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碱性成纤维细胞生长因子(FGF-2)转基因小鼠的个体发育肢体骨缩放

Ontogenetic limb bone scaling in basic fibroblast growth factor (FGF-2) transgenic mice.

作者信息

Lightfoot P S, Swisher R, Coffin J D, Doetschman T C, German R Z

机构信息

Department of Biological Sciences, University of Cincinnati, OH 45221-0006, USA.

出版信息

Growth Dev Aging. 1997 Fall-Winter;61(3-4):127-39.

PMID:9546104
Abstract

Basic fibroblast growth factor (FGF-2) is a potent mitogen which is required for normal development, particularly the development of the skeletal system, where the inhibition of FGF binding to its receptor results in various skeletal malformations. The present study employed a newly engineered line of FGF-2 transgenic mice to determine the effects of overexpressing FGF-2 on limb bone ontogeny. We collected radiographic and weight data longitudinally and obtained the length, proximal, distal, and minimum diaphyseal widths of the humerus, femur, and tibia. Because growth is nonlinear with respect to time, we used the Gompertz mathematical model to obtain parameters describing rate and timing for each individual for each measurement. Differences in the parameters due to genotype and sex were subsequently tested with ANOVA. Transgenic animals exhibited consistently shorter limb bones which were generally wider at the epiphyses than those of controls. Parameters of early growth, including initial size and proportional rate of growth, appeared to be most directly responsible for significant differences in final size; however, exponential decay of growth was also a marginally significant factor. There were no differences between the genotypes in body weight, indicating that the shape anomalies observed in transgenic mice were a direct result of the action of FGF-2 rather than a general runting phenomenon.

摘要

碱性成纤维细胞生长因子(FGF - 2)是一种强效促有丝分裂原,对于正常发育,尤其是骨骼系统的发育至关重要,在骨骼系统中,FGF与其受体结合的抑制会导致各种骨骼畸形。本研究采用了一种新构建的FGF - 2转基因小鼠品系,以确定FGF - 2过表达对四肢骨个体发生的影响。我们纵向收集了X射线影像和体重数据,并获取了肱骨、股骨和胫骨的长度、近端、远端以及骨干最小宽度。由于生长相对于时间是非线性的,我们使用Gompertz数学模型来获取描述每个个体每次测量的速率和时间的参数。随后用方差分析测试因基因型和性别导致的参数差异。转基因动物的四肢骨始终较短,其骨骺处通常比对照组更宽。早期生长参数,包括初始大小和生长比例速率,似乎是最终大小显著差异的最直接原因;然而,生长的指数衰减也是一个边缘显著因素。不同基因型之间体重没有差异,这表明在转基因小鼠中观察到的形态异常是FGF - 2作用的直接结果,而非一般的发育迟缓现象。

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