Institute of Translational Pharmacology, National Research Council, Rome, Italy; European Brain Research Institute (EBRI), Rome, Italy.
Stem Cells. 2014 Sep;32(9):2516-28. doi: 10.1002/stem.1744.
Adult neurogenesis is a multistep process regulated by several extrinsic factors, including neurotrophins. Among them, little is known about the role of nerve growth factor (NGF) in the neurogenic niches of the mouse. Here we analyzed the biology of adult neural stem cells (NSCs) from the subventricular zone (SVZ) of AD11 anti-NGF transgenic mice, in which the expression of the recombinant antibody aD11 leads to a chronic postnatal neutralization of endogenous NGF. We showed that AD11-NSCs proliferate 10-fold less, with respect to their control counterparts, and display a significant impairment in their ability to differentiate into β-tubulin positive neurons. We found a considerable reduction in the number of SVZ progenitors and neuroblasts also in vivo, which correlates with a lower number of newborn neurons in the olfactory bulbs of AD11 mice and a severe deficit in the ability of these mice to discriminate between different odors. We also demonstrated that, in AD11 mice, the morphology of both SVZ-resident and neurosphere-derived astrocytes is significantly altered. We were able to reproduce the AD11 phenotype in vitro, by acutely treating wild type NSCs with the anti-NGF antibody, further demonstrating that both the proliferation and the differentiation defects are due to the NGF deprivation. Consistently, the proliferative impairment of AD11 progenitors, as well as the atrophic morphology of AD11 astrocytes, can be partly rescued in vitro and in vivo by exogenous NGF addition. Altogether, our results demonstrate a causal link between NGF signaling and proper proliferation and differentiation of neural stem cells from the SVZ.
成人神经发生是一个受多种外在因素调控的多步骤过程,包括神经营养因子。其中,神经生长因子(NGF)在小鼠神经发生龛中的作用知之甚少。在这里,我们分析了 AD11 抗 NGF 转基因小鼠侧脑室下区(SVZ)中的成年神经干细胞(NSC)的生物学特性,其中重组抗体 aD11 的表达导致内源性 NGF 慢性产后中和。我们发现 AD11-NSC 的增殖能力比对照细胞低 10 倍,并且其分化为β-微管蛋白阳性神经元的能力显著受损。我们还发现体内 SVZ 祖细胞和神经前体细胞的数量也显著减少,这与 AD11 小鼠嗅球中新生神经元数量减少以及这些小鼠区分不同气味的能力严重不足有关。我们还证明,在 AD11 小鼠中,SVZ 驻留和神经球衍生星形胶质细胞的形态都发生了显著改变。我们通过用抗 NGF 抗体急性处理野生型 NSC,在体外复制了 AD11 表型,进一步证明增殖和分化缺陷是由于 NGF 缺失所致。一致地,AD11 祖细胞的增殖损伤以及 AD11 星形胶质细胞的萎缩形态,在体外和体内均可通过外源性 NGF 添加部分挽救。总之,我们的结果表明,NGF 信号与 SVZ 中的神经干细胞的适当增殖和分化之间存在因果关系。