Autophagy drives osteogenic differentiation of human gingival mesenchymal stem cells

被引:91
作者
Vidoni, Chiara [1 ]
Ferraresi, Alessandra [1 ]
Secomandi, Eleonora [1 ]
Vallino, Letizia [1 ]
Gardin, Chiara [2 ]
Zavan, Barbara [2 ,3 ]
Mortellaro, Carmen [4 ]
Isidoro, Ciro [1 ]
机构
[1] Univ Piemonte Orientale, Dept Hlth Sci, Lab Mol Pathol, Via P Solaroli 17, I-28100 Novara, Italy
[2] Maria Cecilia Hosp, GVM Care & Res, Via Corriera 1, I-48033 Cotignola, Ravenna, Italy
[3] Univ Ferrara, Med Sci Dept, Via Fossato Mortara 70, Ferrara, Italy
[4] Univ Piemonte Orientale, Dept Med Sci, Oral Surg Unit, Novara, Italy
关键词
AMPK; BECLIN-1; Phytotherapy; Osteoblast; Resveratrol; BONE REPAIR; PROMOTES OSTEOGENESIS; GENE-EXPRESSION; RESVERATROL; AMPK; PHOSPHORYLATION; PROLIFERATION; MODULATION; MECHANISM;
D O I
10.1186/s12964-019-0414-7
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Background/aim Autophagy is a macromolecular degradation process playing a pivotal role in the maintenance of stem-like features and in the morpho-functional remodeling of the tissues undergoing differentiation. In this work we investigated the involvement of autophagy in the osteogenic differentiation of mesenchymal stem cells originated from human gingiva (HGMSC). METHODS: To promote the osteogenic differentiation of HGMSCs we employed resveratrol, a nutraceutical known to modulate autophagy and cell differentiation, together with osteoblastic inductive factors. Osteoblastic differentiation and autophagy were monitored through western blotting and immunofluorescence staining of specific markers. Results We show that HGMSCs can differentiate into osteoblasts when cultured in the presence of appropriate factors and that resveratrol accelerates this process by up-regulating autophagy. The prolonged incubation with dexamethasone, beta-glycerophosphate and ascorbic acid induced the osteogenic differentiation of HGMSCc with increased expression of autophagy markers. Resveratrol (1 mu M) alone elicited a less marked osteogenic differentiation yet it greatly induced autophagy and, when added to the osteogenic differentiation factors, it provoked a synergistic effect. Resveratrol and osteogenic inductive factors synergistically induced the AMPK-BECLIN-1 pro-autophagic pathway in differentiating HGMSCs, that was thereafter downregulated in osteoblastic differentiated cells. Pharmacologic inhibition of BECLIN-1-dependent autophagy precluded the osteogenic differentiation of HGMSCs. Conclusions Autophagy modulation is instrumental for osteoblastic differentiation of HGMSCs. The present findings can be translated into the regenerative cell therapy of maxillary / mandibular bone defects.
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页数:17
相关论文
共 49 条
[1]   Autophagy in stem cells: repair, remodelling and metabolic reprogramming [J].
Boya, Patricia ;
Codogno, Patrice ;
Rodriguez-Muela, Natalia .
DEVELOPMENT, 2018, 145 (04)
[2]   Resveratrol improves bone repair by modulation of bone morphogenetic proteins and osteopontin gene expression in rats [J].
Casarin, R. C. ;
Casati, M. Z. ;
Pimentel, S. P. ;
Cirano, F. R. ;
Algayer, M. ;
Pires, P. R. ;
Ghiraldini, B. ;
Duarte, P. M. ;
Ribeiro, F. V. .
INTERNATIONAL JOURNAL OF ORAL AND MAXILLOFACIAL SURGERY, 2014, 43 (07) :900-906
[3]   The differentiation potential of gingival mesenchymal stem cells induced by apical tooth germ cell-conditioned medium [J].
Chen, Yan ;
Liu, Hongwei .
MOLECULAR MEDICINE REPORTS, 2016, 14 (04) :3565-3572
[4]   Osteoblastic differentiation of human mesenchymal stem cells with platelet lysate [J].
Chevallier, Nathalie ;
Anagnostou, Fani ;
Zilber, Sebastien ;
Bodivit, Gwellaouen ;
Maurin, Sophie ;
Barrault, Aurelie ;
Bierling, Philippe ;
Hernigou, Philippe ;
Layrolle, Pierre ;
Rouard, Helene .
BIOMATERIALS, 2010, 31 (02) :270-278
[5]   Resveratrol enhances proliferation and osteoblastic differentiation in human mesenchymal stem cells via ER-dependent ERK1/2 activation [J].
Dai, Z. ;
Li, Y. ;
Quarles, L. D. ;
Song, T. ;
Pan, W. ;
Zhou, H. ;
Xiao, Z. .
PHYTOMEDICINE, 2007, 14 (12) :806-814
[6]   Mechanism and medical implications of mammalian autophagy [J].
Dikic, Ivan ;
Elazar, Zvulun .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2018, 19 (06) :349-364
[7]   Minimal criteria for defining multipotent mesenchymal stromal cells. The International Society for Cellular Therapy position statement [J].
Dominici, M. ;
Le Blanc, K. ;
Mueller, I. ;
Slaper-Cortenbach, I. ;
Marini, F. C. ;
Krause, D. S. ;
Deans, R. J. ;
Keating, A. ;
Prockop, D. J. ;
Horwitz, E. M. .
CYTOTHERAPY, 2006, 8 (04) :315-317
[8]   Isolation and characterization of human gingiva-derived mesenchymal stem cells using limiting dilution method [J].
Du, Lingqian ;
Yang, Pishan ;
Ge, Shaohua .
JOURNAL OF DENTAL SCIENCES, 2016, 11 (03) :304-314
[9]  
DUCY P, 1995, MOL CELL BIOL, V15, P1858
[10]   Phosphorylation of ULK1 (hATG1) by AMP-Activated Protein Kinase Connects Energy Sensing to Mitophagy [J].
Egan, Daniel F. ;
Shackelford, David B. ;
Mihaylova, Maria M. ;
Gelino, Sara ;
Kohnz, Rebecca A. ;
Mair, William ;
Vasquez, Debbie S. ;
Joshi, Aashish ;
Gwinn, Dana M. ;
Taylor, Rebecca ;
Asara, John M. ;
Fitzpatrick, James ;
Dillin, Andrew ;
Viollet, Benoit ;
Kundu, Mondira ;
Hansen, Malene ;
Shaw, Reuben J. .
SCIENCE, 2011, 331 (6016) :456-461