Friis Thor Einar, Stephenson Sally, Xiao Yin, Whitehead Jon, Hutmacher Dietmar W
1 Regenerative Medicine Group, Institute of Health and Biomedical Innovation, Queensland University of Technology , Brisbane, Queensland, Australia .
Tissue Eng Part C Methods. 2014 Oct;20(10):780-9. doi: 10.1089/ten.TEC.2013.0099. Epub 2014 Mar 5.
The sheep (Ovis aries) is favored by many musculoskeletal tissue engineering groups as a large animal model because of its docile temperament and ease of husbandry. The size and weight of sheep are comparable to humans, which allows for the use of implants and fixation devices used in human clinical practice. The construction of a complimentary DNA (cDNA) library can capture the expression of genes in both a tissue- and time-specific manner. cDNA libraries have been a consistent source of gene discovery ever since the technology became commonplace more than three decades ago. Here, we describe the construction of a cDNA library using cells derived from sheep bones based on the pBluescript cDNA kit. Thirty clones were picked at random and sequenced. This led to the identification of a novel gene, C12orf29, which our initial experiments indicate is involved in skeletal biology. We also describe a polymerase chain reaction-based cDNA clone isolation method that allows the isolation of genes of interest from a cDNA library pool. The techniques outlined here can be applied in-house by smaller tissue engineering groups to generate tools for biomolecular research for large preclinical animal studies and highlights the power of standard cDNA library protocols to uncover novel genes.
绵羊(Ovis aries)因其温顺的性情和易于饲养,被许多肌肉骨骼组织工程研究团队视为一种大型动物模型。绵羊的大小和体重与人类相近,这使得人类临床实践中使用的植入物和固定装置也能在绵羊身上使用。互补DNA(cDNA)文库的构建能够以组织特异性和时间特异性的方式捕捉基因的表达。自从三十多年前这项技术普及以来,cDNA文库一直是基因发现的一个稳定来源。在此,我们描述了基于pBluescript cDNA试剂盒,使用源自绵羊骨骼的细胞构建cDNA文库的过程。随机挑选了30个克隆进行测序。这导致鉴定出一个新基因C12orf29,我们的初步实验表明该基因参与骨骼生物学过程。我们还描述了一种基于聚合酶链反应的cDNA克隆分离方法,该方法可从cDNA文库池中分离出感兴趣的基因。这里概述的技术可供较小的组织工程研究团队在内部使用,以生成用于大型临床前动物研究的生物分子研究工具,并突出了标准cDNA文库方案在发现新基因方面的作用。