Yonetani Saori, Moriyama Mariko, Nishigori Chikako, Osawa Masatake, Nishikawa Shin-ichi
Laboratory for Stem Cell Biology, RIKEN Center for Developmental Biology, Kobe, Japan.
J Invest Dermatol. 2008 Feb;128(2):408-20. doi: 10.1038/sj.jid.5700997. Epub 2007 Jul 26.
Elucidation of the molecular mechanisms underlying stem cell regulation is of great importance both for basic biology and for clinical applications. Melanocyte stem cells (MSCs) are an excellent model in which to study the molecular basis of stem cell regulation, as the genetic alterations involved in the maintenance of the stem cells are readily identifiable by a premature hair graying phenotype. Research on MSCs has been hampered by the lack of a reliable system to assay their function. Here, by co-culturing highly purified melanoblasts (MBs) with XB2 keratinocytes, we describe an efficient culture method that allows the expansion of immature MBs in vitro. These MBs are also capable of undergoing terminal differentiation into mature melanocytes (MCs) when differentiation is induced. Furthermore, by performing a hair-follicle reconstitution assay in which expanded MBs in a mixture of epidermal and dermal cells were grafted to reconstitute a hair follicle, we demonstrate that the expanded MBs retain their capacity to become incorporated into newly developed hair follicles and repopulate the MC stem cell population there. Thus, by integrating genetic manipulations in cultured MBs in vitro, this method provides a powerful tool with which to study the molecular basis of stem cell regulation.
阐明干细胞调控的分子机制对于基础生物学和临床应用都非常重要。黑素细胞干细胞(MSCs)是研究干细胞调控分子基础的极佳模型,因为参与干细胞维持的基因改变可通过早发性白发表型轻易识别。由于缺乏可靠的检测其功能的系统,对MSCs的研究受到了阻碍。在此,通过将高度纯化的成黑素细胞(MBs)与XB2角质形成细胞共培养,我们描述了一种有效的培养方法,该方法可使未成熟的MBs在体外扩增。当诱导分化时,这些MBs也能够终末分化为成熟黑素细胞(MCs)。此外,通过进行毛囊重建试验,即将扩增的MBs与表皮和真皮细胞混合移植以重建毛囊,我们证明扩增的MBs保留了融入新发育毛囊并重新填充其中MC干细胞群体的能力。因此,通过在体外培养的MBs中整合基因操作,该方法提供了一个强大的工具来研究干细胞调控的分子基础。