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Genome-Wide Methylation Changes Associated with Replicative Senescence and Differentiation in Endothelial and Bone Marrow Mesenchymal Stromal Cells.
Giuliani, Angelica; Bacalini, Maria Giulia; Ramini, Deborah; Mensà, Emanuela; Giordani, Chiara; Xumerle, Luciano; Garagnani, Paolo; Olivieri, Fabiola; Procopio, Antonio Domenico; Rippo, Maria Rita; Sabbatinelli, Jacopo.
Afiliação
  • Giuliani A; Department of Clinical and Molecular Sciences, Università Politecnica Delle Marche, 60126 Ancona, Italy.
  • Bacalini MG; IRCCS Istituto delle Scienze Neurologiche di Bologna, 40139 Bologna, Italy.
  • Ramini D; Clinic of Laboratory and Precision Medicine, IRCCS INRCA, 60121 Ancona, Italy.
  • Mensà E; Department of Clinical and Molecular Sciences, Università Politecnica Delle Marche, 60126 Ancona, Italy.
  • Giordani C; Department of Clinical and Molecular Sciences, Università Politecnica Delle Marche, 60126 Ancona, Italy.
  • Xumerle L; Personal Genomic S.R.L, 37134 Verona, Italy.
  • Garagnani P; Department of Experimental, Diagnostic and Specialty Medicine, University of Bologna, 40126 Bologna, Italy.
  • Olivieri F; Applied Biomedical Research Center (CRBA), S. Orsola-Malpighi Polyclinic, 40126 Bologna, Italy.
  • Procopio AD; CNR Institute of Molecular Genetics "Luigi Luca Cavalli-Sforza"-Unit of Bologna, 40126 Bologna, Italy.
  • Rippo MR; Department of Laboratory Medicine, Clinical Chemistry, Karolinska Institutet, Karolinska University Hospital, 141 86 Huddinge, Sweden.
  • Sabbatinelli J; Department of Clinical and Molecular Sciences, Università Politecnica Delle Marche, 60126 Ancona, Italy.
Cells ; 12(2)2023 01 11.
Article em En | MEDLINE | ID: mdl-36672222
Bone marrow mesenchymal stromal cells (BMSCs) are multipotent cells able to self-renew and differentiate, depending on the microenvironment, into adipocytes and osteoblasts. These cells have a limited number of replications and enter replicative senescence during in vitro expansion. The role of DNA methylation (DNAm) assumes importance in cell function and commitment; however, its exact contribution to BMSC differentiation and replicative senescence is still unclear. We performed a genome-wide DNAm analysis on BMSCs cultured in vitro at early passages and induced to differentiate into adipocytes and osteoblasts, and on replicative senescent BMSCs and HUVECs, to identify DNAm patterns of senescence and differentiation. We also compared BMSCs and HUVECs in replicative senescence and found that, in both cellular systems, genome-wide hypomethylation was accompanied by a higher-than-expected overlap of differentially methylated positions (DMPs) and concordance in terms of direction of the change. A Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway enrichment analysis on lineage-independent senescence-associated DMPs revealed 16 common pathways, including Insulin resistance, Molecule adhesion, and Wnt/ß-catenin signaling. In both adipogenesis and osteogenesis, we observed a general demethylation of CpG sites compared with undifferentiated BMSCs with a higher number of DMPs in osteogenesis. KEGG analysis resulted in 30 pathways enriched in osteoblasts and only 2 in adipocytes when compared to undifferentiated cells. When comparing differentiated BMSCs with senescent ones, osteogenesis exhibited a greater overlap with senescence in terms of number of DMPs and direction of methylation change compared to adipogenesis. In conclusion, this study may be useful for future research on general mechanisms that occur in replicative senescence and furthermore to identify trajectories of BMSC differentiation and common aspects of differentiated and senescent cells.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Medula Óssea / Células-Tronco Mesenquimais Tipo de estudo: Risk_factors_studies Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Medula Óssea / Células-Tronco Mesenquimais Tipo de estudo: Risk_factors_studies Idioma: En Ano de publicação: 2023 Tipo de documento: Article