Department of Neurosurgery, Qilu Hospital of Shandong University, Jinan, People's Republic of China.
Brain Science Research Institute, Shandong University, Jinan, People's Republic of China.
Stem Cells. 2019 Apr;37(4):504-515. doi: 10.1002/stem.2968. Epub 2019 Jan 14.
Dysfunction of neural stem cells (NSCs) has been linked to fetal neuropathy, one of the most devastating complications of gestational diabetes. Several studies have demonstrated that melatonin (Mel) exerted neuroprotective actions in various stresses. However, the role of autophagy and the involvement of Mel in NSCs in hyperglycemia (HG) have not yet been fully established. Here, we found that HG increased autophagy and autophagic flux of NSCs as evidenced by increasing LC3B II/I ratio, Beclin-1 expression, and autophagosomes. Moreover, Mel enhanced NSCs proliferation and self-renewal in HG with decreasing autophagy and activated mTOR signaling. Consistently, inhibition of autophagy by 3-Methyladenine (3-Ma) could assist Mel effects above, and induction of autophagy by Rapamycin (Rapa) could diminish Mel effects. Remarkably, HG induced premature differentiation of NSCs into neurons (Map2 positive cells) and astrocytes (GFAP positive cells). Furthermore, Mel diminished HG-induced premature differentiation and assisted NSCs in HG differentiation as that in normal condition. Coincidentally, inhibiting of NSCs autophagy by 3-Ma assisted Mel to modulate differentiation. However, increasing NSCs autophagy by Rapa disturbed the Mel effects and retarded NSCs differentiation. These findings suggested that Mel supplementation could contribute to mimicking normal NSCs proliferation and differentiation in fetal central nervous system by inhibiting autophagy in the context of gestational diabetes. Stem Cells 2019;37:504-515.
神经干细胞(NSCs)功能障碍与胎儿神经病有关,这是妊娠糖尿病最具破坏性的并发症之一。几项研究表明,褪黑素(Mel)在各种应激下发挥神经保护作用。然而,自噬的作用以及 Mel 在高血糖(HG)中的 NSCs 中的作用尚未完全确定。在这里,我们发现 HG 通过增加 LC3B II/I 比率、Beclin-1 表达和自噬体来增加 NSCs 的自噬和自噬流。此外,Mel 通过降低自噬和激活 mTOR 信号来增强 HG 中 NSCs 的增殖和自我更新。一致地,通过 3-甲基腺嘌呤(3-MA)抑制自噬可以辅助 Mel 发挥上述作用,而通过 Rapamycin(Rapa)诱导自噬可以减少 Mel 的作用。值得注意的是,HG 诱导 NSCs 过早分化为神经元(Map2 阳性细胞)和星形胶质细胞(GFAP 阳性细胞)。此外,Mel 减少了 HG 诱导的过早分化,并辅助 NSCs 在 HG 分化中发挥作用,就像在正常条件下一样。巧合的是,通过 3-MA 抑制 NSCs 的自噬辅助 Mel 调节分化。然而,通过 Rapa 增加 NSCs 的自噬会干扰 Mel 的作用并延迟 NSCs 的分化。这些发现表明,在妊娠糖尿病的情况下,通过抑制自噬,Mel 补充可能有助于模拟胎儿中枢神经系统中 NSCs 的正常增殖和分化。干细胞 2019;37:504-515。