转基因(hdf)胚胎肢体间质软骨形成的体外分析方法。

Danielle M Gillotte, Patricia L Fox, Corey H Mjaatvedt, Stanley Hoffman, Anthony A Capehart
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引用次数: 10

摘要

本研究描述了一种简单、快速的方案,用于从个体交配后10.5天的小鼠胚胎中培养肢体组织,该胚胎可在6天内支持软骨分化。该技术不同于其他常用的利用汇集肢体组织的方法:1)使用个体胚胎的前肢作为供体组织;2)非常温和的酶解(0.1%胰蛋白酶,5分钟)解离肢体组织;3)细胞悬液以较低的密度(1 × 10(7) vs. 2 × 10(7)个细胞/ml)在减少的3-5微升体积中镀上。在这些改进的条件下,增加每个胚胎的肢体细胞产量,组织化学和免疫组织化学分析表明,在可预测的时间过程中,不稳定聚集体的形成和随后的明显软骨形成是可重复的。利用这种培养方案,对杂合hdf胚胎的肢间质进行分析,发现编码硫酸软骨素蛋白聚糖核心蛋白的Cspg2基因插入突变,显示出与野生型幼崽总体上相似的成软骨潜力。这项技术可以在体外培养处于这一发育阶段的单个小鼠胚胎的肢体芽间质,并且可以被研究人员用于研究hdf和其他转基因突变对哺乳动物肢体体外发育的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An in vitro method for analysis of chondrogenesis in limb mesenchyme from individual transgenic (hdf) embryos.

The present study describes a simple, rapid protocol for culture for limb tissue from individual 10.5-day post coitum mouse embryos that supports cartilage differentiation over a six-day period. This technique differs from other commonly used methods utilizing pooled limb tissue in that: 1) forelimbs from individual embryos were used as donor tissue; 2) limb tissue was dissociated by very gentle enzymatic digest (0.1% trypsin, 5 min); and, 3) cell suspensions were plated at a lower density (1 x 10(7) vs. 2 x 10(7) cells/ml) in a reduced volume of 3-5 microl. Under these modified conditions to increase limb cell yield from each embryo, histochemical and immunohistochemical analyses demonstrated reproducible formation of precartilage aggregates and subsequent overt chondrogenesis over a predictable time course. Using this culture protocol, analysis of limb mesenchyme from heterozygous hdf embryos, which bear an insertional mutation of the Cspg2 gene encoding the core protein of the chondroitin sulfate proteoglycan, versican, revealed an overall similar chondrogenic potential to that observed for wild-type littermates. This technique readily enables in vitro culture of limb bud mesenchyme from individual mouse embryos at this developmental stage and may be utilized by investigators to study the effects of the hdf and other transgenic mutations on mammalian limb development in vitro.

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