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震颤小鼠嵌合体中异常的浦肯野细胞树突是由去传入诱导的萎缩所致。

Abnormal Purkinje cell dendrites in lurcher chimeric mice result from a deafferentation-induced atrophy.

作者信息

Soha J M, Herrup K

机构信息

Department of Surgery, Yale University School of Medicine, New Haven, CT 06520-8062, USA.

出版信息

J Neurobiol. 1996 Mar;29(3):330-40. doi: 10.1002/(SICI)1097-4695(199603)29:3<330::AID-NEU5>3.0.CO;2-A.

Abstract

Previous studies of Purkinje cell dendrites in lurcher<-->wild-type mouse chimeras (lurcher chimeras) have documented the surprising occurrence of unusual atrophic dendritic morphologies among the wild-type cells of the mosaic cerebella. We have hypothesized that these aberrant morphologies arise from a process of developmental deafferentation that is due to the unique loss of mutant Purkinje cells in these chimeras. These earlier studies left unanswered the question of whether the abnormal dendrites were the result of a blocked developmental process (agenesis) or regressive events that deform a previously well-developed dendritic arbor (atrophy). Using a set of simple morphometric measures, we now examine wild-type Purkinje cells in young lurcher chimeras. At postnatal day 20, normal Purkinje cell development is nearly but not fully complete. In lurcher chimeras, the morphologies of the wild-type Purkinje cell dendrites are similar to those in wild-type controls of the same age. This means that they are larger in height, width, and cross-section than their counterparts in adult lurcher chimeras. The younger cells exhibit almost none of the atrophic morphologies described in mature animals. We conclude that the aberrant morphologies found in adult lurcher chimeras arise from atrophy rather than through a failure in development. Furthermore, consideration of the details of the wild-type dendrites in the lurcher chimeras leads to the proposal that the height and width of the Purkinje cell dendritic tree are controlled by two independent mechanisms.

摘要

先前对蹒跚突变型与野生型小鼠嵌合体(蹒跚嵌合体)中浦肯野细胞树突的研究记录了嵌合小脑野生型细胞中出现的异常萎缩树突形态,令人惊讶。我们推测这些异常形态源于发育性传入缺失过程,这是由于这些嵌合体中突变浦肯野细胞的独特缺失所致。这些早期研究没有回答异常树突是发育过程受阻(发育不全)的结果还是使先前发育良好的树突 Arbor 变形的退行性事件(萎缩)的问题。我们现在使用一组简单的形态测量方法来检查年轻蹒跚嵌合体中的野生型浦肯野细胞。在出生后第 20 天,正常浦肯野细胞发育接近但尚未完全完成。在蹒跚嵌合体中,野生型浦肯野细胞树突的形态与同年龄野生型对照相似。这意味着它们在高度、宽度和横截面积上比成年蹒跚嵌合体中的对应物更大。较年轻的细胞几乎没有成熟动物中描述的萎缩形态。我们得出结论,成年蹒跚嵌合体中发现的异常形态是由萎缩引起的,而不是发育失败。此外,对蹒跚嵌合体中野生型树突细节的考虑导致提出浦肯野细胞树突树的高度和宽度由两种独立机制控制的提议。

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