Department of Experimental Psychology, University of Cambridge, Cambridge, United Kingdom.
Semin Cell Dev Biol. 2011 Jul;22(5):536-42. doi: 10.1016/j.semcdb.2011.07.002. Epub 2011 Jul 7.
Adult-generated neurons in the dentate gyrus of the hippocampus have been the focus of many studies concerned with learning and memory (L&M). It has been shown that procedures like environmental enrichment (EE) or voluntary physical exercise (Vex) can increase neurogenesis (NG) and also enhance L&M. It is tempting to conclude that improvements in L&M are due to the increased NG; that is, a causal relationship exists between enhancement of NG and enhancement of L&M. However, it remains unclear whether the L&M enhancement observed after these treatments is causally dependent on the increase in newborn neurons in the dentate gyrus. It remains a possibility that some unspecified change--a "third variable"--brought about by EE and/or Vex could be a causal determinant of both NG and L&M. We suggest that this third variable could be neurotrophic and/or plasticity-related factors such as BDNF. Indeed, both EE and Vex can induce expression of such proteins, and BDNF in particular has long been linked with L&M. In addition, we argue that a very likely source of variation in previous experiments was the load on "pattern separation", a process that keeps similar memories distinct, and in which NG has been shown to be critically involved. To attempt to bring these ideas together, we present preliminary evidence that BDNF is also required for pattern separation, which strengthens the case for BDNF as a candidate third variable. Other ways in which BDNF might be involved are also discussed.
海马齿状回中的成人源性神经元一直是许多与学习和记忆(L&M)相关的研究的焦点。已经表明,环境丰富(EE)或自愿体育锻炼(Vex)等程序可以增加神经发生(NG),并增强 L&M。人们很容易得出结论,L&M 的改善是由于 NG 的增加;也就是说,NG 的增强与 L&M 的增强之间存在因果关系。然而,尚不清楚这些治疗后观察到的 L&M 增强是否与齿状回中新神经元的增加有因果关系。仍有可能是 EE 和/或 Vex 带来的某种未指定的变化——“第三个变量”——是 NG 和 L&M 的因果决定因素。我们认为,这个第三个变量可能是神经营养和/或与可塑性相关的因素,如 BDNF。事实上,EE 和 Vex 都可以诱导这些蛋白质的表达,而 BDNF 长期以来一直与 L&M 相关。此外,我们认为,以前实验中的一个非常可能的变异来源是“模式分离”的负荷,这是一个使相似记忆保持不同的过程,其中已经证明 NG 是至关重要的。为了尝试将这些想法结合起来,我们提出了初步证据表明 BDNF 也是模式分离所必需的,这进一步证明 BDNF 是候选的第三个变量。还讨论了 BDNF 可能涉及的其他方式。