical and Biomechanical Stimuli by Feikun Yang, Dean W. Richardson

    Published 2021-01-01
    “…In this study, we extensively investigated the expression of tenogenic genes in equine bone marrow mesenchymal stem cells (BMSCs) and tenocyte-derived induced pluripotent stem cells (teno-iPSCs) stimulated by growth factors (TGF-β3 and BMP12) combined with ectopic expression of tenogenic transcription factor MKX or cyclic uniaxial mechanical stretch. …”
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  9. 69

    Antibody-mediated degradation of 4R-tau restores mitochondrial membrane polarization in human induced pluripotent stem cell-derived neurons with the MAPT 10+16 mutation by Dale O. Starkie, Charles Arber, Terry Baker, Daniel J. Lightwood, Selina Wray

    Published 2024-12-01
    “…These were used to probe the molecular mechanisms of excess 4 R-tau in disease-mutant induced pluripotent stem cell-derived neurons. For the first time, we demonstrate a causative link between excess 4 R-tau and mitochondrial membrane hyperpolarization with wide-ranging potential for elucidating novel therapeutic approaches to treat neurodegenerative disease.…”
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  10. 70

    Mesenchymal Stem/Stromal Cells Derived from Induced Pluripotent Stem Cells Support CD34pos Hematopoietic Stem Cell Propagation and Suppress Inflammatory Reaction by Mohsen Moslem, Irina Eberle, Iuliia Weber, Reinhard Henschler, Tobias Cantz

    Published 2015-01-01
    “…Substantial self-renewing of stem cells can be achieved by reprogramming cells into induced pluripotent stem cells (iPSCs) that can be easily expanded as undifferentiated cells even in mass culture. …”
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    Generation of a human induced pluripotent stem cell (iPSC) line ERPLi004-A from an Alpha-1 antitrypsin deficiency (AATD) patient with SERPINA1 mutation by Harshini Surendran, Rajani Battu, Renjitha Gopurappilly, Chethala N. Vishnuprasad, Rajarshi Pal

    Published 2025-03-01
    “…Here, we describe the generation of an induced pluripotent stem cell (iPSC) line from peripheral blood mononuclear cells (PBMC) isolated from a AATD patient using non viral and non-integrating episomal vectors. …”
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  13. 73

    Resveratrol Enhances Cardiomyocyte Differentiation of Human Induced Pluripotent Stem Cells through Inhibiting Canonical WNT Signal Pathway and Enhancing Serum Response Factor-miR-1 Axis by Hui Liu, Shaoli Zhang, Lihua Zhao, Yan Zhang, Qiuping Li, Xiaoyan Chai, Yongchun Zhang

    Published 2016-01-01
    “…However, whether this agent can affect cardiomyocytes (CMs) differentiation of induced pluripotent stem cells (iPSCs) is not yet clear. This study explored whether RSV can affect CMs differentiation of human iPSCs. …”
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    Derivation of induced pluripotent stem cell TUSMi013-A from a 66-year-old Chinese Han Parkinson’s disease patient carrying VPS13C and TBP mutations by Can Cui, Jian Chen, Hao Shen, Bei Zhang

    Published 2025-03-01
    “…Parkinson’s Disease (PD), a prevalent neurodegenerative condition, is distinguished by its motor dysfunction. Induced pluripotent stem cells (iPSCs), derived from PD patients, constitute an exquisite investigative tool for elucidating the pathophysiology of the disease, assessing candidate therapeutics, and probing the potential for regenerative medicine approaches. …”
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    Targeted Inhibition of the miR-199a/214 Cluster by CRISPR Interference Augments the Tumor Tropism of Human Induced Pluripotent Stem Cell-Derived Neural Stem Cells under Hypoxic Condition by Yumei Luo, Xuehu Xu, Xiuli An, Xiaofang Sun, Shu Wang, Detu Zhu

    Published 2016-01-01
    “…The human induced pluripotent stem cell (hiPSC) provides a breakthrough approach that helps overcoming ethical and allergenic challenges posed in application of neural stem cells (NSCs) in targeted cancer gene therapy. …”
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    Generation of an induced pluripotent stem cell line (UCLi026-A) from a patient with ADCY5-related disease carrying the heterozygous variant c.1253G > A; (p.... by Sharmin Alhaque, Dimitri Budinger, Barbara Garavaglia, Giovanna Zorzi, Serena Barral, Manju A. Kurian

    Published 2025-04-01
    “…We generated an induced pluripotent stem cell line from the fibroblasts of an affected patient with the common heterozygous pathogenic variant, c.1253G > A (p.Arg418Gln). …”
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