Showing 221 - 240 results of 349 for search '"pluripotent"', query time: 0.05s Refine Results
  1. 221

    Regeneration in the absence of canonical neoblasts in an early branching flatworm by Ludwik Gąsiorowski, Chew Chai, Andrei Rozanski, Gargi Purandare, Fruzsina Ficze, Athanasia Mizi, Bo Wang, Jochen C. Rink

    Published 2025-01-01
    “…Abstract The remarkable regenerative abilities of flatworms are closely linked to neoblasts – adult pluripotent stem cells that are the only division-competent cell type outside of the reproductive system. …”
    Get full text
    Article
  2. 222

    Supramolecular Biopolymers for Tissue Engineering by Rosario Pérez-Pedroza, Alan Ávila-Ramírez, Zainab Khan, Manola Moretti, Charlotte A. E. Hauser

    Published 2021-01-01
    “…These characteristics are vital for the further development of current trends in TE, such as the use of pluripotent cells for organoid generation, cell-free scaffolds for tissue regeneration, patient-derived organ models, and controlled delivery systems of small molecules. …”
    Get full text
    Article
  3. 223

    Existence of Neural Stem Cells in Mouse Spleen by Koichi Tomita, Hiroshi Ishikawa

    Published 2019-01-01
    “…Pluripotent stem cells are used in regenerative medicine and exist in various internal organs. …”
    Get full text
    Article
  4. 224

    Current Therapeutic Strategies for Stem Cell-Based Cartilage Regeneration by Yoojun Nam, Yeri Alice Rim, Jennifer Lee, Ji Hyeon Ju

    Published 2018-01-01
    “…We also review the chondrogenic potential of cells according to their origin, including autologous chondrocytes, mesenchymal stem cells, and induced pluripotent stem cells.…”
    Get full text
    Article
  5. 225

    Stem Cell-Based Therapies for Liver Diseases: State of the Art and New Perspectives by Anna Chiara Piscaglia, Mariachiara Campanale, Antonio Gasbarrini, Giovanni Gasbarrini

    Published 2010-01-01
    “…These include embryonic and fetal SCs, induced pluripotent cells, annex SCs, endogenous liver SCs, and extrahepatic adult SCs. …”
    Get full text
    Article
  6. 226

    The Efficiency of Direct Maturation: the Comparison of Two hiPSC Differentiation Approaches into Motor Neurons by Catherine Schaefers, Simone Rothmiller, Horst Thiermann, Theo Rein, Annette Schmidt

    Published 2022-01-01
    “…Motor neurons (MNs) derived from human-induced pluripotent stem cells (hiPSC) hold great potential for the treatment of various motor neurodegenerative diseases as transplantations with a low-risk of rejection are made possible. …”
    Get full text
    Article
  7. 227

    Dual Inhibition of Activin/Nodal/TGF-β and BMP Signaling Pathways by SB431542 and Dorsomorphin Induces Neuronal Differentiation of Human Adipose Derived Stem Cells by Vedavathi Madhu, Abhijit S. Dighe, Quanjun Cui, D. Nicole Deal

    Published 2016-01-01
    “…We therefore sought to determine if a simple, one-step, and cost effective method, previously reported to induce neuronal differentiation of embryonic stem cells and induced-pluripotent stem cells, can be applied to adult stem cells. …”
    Get full text
    Article
  8. 228

    Research prospects for kidney xenotransplantation: a bibliometric analysis by Shujun Yang, Mingtao Zhang, Hao Wei, Bin Zhang, Jiang Peng, Panfeng Shang, Shengkun Sun

    Published 2024-12-01
    “…We found that ‘co-stimulation blockade’, ‘xenograft survival’, ‘pluripotent stem cell’, ‘translational research’, and ‘genetic engineering’ were likely to be the focus of attention in the coming years.Conclusions This study screened global publications related to xenogeneic kidney transplantation; analyzed their literature metrology characteristics; identified the most cited articles in the research field; understood the current situation, hot spots, and trends of global research; and provided future development directions for researchers and practitioners.…”
    Get full text
    Article
  9. 229

    Regenerative Medicine for Neurological Disorders by Dong-Hyuk Park, David J. Eve, Yong-Gu Chung, Paul R. Sanberg

    Published 2010-01-01
    “…Newly developed stem cells, such as amniotic epithelial stem cells and induced pluripotent stem cells, as well as well-known traditional stem cells, such as neural, embryonic, bone marrow mesenchymal, and human umbilical cord blood–derived stem cells, were reported. …”
    Get full text
    Article
  10. 230

    The Potential for Cellular Therapy Combined with Growth Factors in Spinal Cord Injury by Jack Rosner, Pablo Avalos, Frank Acosta, John Liu, Doniel Drazin

    Published 2012-01-01
    “…Research is being conducted in the following areas: pathophysiology, cellular therapies (Schwann cells, embryonic stem cells, induced pluripotent stem cells, mesenchymal stem cells, olfactory ensheathing cells), growth factors (BDNF), inhibitory molecules (NG2, myelin protein), and combination therapies (cell grafts and neurotrophins, cotransplantation). …”
    Get full text
    Article
  11. 231

    Gut microbiota modulation in cardiac cell therapy with immunosuppression in a nonhuman primate ischemia/reperfusion model by Hung-Chih Chen, Yu-Che Cheng, Marvin L. Hsieh, Po-Ju Lin, Emily F. Wissel, Theodore Steward, Cindy M. C. Chang, Jennifer Coonen, Timothy A. Hacker, Timothy J. Kamp, Patrick C. H. Hsieh

