Toro C T, Deakin J F W
University of Manchester, UK.
Schizophr Res. 2007 Feb;90(1-3):1-14. doi: 10.1016/j.schres.2006.09.030. Epub 2006 Nov 22.
Adult neurogenesis is one of the most rapidly growing areas in neuroscience research and there is great interest in its potential role in the pathophysiology of psychiatric illness. In parallel with early development, adult neurogenesis occurs through the proliferation of precursor cells which migrate to specific regions and differentiate into neurons with characteristics indistinguishable from existing mature neurons. These findings have led to the re-definition of the concept of network plasticity in the adult brain, to include the formation of new neurons as well as new connections. This review examines the idea that adult neurogenesis may be disturbed in schizophrenia. We discuss evidence for abnormal mechanisms of neurogenesis and expression of developmental genes in schizophrenia, the influence of antipsychotic drugs on neurogenesis and the role of candidate schizophrenia susceptibility genes in adult neurogenesis. The recent discovery of molecular markers transiently expressed in newborn neurons within adult neurogenic brain regions could be used to probe whether neurogenesis is disturbed in schizophrenia. Adult neurogenesis could also be used as a unique tool for investigating genes involved in early brain development using post-mortem brains. This is particularly relevant for brain disorders with developmental origins such as schizophrenia.
成年神经发生是神经科学研究中发展最为迅速的领域之一,人们对其在精神疾病病理生理学中的潜在作用极为关注。与早期发育一样,成年神经发生通过前体细胞的增殖而发生,这些前体细胞迁移到特定区域并分化为神经元,其特征与现有的成熟神经元难以区分。这些发现导致了对成人大脑网络可塑性概念的重新定义,将新神经元的形成以及新连接也纳入其中。本综述探讨了成年神经发生可能在精神分裂症中受到干扰的观点。我们讨论了精神分裂症中神经发生异常机制和发育基因表达的证据、抗精神病药物对神经发生的影响以及候选精神分裂症易感基因在成年神经发生中的作用。最近在成年神经发生脑区新生神经元中瞬时表达的分子标记的发现,可用于探究精神分裂症中神经发生是否受到干扰。成年神经发生也可作为一种独特的工具,利用死后大脑来研究参与早期大脑发育的基因。这对于诸如精神分裂症等具有发育起源的脑部疾病尤为重要。