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Optimization of oxidative stress for mesenchymal stromal/stem cell  engraftment, function and longevity - ScienceDirect
Optimization of oxidative stress for mesenchymal stromal/stem cell engraftment, function and longevity - ScienceDirect

IJMS | Free Full-Text | Chronological Age Affects MSC Senescence In Vitro—A  Systematic Review | HTML
IJMS | Free Full-Text | Chronological Age Affects MSC Senescence In Vitro—A Systematic Review | HTML

1,25‐Dihydroxyvitamin D protects against age‐related osteoporosis by a  novel VDR‐Ezh2‐p16 signal axis - Yang - 2020 - Aging Cell - Wiley Online  Library
1,25‐Dihydroxyvitamin D protects against age‐related osteoporosis by a novel VDR‐Ezh2‐p16 signal axis - Yang - 2020 - Aging Cell - Wiley Online Library

Senescence of mesenchymal stem cells (Review)
Senescence of mesenchymal stem cells (Review)

Enhancer of Zeste Homolog 2 and Histone Deacetylase 9c Regulate Age‐Dependent  Mesenchymal Stem Cell Differentiation into Osteoblasts and Adipocytes -  Chen - 2016 - STEM CELLS - Wiley Online Library
Enhancer of Zeste Homolog 2 and Histone Deacetylase 9c Regulate Age‐Dependent Mesenchymal Stem Cell Differentiation into Osteoblasts and Adipocytes - Chen - 2016 - STEM CELLS - Wiley Online Library

Role of EZH2 in bone marrow mesenchymal stem cells and immune–cancer  interactions - ScienceDirect
Role of EZH2 in bone marrow mesenchymal stem cells and immune–cancer interactions - ScienceDirect

Knockdown of Ezh2 by shRNA and its effects on global and p16 INK4a... |  Download Scientific Diagram
Knockdown of Ezh2 by shRNA and its effects on global and p16 INK4a... | Download Scientific Diagram

Epigenetic Regulation of Bone Marrow Stem Cell Aging: Revealing Epigenetic  Signatures associated with Hematopoietic and Mesenchymal Stem Cell Aging
Epigenetic Regulation of Bone Marrow Stem Cell Aging: Revealing Epigenetic Signatures associated with Hematopoietic and Mesenchymal Stem Cell Aging

Inflammation, epigenetics, and metabolism converge to cell senescence and  ageing: the regulation and intervention | Signal Transduction and Targeted  Therapy
Inflammation, epigenetics, and metabolism converge to cell senescence and ageing: the regulation and intervention | Signal Transduction and Targeted Therapy

Enhancer of Zeste Homolog 2 and Histone Deacetylase 9c Regulate Age‐Dependent  Mesenchymal Stem Cell Differentiation into Osteoblasts and Adipocytes -  Chen - 2016 - STEM CELLS - Wiley Online Library
Enhancer of Zeste Homolog 2 and Histone Deacetylase 9c Regulate Age‐Dependent Mesenchymal Stem Cell Differentiation into Osteoblasts and Adipocytes - Chen - 2016 - STEM CELLS - Wiley Online Library

Chromatin immunoprecipitation (ChIP) assays for p16 INK4a... | Download  Scientific Diagram
Chromatin immunoprecipitation (ChIP) assays for p16 INK4a... | Download Scientific Diagram

Expression of senescence-related molecules and patterns of global... |  Download Scientific Diagram
Expression of senescence-related molecules and patterns of global... | Download Scientific Diagram

Epigenetic Regulation of Bone Marrow Stem Cell Aging: Revealing Epigenetic  Signatures associated with Hematopoietic and Mesenchymal Stem Cell Aging
Epigenetic Regulation of Bone Marrow Stem Cell Aging: Revealing Epigenetic Signatures associated with Hematopoietic and Mesenchymal Stem Cell Aging

