Zhuang Lizhe, Lawlor Kynan T, Schlueter Holger, Pieterse Zalitha, Yu Yu, Kaur Pritinder
Peter MacCallum Cancer Centre, Melbourne, Australia.
School of Pharmacy and Biomedical Sciences, Curtin Health Innovation Research Institute, Curtin University, Perth, Australia.
Life Sci Alliance. 2018 Jul 24;1(4):e201700009. doi: 10.26508/lsa.201700009. eCollection 2018 Aug.
The cellular and molecular microenvironment of epithelial stem/progenitor cells is critical for their long-term self-renewal. We demonstrate that mesenchymal stem cell-like dermal microvascular pericytes are a critical element of the skin's microenvironment influencing human skin regeneration using organotypic models. Specifically, pericytes were capable of promoting homeostatic skin tissue renewal by conferring more planar cell divisions generating two basal cells within the proliferative compartment of the human epidermis, while ensuring complete maturation of the tissue both spatially and temporally. Moreover, we provide evidence supporting the notion that BMP-2, a secreted protein preferentially expressed by pericytes in human skin, confers cell polarity and planar divisions on epidermal cells in organotypic cultures. Our data suggest that human skin regeneration is regulated by highly conserved mechanisms at play in other rapidly renewing tissues such as the bone marrow and in lower organisms such as . Our work also provides the means to significantly improve skin tissue regeneration for autologous transplantation.
上皮干细胞/祖细胞的细胞和分子微环境对其长期自我更新至关重要。我们利用器官型模型证明,间充质干细胞样真皮微血管周细胞是影响人类皮肤再生的皮肤微环境的关键要素。具体而言,周细胞能够通过赋予更多平面细胞分裂来促进稳态皮肤组织更新,在人类表皮的增殖区产生两个基底细胞,同时确保组织在空间和时间上完全成熟。此外,我们提供的证据支持这样一种观点,即BMP - 2是一种在人类皮肤中由周细胞优先表达的分泌蛋白,它在器官型培养中赋予表皮细胞极性和平面分裂。我们的数据表明,人类皮肤再生受在其他快速更新组织(如骨髓)和低等生物中起作用的高度保守机制调控。我们的工作还提供了显著改善用于自体移植的皮肤组织再生的方法。