College of Life Sciences, University of Chinese Academy of Sciences, Beijing, China.
BGI-Shenzhen, Shenzhen, China.
Biopreserv Biobank. 2023 Jun;21(3):242-254. doi: 10.1089/bio.2022.0004. Epub 2022 Aug 24.
Plasma cell-free RNAs (cfRNAs) can serve as noninvasive biomarkers for the diagnosis and monitoring of diseases. However, the delay in blood processing may lead to unreliable results. Therefore, an unbiased evaluation based on the whole transcriptome under different storage conditions is needed. Here, blood samples were collected in ethylenediaminetetraacetic acid tubes and processed immediately (0 hour), or stored at room temperature (RT) or 4°C for different time intervals (2, 6, and 24 hours) before plasma separation. High-throughput sequencing was applied to assess the effects of storage conditions on the transcript profiles and fragment characteristics of plasma cell-free mRNA, long noncoding RNA (lncRNA), and small RNAs. More genes changed their expression levels with time when blood was stored at RT compared with those at 4°C. Cell-free mRNA and lncRNA were relatively stable in blood preserved at 4°C for 6 hours, while cell-free microRNA (miRNA) and piwi-interacting RNA (piRNA) remained stable at 4°C for 24 hours. After 24 hours, more contamination of the leukocyte-derived RNAs occurred at RT, possibly due to apoptosis. Meanwhile, significant changes were also observed regarding the characteristics of the RNA fragments, including fragment size, the proportion of intron, and the pyrimidine frequency of the fragmented 3' end. Fifteen tissue-enriched genes were detected in the plasma but not expressed in leukocytes. The expression level and fragment length of these genes gradually decreased during storage, suggesting the degradation of the cfRNA and the dilution of leukocyte-derived RNA with other tissue-derived cfRNA. Our results suggest that the contamination of leukocyte-derived RNA and the degradation of original cfRNA contribute to the changes in the cfRNA expression profiles and the fragment characteristics during short-term storage. The storage of blood at 4°C for 6 hours allows plasma cfRNA to remain relatively stable, which will be useful for further studies or clinical applications where adequate quantification or the fragment signature of cfRNA is required.
血浆无细胞 RNA (cfRNA) 可作为疾病诊断和监测的非侵入性生物标志物。然而,血液处理的延迟可能导致结果不可靠。因此,需要基于不同储存条件下的全转录组进行无偏评估。
在这里,血液样本采集于乙二胺四乙酸管中,立即(0 小时)处理,或在室温 (RT) 或 4°C 下储存不同时间间隔(2、6 和 24 小时)后再分离血浆。高通量测序用于评估储存条件对血浆无细胞信使 RNA (mRNA)、长链非编码 RNA (lncRNA) 和小 RNA (sRNA) 的转录谱和片段特征的影响。与 4°C 相比,在 RT 下储存的血液中,随着时间的推移,更多的基因改变了它们的表达水平。在 4°C 下储存 6 小时时,cfmRNA 和 lncRNA 相对稳定,而 cfmiRNA 和 piRNA 在 4°C 下储存 24 小时时保持稳定。24 小时后,在 RT 下白细胞来源的 RNA 污染更严重,可能是由于细胞凋亡所致。同时,RNA 片段的特征也发生了显著变化,包括片段大小、内含子比例和碎片化 3' 端嘧啶频率。在血浆中检测到 15 种组织富集基因,但在白细胞中不表达。这些基因的表达水平和片段长度在储存过程中逐渐降低,表明 cfRNA 的降解以及白细胞衍生 RNA 与其他组织衍生 cfRNA 的稀释。
我们的结果表明,白细胞衍生 RNA 的污染和原始 cfRNA 的降解导致 cfRNA 表达谱和片段特征在短期储存过程中发生变化。在 4°C 下储存 6 小时可使血浆 cfRNA 保持相对稳定,这对于需要充分定量或 cfRNA 片段特征的进一步研究或临床应用将非常有用。