The Role of Autophagy in the Maintenance of Stemness and Differentiation of Mesenchymal Stem Cells

被引:0
作者
Francesca Vittoria Sbrana
Margherita Cortini
Sofia Avnet
Francesca Perut
Marta Columbaro
Angelo De Milito
Nicola Baldini
机构
[1] Istituto Ortopedico Rizzoli,Orthopaedic Pathophysiology and Regenerative Medicine Unit
[2] University of Bologna,Department of Biomedical and Neuromotor Sciences
[3] Istituto Ortopedico Rizzoli,SC Laboratory of Musculoskeletal Cell Biology
[4] Karolinska Institute,Department of Oncology
来源
Stem Cell Reviews and Reports | 2016年 / 12卷
关键词
Mesenchymal stem cell; Autophagy; Stemness; Differentiation; Hypoxia; Acidity; Senescence;
D O I
暂无
中图分类号
学科分类号
摘要
Regulated self-consumption, also known as autophagy, is an evolutionary conserved process that degrades cellular components by directing them to the lysosomal compartment of eukaryotic cells. As a major intracellular degradation and recycling pathway, autophagy is crucial for maintaining and remodeling cellular homeostasis during normal cellular and tissue development. Recent studies have demonstrated that autophagy is necessary for the maintenance of cellular stemness and for a number of differentiation processes, including the lineage determination of mesenchymal stem cells. These are multipotent progenitor cells with self-renewal capacities that can give rise to a subset of tissues and thus hold a consistent potential in regenerative medicine. Here, we review the current literature on the complex liaison between autophagy induced by various extra- or intracellular stimuli and the molecular targets that affect mesenchymal stem cells proliferation and differentiation.
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页码:621 / 633
页数:12
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共 541 条
[61]  
Perez Lanzon M(2013)Acidosis induces reprogramming of cellular metabolism to mitigate oxidative stress Cancer Metabolism 1 2715-3947
[62]  
Zini N(2016)Tumour-specific metabolic adaptation to acidosis is coupled to epigenetic stability in osteosarcoma cells American Journal of Cancer Research 6 1105-30676
[63]  
Izadpanah R(2009)Microenvironmental pH is a key factor for exosome traffic in tumor cells Journal of Biological Chemistry 284 309-840
[64]  
Trygg C(2006)Acid-base disturbances in the intensive care unit: metabolic acidosis Seminars in Dialysis 19 24S-209
[65]  
Patel B(2015)Proton channels and exchangers in cancer Biochimica et Biophysica Acta 1848 3938-510
[66]  
Kriedt C(2013)V-ATPase is a candidate therapeutic target for Ewing sarcoma Biochimica et Biophysica Acta 1832 30664-568
[67]  
Dufour J(1956)On the origin of cancer cells Science 123 829-531
[68]  
Gimble JM(2008)Causes and consequences of increased glucose metabolism of cancers Journal of Nuclear Medicine 49 201-446
[69]  
De Toni F(2012)Chronic autophagy is a cellular adaptation to tumor acidic pH microenvironments Cancer Research 72 501-161
[70]  
Poglio S(2012)Autophagy is a protective mechanism for human melanoma cells under acidic stress Journal of Biological Chemistry 287 557-22