Koo Ok Jae, Hossein Mohammad Shamim, Hong So Gun, Martinez-Conejero Jose A, Lee Byeong Chun
Department of Theriogenology and Biotechnology, College of Veterinary Medicine, Seoul National University, Seoul, Korea.
Zygote. 2009 Feb;17(1):37-43. doi: 10.1017/S096719940800498X. Epub 2008 Nov 26.
Cycle synchronization of donor cells in the G0/G1 stage is a crucial step for successful somatic cell nuclear transfer. In the present report, we evaluated the effects of contact inhibition, serum starvation and the reagents - dimethyl sulphoxide (DMSO), roscovitine and cycloheximide (CHX) - on synchronization of canine fibroblasts at the G0/G1 stage. Ear fibroblast cells were collected from a beagle dog, placed into culture and used for analysis at passages three to eight. The population doubling time was 36.5 h. The proportion of G0/G1 cells was significantly increased by contact inhibition (77.1%) as compared with cycling cells (70.1%); however, extending the duration of culture did not induce further synchronization. After 24 h of serum starvation, cells were effectively synchronized at G0/G1 (77.1%). Although synchronization was further increased gradually after 24 h and even showed significant difference after 72 h (82.8%) of starvation, the proportion of dead cells also significantly increased after 24 h. The percentage of cells at the G0/G1 phase was increased (as compared with controls) after 72 h treatment with DMSO (76.1%) and after 48 h treatment with CHX (73.0%) or roscovitine (72.5%). However, the rate of cell death was increased after 24 and 72 h of treatment with DMSO and CHX, respectively. Thus, we recommend the use of roscovitine for cell cycle synchronization of canine ear fibroblasts as a preparatory step for SCNT.
供体细胞在G0/G1期的周期同步化是成功进行体细胞核移植的关键步骤。在本报告中,我们评估了接触抑制、血清饥饿以及试剂——二甲基亚砜(DMSO)、罗斯考维汀和环己酰亚胺(CHX)——对犬成纤维细胞在G0/G1期同步化的影响。从一只比格犬采集耳部成纤维细胞,进行培养,并用于传代三至八代时的分析。群体倍增时间为36.5小时。与处于增殖周期的细胞(70.1%)相比,接触抑制使G0/G1期细胞的比例显著增加(77.1%);然而,延长培养时间并未诱导进一步的同步化。血清饥饿24小时后,细胞有效地同步于G0/G1期(77.1%)。虽然饥饿24小时后同步化程度逐渐进一步提高,饥饿72小时后甚至显示出显著差异(82.8%),但饥饿24小时后死细胞的比例也显著增加。用DMSO处理72小时后(76.1%)、用CHX处理48小时后(73.0%)或用罗斯考维汀处理48小时后(72.5%),G0/G1期细胞的百分比相对于对照组有所增加。然而,分别用DMSO和CHX处理24小时和72小时后,细胞死亡率增加。因此,我们推荐使用罗斯考维汀对犬耳部成纤维细胞进行细胞周期同步化,作为体细胞核移植的准备步骤。