Rogers Eve H, Fawcett Sandra A, Pekovic-Vaughan Vanja, Hunt John A
Institute of Ageing and Chronic Disease, University of Liverpool, 6 West Derby Street, Liverpool L7 8TX, UK.
School of Science and Technology, Clifton Campus, College Drive, Nottingham NG11 8NS, UK.
Stem Cells Int. 2017;2017:2057168. doi: 10.1155/2017/2057168. Epub 2017 Oct 23.
Optimising cell/tissue constructs so that they can be successfully accepted and integrated within a host body is essential in modern tissue engineering. To do this, adult stem cells are frequently utilised, but there are many aspects of their environment that are not completely understood. There is evidence to suggest that circadian rhythms and daily circadian temporal cues have substantial effects on stem cell activation, cell cycle, and differentiation. It was hypothesised that the circadian rhythm in human adult stem cells differs depending on the source of tissue and that different entraining signals exert differential effects depending on the anatomical source. Dexamethasone and rhythmic mechanical stretch were used to synchronise stem cells derived from the bone marrow, tooth dental pulp, and abdominal subcutaneous adipose tissue, and it was experimentally evidenced that these different stem cells differed in their circadian clock properties in response to different synchronisation mechanisms. The more primitive dental pulp-derived stem cells did not respond as well to the chemical synchronisation but showed temporal clock gene oscillations following rhythmic mechanical stretch, suggesting that incorporating temporal circadian information of different human adult stem cells will have profound implications in optimising tissue engineering approaches and stem cell therapies.
优化细胞/组织构建体,使其能够在宿主体内被成功接受并整合,这在现代组织工程中至关重要。为此,成人干细胞经常被利用,但人们对其所处环境的许多方面尚未完全了解。有证据表明,昼夜节律和日常的昼夜时间线索对干细胞的激活、细胞周期和分化有重大影响。据推测,人类成人干细胞的昼夜节律因组织来源而异,并且不同的同步信号根据解剖学来源会产生不同的影响。地塞米松和有节律的机械拉伸被用于使源自骨髓、牙髓和腹部皮下脂肪组织的干细胞同步化,实验证明,这些不同的干细胞在响应不同的同步机制时,其昼夜节律特性存在差异。更为原始的牙髓来源干细胞对化学同步的反应不如其他细胞,但在有节律的机械拉伸后显示出时钟基因的振荡,这表明纳入不同人类成人干细胞的昼夜节律信息将对优化组织工程方法和干细胞治疗产生深远影响。