DNA Methyltransferase Controls Stem Cell Aging by Regulating BMI1 and EZH2  through MicroRNAs | PLOS ONE
DNA Methyltransferase Controls Stem Cell Aging by Regulating BMI1 and EZH2 through MicroRNAs | PLOS ONE

Frontiers | Mesenchymal Stem Cell Senescence and Rejuvenation: Current  Status and Challenges | Cell and Developmental Biology
Frontiers | Mesenchymal Stem Cell Senescence and Rejuvenation: Current Status and Challenges | Cell and Developmental Biology

Epigenetic Regulation of Mesenchymal Stem Cell Homeostasis: Trends in Cell  Biology
Epigenetic Regulation of Mesenchymal Stem Cell Homeostasis: Trends in Cell Biology

Frontiers | Are There Common Mechanisms Between the Hutchinson–Gilford  Progeria Syndrome and Natural Aging? | Genetics
Frontiers | Are There Common Mechanisms Between the Hutchinson–Gilford Progeria Syndrome and Natural Aging? | Genetics

p16INK4A-expressing mesenchymal stromal cells restore the  senescence–clearance–regeneration sequence that is impaired in chronic  muscle inflammation - eBioMedicine
p16INK4A-expressing mesenchymal stromal cells restore the senescence–clearance–regeneration sequence that is impaired in chronic muscle inflammation - eBioMedicine

p16-coupled miRNA pathways mediate cellular senescence. PcG members... |  Download Scientific Diagram
p16-coupled miRNA pathways mediate cellular senescence. PcG members... | Download Scientific Diagram

Regulation of Cellular Senescence by Polycomb Chromatin Modifiers through  Distinct DNA Damage- and Histone Methylation-Dependent
Regulation of Cellular Senescence by Polycomb Chromatin Modifiers through Distinct DNA Damage- and Histone Methylation-Dependent

Biomolecules | Free Full-Text | Molecular Mechanisms Contributing to  Mesenchymal Stromal Cell Aging | HTML
Biomolecules | Free Full-Text | Molecular Mechanisms Contributing to Mesenchymal Stromal Cell Aging | HTML

Epigenetic Dysregulation of Mesenchymal Stem Cells (MSCs) in Aging and... |  Download Scientific Diagram
Epigenetic Dysregulation of Mesenchymal Stem Cells (MSCs) in Aging and... | Download Scientific Diagram

AGE-RELATED CHANGES IN MESENCHYMAL STEM CELLS IDENTIFIED USING A  MULTI-OMICS APPROACH
AGE-RELATED CHANGES IN MESENCHYMAL STEM CELLS IDENTIFIED USING A MULTI-OMICS APPROACH

Frontiers | The Upregulation of Toll-Like Receptor 3 via Autocrine IFN-β  Signaling Drives the Senescence of Human Umbilical Cord Blood-Derived  Mesenchymal Stem Cells Through JAK1 | Immunology
Frontiers | The Upregulation of Toll-Like Receptor 3 via Autocrine IFN-β Signaling Drives the Senescence of Human Umbilical Cord Blood-Derived Mesenchymal Stem Cells Through JAK1 | Immunology

EZH2 reduction is an essential mechanoresponse for the maintenance of  super-enhancer polarization against compressive stress in human periodontal  ligament stem cells | Cell Death & Disease
EZH2 reduction is an essential mechanoresponse for the maintenance of super-enhancer polarization against compressive stress in human periodontal ligament stem cells | Cell Death & Disease

KDM3A and KDM4C Regulate Mesenchymal Stromal Cell Senescence and Bone Aging  via Condensin-mediated Heterochromatin Reorganization - ScienceDirect
KDM3A and KDM4C Regulate Mesenchymal Stromal Cell Senescence and Bone Aging via Condensin-mediated Heterochromatin Reorganization - ScienceDirect

Inhibition of EZH2 Activity Induces Senescence in the Absence of DNA... |  Download Scientific Diagram
Inhibition of EZH2 Activity Induces Senescence in the Absence of DNA... | Download Scientific Diagram