Schaffer David V, Gage Fred H
Department of Chemical Engineering and the Helen Wills Neuroscience Institute, University of California, Berkeley, CA 94720-1462, USA.
Neuromolecular Med. 2004;5(1):1-9. doi: 10.1385/NMM:5:1:001.
Adult neurogenesis has been established as a further mechanism of neural plasticity in the adult nervous system, and numerous studies are beginning to provide insights into the functional purposes and consequences for this new mode of neuroadaptation. These studies have approached the problem from a molecular scale, attempting to identify signaling factors that regulate stem cell function, as well as a systems or behavioral level, attempting to establish correlative and potentially causal links between neurogenesis and behavior. These two approaches have begun to reveal several potential functions for adult hippocampal neurogenesis, including adaptive roles in learning and memory, adaptation to novel environments, potential links to depression and moods, and possible responses to injury. The further implementation and convergence of these two approaches and the development of new methods to study the problem will yield further insights into both what are the many neuroadaptive roles of neurogenesis and potential means to harness it for neuroregeneration.
成体神经发生已被确立为成年神经系统中神经可塑性的另一种机制,众多研究开始深入探究这种新的神经适应模式的功能目的及后果。这些研究从分子层面着手解决该问题,试图识别调控干细胞功能的信号因子,同时也从系统或行为层面进行研究,试图在神经发生与行为之间建立相关及潜在的因果联系。这两种方法已开始揭示成年海马体神经发生的几种潜在功能,包括在学习和记忆中的适应性作用、对新环境的适应、与抑郁和情绪的潜在联系以及对损伤的可能反应。这两种方法的进一步实施与融合以及研究该问题的新方法的开发,将进一步深入了解神经发生的诸多神经适应作用以及利用其进行神经再生的潜在手段。