Hassiotis Maria, Ashwell Ken W S, Marotte Lauren R, Lensing-Höhn Sabine, Mai Jürgen K
Department of Anatomy, The University of NSW, 2052 Sydney, NSW, Australia.
Anat Embryol (Berl). 2002 Dec;206(1-2):97-118. doi: 10.1007/s00429-002-0278-1. Epub 2002 Nov 15.
We have examined the distribution of immunoreactivity for GAP-43 in the developing and adult brain of a diprotodontid metatherian, the tammar wallaby ( Macropus eugenii). The distribution of GAP-43 immunoreactivity in the neonatal wallaby brain was strikingly heterogeneous, in contrast to that reported for the newborn polyprotodontid opossum. Immunoreactivity for GAP-43 in the developing wallaby brain showed a caudal-to-rostral spatiotemporal gradient, with the brainstem well in advance of the telencephalon throughout the first 100 days of postnatal life. In many regions examined, GAP-43 immunoreactivity passed through the following phases: 1. intense immunoreactivity in developing fiber tracts and occasional somata; 2. diffuse homogeneous immunoreactivity; 3. selective loss of immunoreactivity in particular nuclei or cortical regions. In the isocortex, selective loss of GAP-43 immunoreactivity in the somatosensory and visual cortex (at postnatal day 115) coincided with the maturation of the laminar distribution of terminal thalamocortical axonal fields. Within adult cortical regions, GAP-43 immunoreactivity was highest in layer I of all regions, lower layers (V and VI) of primary somatosensory and visual cortices, layers II/III of motor and cingulate cortex, and layer IV of entorhinal cortex. Our findings suggest that, while patterning of GAP-43 immunoreactivity in the mature brain is similar across meta- and eutheria, there may be early developmental differences in the distribution of GAP-43 immunoreactivity between poly- and diprotodontid metatheria.
我们研究了双门齿有袋类动物——帚尾袋鼩(Macropus eugenii)发育中和成年大脑中生长相关蛋白-43(GAP-43)的免疫反应性分布。与新生多门齿负鼠的报道相比,新生袋鼩大脑中GAP-43免疫反应性的分布明显不均一。发育中的袋鼩大脑中GAP-43免疫反应性呈现出从尾端到吻端的时空梯度,在出生后的前100天里,脑干的免疫反应性远远早于端脑。在许多检查的区域,GAP-43免疫反应性经历了以下阶段:1. 在发育中的纤维束和偶尔的体细胞中有强烈的免疫反应性;2. 弥漫性均匀免疫反应性;3. 特定核团或皮质区域免疫反应性的选择性丧失。在同型皮质中,躯体感觉和视觉皮质中GAP-43免疫反应性的选择性丧失(在出生后第115天)与丘脑皮质轴突终末场层状分布的成熟相一致。在成体皮质区域内,GAP-43免疫反应性在所有区域的I层最高,在初级躯体感觉和视觉皮质的下层(V层和VI层)、运动和扣带皮质的II/III层以及内嗅皮质的IV层较低。我们的研究结果表明,虽然有袋类和真兽类成熟大脑中GAP-43免疫反应性的模式相似,但多门齿和双门齿有袋类动物之间GAP-43免疫反应性的分布在早期发育阶段可能存在差异。