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Laser capture microdissection enables cellular and molecular studies of tooth root development

机译:激光捕获显微切割技术可进行牙根发育的细胞和分子研究

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摘要

Epithelial–mesenchymal interactions (EMIs) are critical for tooth development. Molecular mechanisms mediating these interactions in root formation is not well understood. Laser capture microdissection (LCM) and subsequent microarray analyses enable large scale in situ molecular and cellular studies of root formation but to date have been hindered by technical challenges of gaining intact histological sections of non-decalcified mineralized teeth or jaws with well-preserved RNA. Here,we describe a new method to overcome this obstacle that permits LCM of dental epithelia,adjacent mesenchyme,odontoblasts and cementoblasts from mouse incisors and molars during root development. Using this method,we obtained RNA samples of high quality and successfully performed microarray analyses. Robust differences in gene expression,as well as genes not previously associated with root formation,were identified. Comparison of gene expression data from microarray with real-time reverse transcriptase polymerase chain reaction (RT-PCR) supported our findings. These genes include known markers of dental epithelia,mesenchyme,cementoblasts and odontoblasts,as well as novel genes such as those in the fibulin family. In conclusion,our new approach in tissue preparation enables LCM collection of intact cells with well-preserved RNA allowing subsequent gene expression analyses using microarray and RT-PCR to define key regulators of tooth root development.
机译:上皮-间质相互作用(EMI)对于牙齿发育至关重要。在根形成过程中介导这些相互作用的分子机制尚不清楚。激光捕获显微切割术(LCM)和后续的微阵列分析技术可进行大规模的根部形成分子和细胞研究,但迄今为止,获得具有良好保存的RNA的未脱钙矿化牙齿或颌骨的完整组织学技术难题已阻碍了该技术的发展。在这里,我们描述了一种克服这一障碍的新方法,该障碍允许在牙根发育过程中从小鼠门牙和臼齿的牙齿上皮,邻近的间充质,成牙本质细胞和成牙本质细胞产生LCM。使用这种方法,我们获得了高质量的RNA样品并成功进行了微阵列分析。确定了基因表达的强大差异以及以前与根形成无关的基因。来自微阵列的基因表达数据与实时逆转录聚合酶链反应(RT-PCR)的比较支持了我们的发现。这些基因包括牙齿上皮,间充质,胶质母细胞和成牙本质细胞的已知标志物,以及诸如纤蛋白家族基因的新基因。总之,我们在组织制备中的新方法可以用保存完好的RNA进行LCM收集完整细胞,从而可以使用微阵列和RT-PCR进行后续的基因表达分析,从而确定牙根发育的关键调控因子。

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