Powrozek Teresa A, Zhou Feng C
Department of Psychology at Indiana University Purdue University, Indianapolis, IN 46202, USA.
Brain Res Dev Brain Res. 2005 Mar 31;155(2):135-46. doi: 10.1016/j.devbrainres.2005.01.003.
We have previously shown that the serotonin (5-HT) and its thalamocortical afferents are compromised by prenatal alcohol exposure (PAE). The development of the sensory cortical barrels is regulated by 5-HT-rich thalamocortical afferents. Therefore, it is hypothesized that PAE will deleteriously affect the postnatal development of the cortical barrel formations. On embryonic day (E)7, C57BL/6 mice were grouped into: Alcohol (Alc), Pair-fed (PF), or Chow, and maintained on diet until E18. On postnatal day 7, cortices were stained with 5-HT for thalamocortical fibers, and a NeuN for identification of mature neurons. The area of the posterior medial barrel subfield (PMBSF), was measured as well as the number of NeuN+ neurons within the barrel patches. Though brain weight and brain volume were similar among the three groups, a significant reduction was seen in total area of the PMBSF, and in the average individual barrel area in the Alc group as compared to Chow. Furthermore, the volumes of the B, but not C row barrels were significantly reduced. Barrels were found missing in layer IV, specifically in the posterior aspects of the A, B, and straddler row in the Alc group. Cell counts demonstrated a nearly 50% reduction in NeuN+ neuron number in both rows. This reduction in size of the PMBSF and fewer neurons within these sensory barreloids may underlie a change in the development of the discriminatory sensitivity of the whiskers and serves as an excellent model for the study of a compromised sensory modality following PAE.
我们之前已经表明,血清素(5-羟色胺,5-HT)及其丘脑皮质传入神经会因产前酒精暴露(PAE)而受损。富含5-HT的丘脑皮质传入神经调节着感觉皮质桶状结构的发育。因此,据推测,PAE会对皮质桶状结构的出生后发育产生有害影响。在胚胎第7天(E7),将C57BL/6小鼠分为:酒精组(Alc)、配对喂养组(PF)或正常饮食组,并维持饮食至E18。在出生后第7天,用5-HT对皮质进行染色以显示丘脑皮质纤维,并用NeuN进行染色以识别成熟神经元。测量后内侧桶状亚区(PMBSF)的面积以及桶状斑块内NeuN+神经元的数量。尽管三组小鼠的脑重量和脑体积相似,但与正常饮食组相比,Alc组的PMBSF总面积和平均单个桶状区域显著减小。此外,B排桶状结构的体积显著减小,但C排桶状结构的体积未减小。在Alc组的IV层中发现桶状结构缺失,特别是在A、B排以及跨排的后部。细胞计数显示,两排中NeuN+神经元数量减少了近50%。PMBSF大小的减小以及这些感觉桶状结构内神经元数量的减少,可能是触须辨别敏感性发育变化的基础,并且是研究PAE后感觉模式受损的一个极佳模型。