Roffler-Tarlov S, Martin B, Graybiel A M, Kauer J S
Department of Neuroscience, Tufts University School of Medicine, Boston, Massachusetts 02111, USA.
J Neurosci. 1996 Mar 1;16(5):1819-26. doi: 10.1523/JNEUROSCI.16-05-01819.1996.
The midbrain of the adult homozygous weaver (wv/wv) mouse is notable for a reduction in the numbers of dopamine-containing cells in the substantia nigra (A9) and the retrorubral nucleus (A8). We have determined that the reduction in tyrosine hydroxylase (TH)-positive neurons in the ventral midbrain of the weaver is attributable to the loss of neurons after postnatal day 7 (P7). Because the number and spatial distribution of TH-positive mesencephalic neurons in wv/wv, heterozygous weavers (+/wv), and wild-type mice are not significantly different on P7, we conclude that the early developmental steps of proliferation and migration have taken place normally in the mutant. Although numbers and distribution of cells are normal in the wv/wv on P7, the appearance of the TH-stained ventral midbrain is abnormal because of the paucity of TH-stained dendritic processes. The ventrally extending TH-positive dendrites are largely absent in the young wv/wv. The wv/wv also can be distinguished from both homozygous normal (+/+) and wv/wv littermates on P7 based on the appearance of dendrites that are more numerous than in the wv/wv but thin, disorganized, and sparse compared with +/+. Most cell death seems to take place in wv/wv before P21. However, at least one subset of dopamine-containing neurons disappears later. The zone of densely packed TH-positive neurons in the substantia nigra that is likely to be the origin of innervation to striosomes in the caudoputamen disappears between P21 and adulthood. Despite the early pathology evident in the mesencephalic dopamine-producing neurons of the +/wv, no evidence for cell death was observed there even in the oldest +/wv weavers studied.
成年纯合子韦弗(wv/wv)小鼠的中脑,其特点是黑质(A9)和红核后核(A8)中含多巴胺细胞数量减少。我们已经确定,韦弗小鼠腹侧中脑酪氨酸羟化酶(TH)阳性神经元数量的减少,是由于出生后第7天(P7)后神经元的丢失。由于在P7时,wv/wv、杂合子韦弗(+/wv)和野生型小鼠中TH阳性中脑神经元的数量和空间分布没有显著差异,我们得出结论,突变体中增殖和迁移的早期发育步骤正常进行。尽管在P7时wv/wv小鼠的细胞数量和分布正常,但由于TH染色的树突状突起稀少,TH染色的腹侧中脑外观异常。在年幼的wv/wv小鼠中,腹侧延伸的TH阳性树突基本不存在。基于树突的外观,在P7时wv/wv小鼠也可以与纯合正常(+/+)和wv/wv同窝小鼠区分开来,wv/wv小鼠的树突比+/+小鼠的树突数量更多,但更细、无序且稀疏。大多数细胞死亡似乎发生在P21之前的wv/wv小鼠中。然而,至少有一个含多巴胺神经元亚群在后期消失。黑质中密集排列的TH阳性神经元区域,可能是尾壳核中纹状体小体神经支配的起源,在P21到成年之间消失。尽管在+/wv小鼠的中脑多巴胺产生神经元中早期就有明显的病理变化,但即使在研究的最老的+/wv小鼠中,也没有观察到细胞死亡的证据。