Sasaki Tsutomu, Kitagawa Kazuo, Yagita Yoshiki, Sugiura Shiro, Omura-Matsuoka Emi, Tanaka Shigeru, Matsushita Kohji, Okano Hideyuki, Tsujimoto Yoshihide, Hori Masatsugu
Division of Stroke Research, Department of Cardiovascular Medicine, Osaka University Graduate School of Medicine, Osaka, Japan.
J Neurosci Res. 2006 Nov 1;84(6):1187-96. doi: 10.1002/jnr.21036.
Neuronal progenitors in the adult hippocampus continually proliferate and differentiate to the neuronal lineage, and ischemic insult promotes hippocampal neurogenesis. However, newborn neurons show a progressive reduction in numbers during the initial few weeks, therefore, enhanced survival of newborn neurons seems to be essential for therapeutic strategy. Bcl-2 is a crucial regulator of programmed cell death in CNS development and in apoptotic and necrotic cell death. Therefore, we tested whether Bcl-2 overexpression enhances survival of newborn neurons in the adult mouse hippocampus under normal and ischemic conditions. Many newborn neurons in the hippocampal dentate gyrus undergo apoptosis. Human Bcl-2 expression in NSE-bcl-2 transgenic mice began at the immature neuronal stage and remained constant in surviving mature neurons. Bcl-2 significantly increased survival of newborn neurons under both conditions, but particularly after ischemia, with decreased cell death of newborn neurons in NSE-bcl-2 transgenic mice. We also clarified the effect by Bcl-2 overexpression of enhanced survival of newborn neurons in primary hippocampal cultures with BrdU labeling. These findings suggest that Bcl-2 plays a crucial role in adult hippocampal neurogenesis under normal and ischemic conditions.
成年海马体中的神经元祖细胞持续增殖并分化为神经元谱系,缺血性损伤会促进海马体神经发生。然而,新生神经元在最初几周内数量会逐渐减少,因此,提高新生神经元的存活率似乎是治疗策略的关键。Bcl-2是中枢神经系统发育以及凋亡和坏死性细胞死亡过程中程序性细胞死亡的关键调节因子。因此,我们测试了在正常和缺血条件下,Bcl-2过表达是否能提高成年小鼠海马体中新生神经元的存活率。海马齿状回中的许多新生神经元会发生凋亡。在NSE-bcl-2转基因小鼠中,人Bcl-2的表达始于未成熟神经元阶段,并在存活的成熟神经元中保持恒定。在两种条件下,Bcl-2均显著提高了新生神经元的存活率,但在缺血后尤为明显,NSE-bcl-2转基因小鼠中新生神经元的细胞死亡减少。我们还通过用BrdU标记的原代海马体培养物,阐明了Bcl-2过表达对提高新生神经元存活率的影响。这些发现表明,Bcl-2在正常和缺血条件下的成年海马体神经发生中起着关键作用。