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胎儿运动不能性畸形序列中长骨发育的形态学变化:箭毒化大鼠胎儿的实验研究

Morphological changes in long bone development in fetal akinesia deformation sequence: an experimental study in curarized rat fetuses.

作者信息

Rodríguez J I, Palacios J, Ruiz A, Sanchez M, Alvarez I, Demiguel E

机构信息

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

出版信息

Teratology. 1992 Feb;45(2):213-21. doi: 10.1002/tera.1420450215.

Abstract

In order to investigate the transverse growth of the long bones during intrauterine development in the fetal akinesia deformation sequence (FADS), we studied curarized rat fetuses. Curarization was performed by daily subcutaneous administration of D-Tubocurarine from day 17 of gestation until term. Experimental fetuses were compared with a sham-operated control group. The total area and perimeter, the absolute and relative amount of periosteum and bone trabeculae, the major and minor axes, and the elongation factor were measured from histological cross-sections of the femoral metaphysis and diaphysis using an IBAS 1 image analysis system. Curarized rat fetuses showed growth retardation, a short umbilical cord, and multiple articular contractures, a phenotype consistent with FADS. Alterations in femoral shape and transverse growth that affected the diaphysis were noted in these fetuses. These included a decrease of total cross-section area and reduction of the absolute and relative amounts of bone trabeculae with marked thinning of the periosteum. Femoral cross-sections was rounder than controls. These results evidenced an impairment of the membraneous (periosteal) ossification of long bones produced by immobilization and/or decrease of muscular strength, and support our previous clinical findings of bone hypoplasia and osteopenia in FADS.

摘要

为了研究胎儿运动不能性畸形序列(FADS)宫内发育期间长骨的横向生长,我们对箭毒化大鼠胎儿进行了研究。从妊娠第17天至足月,每天皮下注射D - 筒箭毒碱进行箭毒化处理。将实验胎儿与假手术对照组进行比较。使用IBAS 1图像分析系统,从股骨近端和骨干的组织学横截面测量总面积和周长、骨膜和骨小梁的绝对和相对量、长轴和短轴以及伸长因子。箭毒化大鼠胎儿表现出生长迟缓、脐带短和多处关节挛缩,这一表型与FADS一致。在这些胎儿中观察到影响骨干的股骨形状和横向生长的改变。这些改变包括总横截面积减小、骨小梁的绝对和相对量减少以及骨膜明显变薄。股骨横截面比对照组更圆。这些结果证明了因固定和/或肌肉力量降低而导致的长骨膜性(骨膜)骨化受损,并支持了我们之前关于FADS中骨发育不全和骨质减少的临床发现。

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