Showing 541 - 560 results of 648 for search '"Regenerative medicine"', query time: 0.08s Refine Results
  1. 541
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    Optimizing therapeutic outcomes: preconditioning strategies for MSC-derived extracellular vesicles by Yuqi Song, Fengrui Liang, Weikun Tian, Erin Rayhill, Liping Ye, Xinghan Tian

    Published 2025-02-01
    “…Mesenchymal stem cells (MSCs) and MSC-derived extracellular vesicles (MSC-EVs) are increasingly recognized for their therapeutic potential in regenerative medicine, driven by their capabilities in immunomodulation and tissue repair. …”
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    Article
  3. 543

    Mesenchymal Stem Cells Transplantation following Partial Hepatectomy: A New Concept to Promote Liver Regeneration—Systematic Review of the Literature Focused on Experimental Studie... by Ioannis G. Papanikolaou, Charalambos Katselis, Konstantinos Apostolou, Themistoklis Feretis, Maria Lymperi, Manousos M. Konstadoulakis, Apostolos E. Papalois, George C. Zografos

    Published 2017-01-01
    “…Mesenchymal stem cells (MSCs) are an attractive source for regenerative medicine because they are easily accessible through minimally invasive methods and have the potential to enhance liver regeneration (LG) and improve liver function, following partial hepatectomy (PH) and acute or chronic liver injury. …”
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  4. 544

    Stem/Progenitor Cell Niches Involved in Hepatic and Biliary Regeneration by Guido Carpino, Anastasia Renzi, Antonio Franchitto, Vincenzo Cardinale, Paolo Onori, Lola Reid, Domenico Alvaro, Eugenio Gaudio

    Published 2016-01-01
    “…Stem/progenitor niches have important implications in regenerative medicine for the liver and biliary tree and in pathogenic processes leading to diseases of these tissues.…”
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  5. 545

    The Histone Demethylase KDM3B Promotes Osteo-/Odontogenic Differentiation, Cell Proliferation, and Migration Potential of Stem Cells from the Apical Papilla by Chen Zhang, Xiao Han, Yuncun Liang, Huina Liu, Zhipeng Fan, Jianpeng Zhang

    Published 2020-01-01
    “…In brief, we discovered that KDM3B promoted the osteo-/odontogenic differentiation, cell proliferation, and migration potential of SCAPs and provided a novel target and theoretical basis for regenerative medicine.…”
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    Comparative Investigation of Human Amniotic Epithelial Cells and Mesenchymal Stem Cells for Application in Bone Tissue Engineering by Jiawen Si, Jiewen Dai, Jianjun Zhang, Sha Liu, Jing Gu, Jun Shi, Steve G. F. Shen, Lihe Guo

    Published 2015-01-01
    “…Emerging evidence suggests amniotic epithelial cells (AECs) as a promising source of progenitor cells in regenerative medicine and bone tissue engineering. However, investigations comparing the regenerative properties of AECs with other sources of stem cells are particularly needed before the feasibility of AECs in bone tissue engineering can be determined. …”
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  8. 548

    Localization of Liv2 as an Immature Hepatocyte Marker in EB Outgrowth by Ikkei Takashimizu, Yoshiki Tanaka, Susumu Yoshie, Yoshiya Kano, Hinako Ichikawa, Li Cui, Naoko Ogiwara, Kohei Johkura, Katsunori Sasaki

    Published 2009-01-01
    “…This application would allow for the sole selection of immature hepatocytes and provide a useful tool for regenerative medicine.…”
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  9. 549

    Advances in cardiac organoid research: implications for cardiovascular disease treatment by Ziteng Huang, Keran Jia, Yadan Tan, Yang Yu, Wudian Xiao, Xiangyu Zhou, Jingyan Yi, Chunxiang Zhang

    Published 2025-01-01
    “…These organoids not only replicate the autonomous beating and essential electrophysiological properties of the heart but are also widely employed in studies related to cardiac diseases, drug efficacy testing, and regenerative medicine. This review comprehensively surveys the various fabrication techniques used to create cardiac organoids and their diverse applications in modeling a range of cardiac diseases. …”
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    Reprogramming of Adult Retinal Müller Glial Cells into Human-Induced Pluripotent Stem Cells as an Efficient Source of Retinal Cells by Amélie Slembrouck-Brec, Amélie Rodrigues, Oriane Rabesandratana, Giuliana Gagliardi, Céline Nanteau, Stéphane Fouquet, Gilles Thuret, Sacha Reichman, Gael Orieux, Olivier Goureau

    Published 2019-01-01
    “…The reprogramming of human somatic cells to induced pluripotent stem cells (iPSCs) has broad applications in regenerative medicine. The generation of self-organized retinal structures from these iPSCs offers the opportunity to study retinal development and model-specific retinal disease with patient-specific iPSCs and provides the basis for cell replacement strategies. …”
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    Overcoming the Silencing of Doxycycline-Inducible Promoters in hiPSC-derived Cardiomyocytes [version 1; peer review: 1 approved, 2 approved with reservations] by Michelle Guichardaz, Elisa Balmas, Alessandro Bertero, Sveva Bottini

    Published 2024-12-01
    “…Background Human induced pluripotent stem cells (hiPSCs) are pivotal for studying human development, modeling diseases, and advancing regenerative medicine. Effective control of transgene expression is crucial to achieve temporal and quantitative precision in all of these contexts. …”
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  18. 558

    Constructing a potential HLA haplo-homozygous induced pluripotent stem cell haplobank using data from an umbilical cord blood bank by Ji He, Yanmin He, Qigang Zhan, Zhipan Wu, Qi Sheng, Wei Zhang, Faming Zhu

    Published 2025-02-01
    “…Abstract Background Induced pluripotent stem cells (iPSCs) can differentiate into any type of cell and have potential uses in regenerative medicine for the treatment of many diseases. …”
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    Highly Proliferative Immortalized Human Dental Pulp Cells Retain the Odontogenic Phenotype when Combined with a Beta-Tricalcium Phosphate Scaffold and BMP2 by Xiangfen Li, Liu Wang, Qin Su, Ling Ye, Xuedong Zhou, Dongzhe Song, Dingming Huang

    Published 2020-01-01
    “…Human dental pulp cells (HDPCs) play a vital role in dentin formation and reparative dentinogenesis, which indicated their potential application in regenerative medicine. However, HDPCs, which can only be obtained from scarce human pulp tissues, also have a limited lifespan in vitro, and stem cells usually lose their original characteristics over a large number of passages. …”
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