Kang Hara, Sánchez Alvarado Alejandro
Department of Neurobiology and Anatomy, Howard Hughes Medical Institute, University of Utah, Salt Lake City, Utah 84132, USA.
Dev Dyn. 2009 May;238(5):1111-7. doi: 10.1002/dvdy.21928.
Due to their characteristic inaccessibility and low numbers, little is known about the cell-cycle dynamics of most stem cells in vivo. A powerful, established methodology to study cell-cycle dynamics is flow cytometry, which is used routinely to study the cell-cycle dynamics of proliferating cells in vitro. Its use in heterogeneous mixtures of cells obtained from whole animals, however, is complicated by the relatively low abundance of cycling to non-cycling cells. We report on flow cytometric methods that take advantage of the abundance of proliferating stem cells in the planarian Schmidtea mediterranea. The optimized protocols allow us to measure cell-cycle dynamics and follow BrdU-labeled cells specifically in complex mixtures of cells. These methods expand on the growing toolkit being developed to study stem cell biology in planarians, and open the door to detailed cytometric studies of a collectively totipotent population of adult stem cells in vivo.
由于其难以获取且数量稀少的特性,人们对大多数体内干细胞的细胞周期动态了解甚少。一种用于研究细胞周期动态的成熟有效方法是流式细胞术,它常用于体外研究增殖细胞的细胞周期动态。然而,将其用于从完整动物获取的异质细胞混合物时,由于增殖细胞与非增殖细胞的丰度相对较低,操作变得复杂。我们报告了利用地中海涡虫中丰富的增殖干细胞的流式细胞术方法。优化后的方案使我们能够在复杂的细胞混合物中测量细胞周期动态并特异性追踪溴脱氧尿苷(BrdU)标记的细胞。这些方法拓展了正在开发的用于研究涡虫干细胞生物学的工具集,并为体内成年干细胞的集体全能群体的详细细胞计量学研究打开了大门。