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High throughput investigative dermatology in 2012 and beyond: A new era beckons

机译:2012年及以后的高通量研究性皮肤病学:新时代的召唤

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High throughput molecular biology began around the mid-1990s with the introduction of microarrays - a technology that enabled investigators to quantify the cellular expression levels of tens of thousands of mRNA transcripts simultaneously. To date, a large number of microarray experiments have been performed in the investigation of RNA expression signatures in normal and pathological tissues. This review focuses on a next generation tool in high throughput investigation: RNA sequencing or RNA-Seq, highlighting its advantages over traditional microarray investigation and discussing its utility in investigative dermatology. In contrast with the results obtained from microarray experiments, RNA-Seq generates mRNA abundance counts, can identify novel transcripts and splice variants, and provides sequence resolution at the level of single base-pairs. Implementing RNA-Seq in the investigation of skin disease will yield novel insights into the pathogenesis of disease, will facilitate the discovery of new diseases and new mechanisms of disease, and will allow researchers to probe genetic disease in high resolution and with unprecedented efficiency.
机译:高通量分子生物学始于1990年代中期,当时芯片技术的引入使研究人员能够同时量化数万个mRNA转录本的细胞表达水平。迄今为止,在研究正常组织和病理组织中的RNA表达特征方面已经进行了大量的微阵列实验。这篇综述重点关注高通量研究中的下一代工具:RNA测序或RNA-Seq,突出了其相对于传统微阵列研究的优势,并讨论了其在研究皮肤病学中的用途。与从微阵列实验获得的结果相反,RNA-Seq产生mRNA丰度计数,可以识别新的转录本和剪接变体,并在单个碱基对的水平上提供序列分辨率。在皮肤病研究中实施RNA-Seq将产生有关疾病发病机理的新颖见解,将有助于发现新疾病和新疾病机制,并使研究人员能够以高分辨率和空前的效率探测遗传疾病。

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