Laboratory of Experimental Biochemistry & Molecular Biology, IRCCS Istituto ortopedico Galeazzi, Milano, Italia.
Department of Physical Culture, Gdańsk University of Physical Education & Sport, Gdańsk, Poland.
Biochem Med (Zagreb). 2020 Feb 15;30(1):010703. doi: 10.11613/BM.2020.010703. Epub 2019 Dec 15.
Circulating microRNAs (miRNAs) are emerging as potential biomarkers. However, the lack of preanalytical and analytical standardization limits their use. The aim of this study was to determine the expression of different miRNAs in plasma according to different collection and storage conditions.
Venous blood from 10 volunteers was collected in tubes spray-coated with dipotassium salt of ethylendiaminetetraacetic acid, either with (plasma-preparation tube, PPT) or without (K2EDTA) gel separator. Platelet-poor plasma (PPP) was also obtained from K2EDTA plasma. After storage under different conditions, miRNA-enriched total RNA was isolated from plasma and reverse transcribed. A panel of 179 miRNAs was assayed by quantitative polymerase chain reaction and the results were analysed by GenEx software. Detectability and stability of miRNAs were determined.
The number of undetected miRNAs was: 18, 24, and 22 in PPT; 83, 43, and 20 in K2EDTA; and 76, 106, and 104 in PPP samples, for plasma immediately frozen at - 80°C and plasma stored for 24h at room temperature or 4°C, respectively. Circulating miRNA expression in PPT samples was not affected by storage delay or temperature, while the percentage of up- and down-regulated miRNA in K2EDTA and PPP samples ranged from 2%, and 1% to 7%, and 5%, respectively.
Sample matrix, temperature and delay in storage strongly influence the expression level of plasma miRNAs. Our results indicate PPT tubes as the most suitable matrix to improve total miRNA detectability and stability, independently of temperature.
循环 microRNAs(miRNAs)正在成为有潜力的生物标志物。然而,由于缺乏分析前和分析标准化,它们的应用受到限制。本研究旨在根据不同的采集和储存条件,确定血浆中不同 miRNAs 的表达情况。
从 10 名志愿者中采集静脉血,分别置于含有二钾盐的乙二胺四乙酸(ethylendiaminetetraacetic acid,EDTA)的试管(血浆准备管,PPT)或不含有凝胶分离剂的 EDTA 管(K2EDTA)中。从 K2EDTA 血浆中提取血小板贫血浆(platelet-poor plasma,PPP)。在不同条件下储存后,从血浆中分离富含 miRNA 的总 RNA 并进行逆转录。通过定量聚合酶链反应(polymerase chain reaction,PCR)检测了 179 个 miRNA 表达谱,并用 GenEx 软件进行分析。检测了 miRNA 的可检测性和稳定性。
立即在-80°C 冷冻的 PPT 样本中,有 18、24 和 22 个 miRNA 无法检测到;在室温或 4°C 储存 24h 的 K2EDTA 和 PPP 样本中,分别有 83、43 和 20 个 miRNA 无法检测到。PPT 样本的循环 miRNA 表达不受储存延迟或温度的影响,而 K2EDTA 和 PPP 样本中上调和下调 miRNA 的比例范围分别为 2%、1%至 7%和 5%。
样本基质、温度和储存延迟极大地影响了血浆 miRNA 的表达水平。我们的结果表明,PPT 管是提高总 miRNA 可检测性和稳定性的最适宜基质,与温度无关。