Programs in Regenerative Biology and Cancer Biology, Adult Stem Cell Technology Center, Boston Biomedical Research Institute,64 Grove Street, Watertown, MA, USA.
Sci Rep. 2011;1:176. doi: 10.1038/srep00176. Epub 2011 Nov 30.
We investigated the properties of clonally-expanded mouse hair follicle stem cells (HF-SCs) in culture. The expansion method, suppression of asymmetric cell kinetics (SACK), is non-toxic and reversible, allowing evaluation of the cells' asymmetric production of differentiating progeny cells. A tight association was discovered between non-random sister chromatid segregation, a unique property of distributed stem cells (DSCs), like HF-SCs, and a recently described biomarker, Lgr5. We found that nuclear Lgr5 expression was limited to the HF-SC sister of asymmetric self-renewal divisions that retained non-randomly co-segregated chromosomes, which contain the oldest cellular DNA strands, called immortal DNA strands. This pattern-specific Lgr5 association poses a potential highly specific new biomarker for delineation of DSCs. The expanded HF-SCs also maintained the ability to make differentiated hair follicle cells spontaneously, as well as under conditions that induced cell differentiation. In future human cell studies, this capability would improve skin grafts and hair replacement therapies.
我们研究了在培养条件下克隆扩增的毛囊干细胞(HF-SC)的特性。扩增方法为非毒性、可逆的抑制不对称细胞动力学(SACK),可用于评估细胞不对称产生分化后代细胞的能力。我们发现,非随机姐妹染色单体分离(DSC 特有的一个独特性质,如 HF-SC)与最近描述的生物标志物 Lgr5 之间存在紧密关联。我们发现,核 Lgr5 表达仅限于不对称自我更新分裂的 HF-SC 姐妹细胞,这些细胞保留了非随机共分离的染色体,其中包含最古老的细胞 DNA 链,称为不朽 DNA 链。这种特定于模式的 Lgr5 关联为 DSC 的鉴定提供了一个潜在的高度特异性的新生物标志物。扩增的 HF-SC 还能够自发地产生分化的毛囊细胞,以及在诱导细胞分化的条件下产生分化的毛囊细胞。在未来的人类细胞研究中,这种能力将改善皮肤移植和毛发替代疗法。