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在胎兔中制造脊髓脊膜膨出。

Creation of myelomeningocele in the fetal rabbit.

作者信息

Housley H T, Graf J L, Lipshultz G S, Calvano C J, Harrison M R, Farmer D L, Jennings R W

机构信息

Division of Pediatric Surgery, Department of Surgery, Fetal Treatment Center, University of California, San Francisco, Calif. 94143-0570, USA.

出版信息

Fetal Diagn Ther. 2000 Sep-Oct;15(5):275-9. doi: 10.1159/000021021.

Abstract

OBJECTIVE

Myelomeningocele is a neural tube defect resulting in an exposed spinal cord, which leads to irreversible neurologic damage at birth. We proposed development of a fetal rabbit model of myelomeningocele to study in utero spinal cord injury and repair strategies.

METHODS

New Zealand white rabbits (n = 10) at 22 days of gestation (term = 31 days) underwent laparotomy to expose the gravid uterus; a hysterotomy exposed the fetal hindlimbs and back. A three to four level lumbar laminectomy was performed, and the dura over the posterior spinal cord was removed. At 30 days of gestation, the does underwent C-section for fetal harvest, and total fetal number, length, weight, and the presence or absence of a spinal defect were recorded for all viable fetuses.

RESULTS

All injured fetuses were smaller and weighed less than the nonoperated littermate controls, and histologic examination confirmed a spina bifida-like lesion of their spinal cords.

CONCLUSIONS

We successfully created an exposed spinal cord defect in the fetal rabbit model similar to the lesion found in humans. Advantageous because of low animal cost, relatively large fetal size, multiple fetuses per pregnancy, and short total gestation, this model will allow us to study the mechanism of injury to the exposed spinal cord, and perhaps develop strategies to repair human myelomeningoceles.

摘要

目的

脊髓脊膜膨出是一种神经管缺陷,导致脊髓外露,在出生时会造成不可逆的神经损伤。我们提出建立一种胎儿兔脊髓脊膜膨出模型,以研究子宫内脊髓损伤及修复策略。

方法

选取妊娠22天(足月为31天)的新西兰白兔(n = 10),行剖腹术暴露妊娠子宫;再行子宫切开术暴露胎儿后肢和背部。进行三到四级腰椎椎板切除术,并切除脊髓后方的硬脑膜。妊娠30天时,母兔行剖宫产取出胎儿,记录所有存活胎儿的总数、长度、体重以及是否存在脊柱缺陷。

结果

所有受伤胎儿均比未手术的同窝对照胎儿体型小、体重轻,组织学检查证实其脊髓存在脊柱裂样病变。

结论

我们成功地在胎儿兔模型中制造了与人类所见病变相似的脊髓外露缺陷。由于动物成本低、胎儿相对较大、每胎多胎且总妊娠期短,该模型将使我们能够研究脊髓外露损伤的机制,并可能开发修复人类脊髓脊膜膨出的策略。

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