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脑脊膜膨出手术模型中大脑皮层的发育不良:对胎儿神经外科的影响。

Maldevelopment of the cerebral cortex in the surgically induced model of myelomeningocele: implications for fetal neurosurgery.

机构信息

Department of Pediatric Surgery, Hospital Universitario "La Paz," Madrid, Spain.

Department of Pathology, Hospital Universitario "La Paz," Madrid, Spain.

出版信息

J Pediatr Surg. 2011 Apr;46(4):713-722. doi: 10.1016/j.jpedsurg.2010.11.028.

Abstract

PURPOSE

The purpose of this study is to describe the malformations of cortical development detected in a model of cerebrospinal fluid (CSF) leakage and the influence of surgical closure technique on developmental outcome.

METHODS

Using a surgically induced model of myelomeningocele (MMC) in sheep, we studied the effects of different repair methods upon the development of hydrocephalus, the presence of the Arnold-Chiari II (AC-II) hindbrain malformation, and cerebral cortex developmental anomalies using gross and histologic (hematoxylin and eosin and Nissl staining) study techniques.

RESULTS

A malformed cerebral cortex, including 2 anomalous cortical folding patterns, and lower brain weights were observed in the untreated animals. Hydrocephalus and AC-II malformations were also found in this group. These malformations were mostly prevented with prenatal 2-layer closure.

CONCLUSIONS

Cerebral cortical malformations and hydrocephalus, in addition to the AC-II hindbrain malformation, are disorders caused by fetal CSF leakage. These malformations were prevented with the technique of MMC closure currently used in humans. Both observations magnify the importance of the second hit associated with chronic CSF leakage, in addition to the primary defect causing the MMC, in the development of the malformation complex.

摘要

目的

本研究旨在描述脑脊液(CSF)漏出模型中检测到的皮质发育畸形,以及手术闭合技术对发育结果的影响。

方法

我们使用绵羊脊髓脊膜膨出(MMC)的手术诱导模型,通过大体和组织学(苏木精和伊红及尼氏染色)研究技术,研究不同修复方法对脑积水的发展、Arnold-Chiari II(AC-II)后脑畸形以及大脑皮层发育异常的影响。

结果

在未治疗的动物中观察到畸形的大脑皮层,包括 2 种异常的皮层折叠模式和较低的脑重量。在该组中还发现了脑积水和 AC-II 畸形。这些畸形大多可以通过产前 2 层闭合来预防。

结论

除了 AC-II 后脑畸形外,大脑皮质畸形和脑积水也是由胎儿 CSF 漏出引起的疾病。目前用于人类的 MMC 闭合技术可以预防这些畸形。这两个观察结果都凸显了与慢性 CSF 漏出相关的二次打击,除了导致 MMC 的主要缺陷外,在畸形复合物的发展中也很重要。

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