Mitsiadis Thimios A, Barrandon Ornella, Rochat Ariane, Barrandon Yann, De Bari Cosimo
Department of Orofacial Development and Structure, Institute of Oral Biology, University of Zurich, Plattenstrasse 11, CH 8032, Zurich, Switzerland.
Exp Cell Res. 2007 Oct 1;313(16):3377-85. doi: 10.1016/j.yexcr.2007.07.027. Epub 2007 Aug 2.
Stem cells safeguard tissue homeostasis and guarantee tissue repair throughout life. The decision between self-renewal and differentiation is influenced by a specialized microenvironment called stem cell niche. Physical and molecular interactions with niche cells and orientation of the cleavage plane during stem cell mitosis control the balance between symmetric and asymmetric division of stem cells. Here we highlight recent progress made on the anatomical and molecular characterization of mammalian stem cell niches, focusing particularly on bone marrow, tooth and hair follicle. The knowledge of the regulation of stem cells within their niches in health and disease will be instrumental to develop novel therapies that target stem cell niches to achieve tissue repair and re-establish tissue homeostasis.
干细胞维持组织内稳态,并在整个生命过程中确保组织修复。自我更新和分化之间的抉择受一种名为干细胞微环境的特殊微环境影响。干细胞与微环境细胞之间的物理和分子相互作用,以及干细胞有丝分裂期间分裂平面的取向,控制着干细胞对称和不对称分裂之间的平衡。在此,我们着重介绍哺乳动物干细胞微环境在解剖学和分子特征方面的最新进展,尤其关注骨髓、牙齿和毛囊。了解健康和疾病状态下干细胞在其微环境中的调控机制,将有助于开发针对干细胞微环境的新型疗法,以实现组织修复并重建组织内稳态。