Department of Pathophysiology, University of Tartu, Tartu, Estonia.
Department of Dermatology, University of Tartu, Tartu, Estonia.
Sci Rep. 2019 Dec 27;9(1):20111. doi: 10.1038/s41598-019-56579-5.
To evaluate skin tissue gene expression patterns correctly, extracting sufficient quantities of good quality RNA is essential. However, RNA extraction from skin tissue is challenging, as the hyaluronic acid-collagen matrix is extremely difficult to homogenize. Although there are multiple ways to extract RNA from skin, there are no comparative studies that identify the most critical steps, e.g. sample collection, storage and homogenization. We analysed the various steps involved in RNA extraction (i.e. biopsy collection as dry biopsy or into nucleotide stabilizing reagents, different storage conditions, enzymatic digestion, stator-rotor and bead motion-based homogenizing combined with column-based RNA purification). We hypothesised that domestic pig skin is applicable as a model for human skin studies. Altogether twenty different workflows were tested on pig skin and the four most promising workflows were tested on human skin samples. The optimal strategy for extracting human skin RNA was to collect, store and homogenize the sample in RLT lysis buffer from the RNeasy Fibrous Tissue Kit combined with beta-mercaptoethanol. Both stator-rotor and bead motion-based homogenizing were found to result in high quality and quantity of extracted RNA. Our results confirmed that domestic pig skin can be successfully used as a model for human skin RNA studies.
为了正确评估皮肤组织的基因表达模式,提取足够数量的高质量 RNA 是至关重要的。然而,从皮肤组织中提取 RNA 具有挑战性,因为透明质酸-胶原蛋白基质极难均匀化。虽然有多种方法可以从皮肤中提取 RNA,但没有比较研究来确定最关键的步骤,例如样本采集、储存和均化。我们分析了 RNA 提取过程中的各个步骤(即干活检或核苷酸稳定试剂中的活检采集、不同的储存条件、酶消化、基于定子-转子和珠粒运动的均化以及基于柱的 RNA 纯化)。我们假设家猪皮肤可作为人类皮肤研究的模型。总共在猪皮上测试了二十种不同的工作流程,并在人类皮肤样本上测试了四种最有前途的工作流程。从 RNeasy 纤维组织试剂盒中的 RLT 裂解缓冲液中采集、储存和均化样本,然后结合β-巯基乙醇,是提取人类皮肤 RNA 的最佳策略。结果均表明,基于定子-转子和珠粒运动的均化都可得到高质量和数量的提取 RNA。我们的研究结果证实,家猪皮肤可以成功地作为人类皮肤 RNA 研究的模型。