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Stem cells' centrosomes: How can organelles identified 130 years ago contribute to the future of regenerative medicine?
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收稿时间:2021-03-01

Stem cells' centrosomes: How can organelles identified 130 years ago contribute to the future of regenerative medicine?
Andreas Goutas,Varvara Trachana. Stem cells' centrosomes: How can organelles identified 130 years ago contribute to the future of regenerative medicine?[J]. World journal of stem cells, 2021, 13(9): 1177-1196. DOI: doi:10.4252/wjsc.v13.i9.1177
Authors:Andreas Goutas  Varvara Trachana
Affiliation:Andreas Goutas, Varvara Trachana, Department of Biology, Faculty of Medicine, University of Thessaly, Larisa 41500, Biopolis, Greece
Abstract:At the core of regenerative medicine lies the expectation of repair or replacement of damaged tissues or whole organs. Donor scarcity and transplant rejection are major obstacles, and exactly the obstacles that stem cell based therapy promises to overcome. These therapies demand a comprehensive understanding of the asymmetric division of stem cells, i.e. their ability to produce cells with identical potency or differentiated cells. It is believed that with better understanding, researchers will be able to direct stem cell differentiation. Here, we describe extraordinary advances in manipulating stem cell fate that show that we need to focus on the centrosome and the centrosome-derived primary cilium. This belief comes from the fact that this organelle is the vehicle that coordinates the asymmetric division of stem cells. This is supported by studies that report the significant role of the centrosome/cilium in orchestrating signaling pathways that dictate stem cell fate. We anticipate that there is sufficient evidence to place this organelle at the center of efforts that will shape the future of regenerative medicine.
Keywords:Centrosome   Primary cilium   Asymmetry   Self-renewal   Differentiation   Stemness
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