    Published 2025-01-01
    “…We investigated gut microbiota dynamics in a nonhuman primate (NHP) cardiac ischemia/reperfusion model while under immunosuppression and receiving cell therapy with human induced pluripotent stem cell (hiPSC)-derived endothelial cells (EC) and cardiomyocytes (CM). …”
    Get full text
    Article
  12. 232

    Rapid iPSC-derived neuromuscular junction model uncovers motor neuron dominance in amyotrophic lateral sclerosis cytopathy by Hsiao-Chien Ting, Yun-Ting Guo, Hong-Lin Su, Yu-Shuan Chen, Shinn-Zong Lin, Horng-Jyh Harn, Chia-Yu Chang

    Published 2025-01-01
    “…Although human induced pluripotent stem cell (iPSC)-derived models have advanced NMJ research, their application is constrained by challenges such as limited differentiation efficiency, lengthy generation times, and cryopreservation difficulties. …”
    Get full text
    Article
  13. 233

    Occurring of In Vitro Functional Vasculogenic Pericytes from Human Circulating Early Endothelial Precursor Cell Culture by Silvia Cantoni, Francesca Bianchi, Margherita Galletti, Elena Olivi, Francesco Alviano, Nazzareno Galiè, Carlo Ventura

    Published 2015-01-01
    “…In addition, hPPCs can be subcultured and exhibit expression of pluripotent genes (OCT-4, KLF-4, and NANOG) as well as a remarkable vasculogenic potential. …”
    Get full text
    Article
  14. 234

    The Intersection of Epigenetics and Senolytics in Mechanisms of Aging and Therapeutic Approaches by Daiana Burdusel, Thorsten R. Doeppner, Roxana Surugiu, Dirk M. Hermann, Denissa Greta Olaru, Aurel Popa-Wagner

    Published 2024-12-01
    “…Epigenetic reprogramming strategies, such as induced pluripotent stem cells, may further complement senolytics by rejuvenating aged cells. …”
    Get full text
    Article
  15. 235

    Organoid models: applications and research advances in colorectal cancer by Yijie Wu, Yijie Wu, Yu Sha, Xingpo Guo, Ling Gao, Jian Huang, Song-Bai Liu, Song-Bai Liu

    Published 2025-02-01
    “…This article further analyzes the applications of adult stem cell-derived and pluripotent stem cell-derived organoids in colorectal cancer research and discusses advancements in organoids for basic research, drug research and development, personalized treatment evaluation and prediction, and regenerative medicine. …”
    Get full text
    Article
  16. 236

    Temporal Requirements of cMyc Protein for Reprogramming Mouse Fibroblasts by Corey Heffernan, Huseyin Sumer, Luis F. Malaver-Ortega, Paul J. Verma

    Published 2012-01-01
    “…Thus, the feasibility of substituting cMyc transgene with (non-integrative) recombinant “pTAT-mcMyc” protein delivery was assessed, without compromising reprogramming efficiency or the pluripotent phenotype. Purification and delivery of semisoluble/particulate pTAT-mcMyc maintained Oct4-GFP+ colony formation (i.e., reprogramming efficiency) whilst supporting pluripotency by various criteria. …”
    Get full text
    Article
  17. 237

    Drug repurposing screen for the rare disease ataxia-telangiectasia by Namrata Jayanth, Gurvan Mahé, Matthew Campbell, Mike Lipkin, Shushant Jain, Rhea van de Bospoort, Jennifer Thornton, Brad Margus, David F. Fischer

    Published 2025-01-01
    “…The cause of neurodegeneration due to mutations in ATM is still an area of investigation, and currently there is no known treatment to slow down or stop the progression of the neurological problems.In this collaboration of the A-T Children's Project (ATCP) with Charles River Discovery, we successfully developed a high-throughput assay using induced pluripotent stem cells (iPSC) from A-T donors to measure DNA damage response (DDR). …”
    Get full text
    Article
  18. 238

    Use of a Sendai virus-based vector for effcient transduction of pinniped fbroblasts by V. R. Beklemisheva, A. G. Menzorov

    Published 2019-01-01
    “…Generation of induced pluripotent stem (iPS) cells expanded possibilities of pluripotency and early development studies. …”
    Get full text
    Article
  19. 239

    Current Advances in Pharmacotherapy and Technology for Diabetic Retinopathy: A Systematic Review by Lei Lu, Ying Jiang, Ravindran Jaganathan, Yanli Hao

    Published 2018-01-01
    “…Recently, advancements in pluripotent stem cells technology enable restoration of retinal functionalities after transplantation of these cells into animals with retinal degeneration. …”
    Get full text
    Article
  20. 240

    Bone Marrow Aspirate Concentrate-Enhanced Marrow Stimulation of Chondral Defects by Henning Madry, Liang Gao, Hermann Eichler, Patrick Orth, Magali Cucchiarini

    Published 2017-01-01
    “…A bone marrow clot forms within the cartilage defect either as a result of marrow stimulation or during the course of the spontaneous repair of osteochondral defects. Mobilized pluripotent MSCs from the subchondral bone migrate into the defect filled with the clot, differentiate into chondrocytes and osteoblasts, and form a repair tissue over time. …”
    Get full text
    Article