Sharma Vikram, Nag Tapas Chandra, Wadhwa Shashi, Roy Tara Sankar
Department of Anatomy, All India Institute of Medical Sciences, New Delhi 110029, India.
J Chem Neuroanat. 2009 Mar;37(2):78-86. doi: 10.1016/j.jchemneu.2008.11.002. Epub 2008 Nov 27.
The mammalian inferior colliculus (IC) is a major relay nucleus in the auditory pathway. Prenatal development of the human IC has been inadequately studied. The present study reports the morphometric development and maturation of the human IC using unbiased stereology, in 18 aborted fetuses of various gestational ages (12-29 weeks) and two babies aged 40 postnatal days (PND) and 5 months (that died of postoperative complications). It also demonstrates the functional maturation of the IC by examining the expression of calcium-binding proteins--parvalbumin (PV) and calbindin (CB). There was a significant increase in the total number of neurons and glia from 18 weeks of gestation (WG). The glia and neuron volume increased significantly from 16 WG to 22 WG, respectively. The total volume of IC also increased significantly from 18 WG onwards. On the other hand, the number and volume of undifferentiated cell bodies across all ages decreased significantly. Expression of CB was concentrated in the dorsal cortex while that of PV was mainly confined to the central nucleus of the IC, possibly indicating an early segregation of parallel processing of information in the auditory pathways. Intense staining for CB in the soma and dendrites appeared earlier than that of the PV. The morphological maturation appeared to overlap the onset of functional maturation suggesting an activity-dependent mechanism in the development of IC.
哺乳动物的下丘(IC)是听觉通路中的一个主要中继核。人类IC的产前发育尚未得到充分研究。本研究报告了使用无偏倚立体学方法对18例不同孕周(12 - 29周)的流产胎儿以及2例出生后40天(PND)和5个月(死于术后并发症)的婴儿的IC进行形态计量学发育和成熟情况。研究还通过检测钙结合蛋白——小白蛋白(PV)和钙结合蛋白(CB)的表达来证明IC的功能成熟。从妊娠18周(WG)起,神经元和神经胶质细胞的总数显著增加。神经胶质细胞和神经元体积分别从16 WG到22 WG显著增加。IC的总体积从18 WG起也显著增加。另一方面,所有年龄段未分化细胞体的数量和体积均显著减少。CB的表达集中在背侧皮质,而PV的表达主要局限于IC的中央核,这可能表明听觉通路中信息并行处理的早期分离。CB在胞体和树突中的强烈染色比PV出现得更早。形态学成熟似乎与功能成熟开始重叠,提示IC发育中存在一种活动依赖机制。