Heng Boon Chin, Cao Tong, Liu Hua, Rufaihah Abdul Jalil
Stem Cell Laboratory, Faculty of Dentistry, National University of Singapore, Singapore.
Cell Biochem Funct. 2005 Mar-Apr;23(2):141-6. doi: 10.1002/cbf.1221.
This study attempted to investigate whether different levels of mitotic activity exist within different physical regions of a human embryonic stem (hES) cell colony. Incorporation of 5-bromo-2-deoxyuridine (BrdU) within newly-synthesized DNA, followed by immunocytochemical staining was used as a means of detecting mitotically-active cells within hES colonies. The results showed rather surprisingly that the highest levels of mitotic activity are primarily concentrated within the central regions of hES colonies, whereas the peripheral regions exhibited reduced levels of cellular proliferation. Two hypothetical mechanisms are therefore proposed for hES colony growth and expansion. Firstly, it is envisaged that the less mitotically-active hES cells at the periphery of the colony are continually migrating outwards, thereby providing space for newly-divided daughter cells within the more mitotically-active central region of the hES colony. Secondly, it is proposed that the newly-divided hES cells within the central region of the colony somehow migrate to the outer periphery. This could possibly explain why the periphery of hES colonies are less mitotically-active, since there would obviously be an extended time-lag before newly-divided daughter cells are ready again for the next cell division. Further investigations need to be carried out to characterize the atypical mechanisms by which hES colonies grow and expand in size.
本研究试图探究人类胚胎干细胞(hES)集落的不同物理区域内是否存在不同水平的有丝分裂活性。通过在新合成的DNA中掺入5-溴-2-脱氧尿苷(BrdU),随后进行免疫细胞化学染色,以此作为检测hES集落中有丝分裂活性细胞的一种手段。结果令人相当惊讶地表明,有丝分裂活性的最高水平主要集中在hES集落的中央区域,而周边区域的细胞增殖水平则降低。因此,针对hES集落的生长和扩张提出了两种假说机制。首先,可以设想集落周边有丝分裂活性较低的hES细胞不断向外迁移,从而为hES集落中有丝分裂活性较高的中央区域内新分裂的子细胞提供空间。其次,有人提出集落中央区域新分裂的hES细胞以某种方式迁移到外周。这可能解释了为什么hES集落的周边有丝分裂活性较低,因为新分裂的子细胞显然需要更长的时间间隔才能再次准备好进行下一次细胞分裂。需要进行进一步的研究来表征hES集落生长和扩大大小的非典型机制。