Verena Kopfnagel, Norman Klopp, Inga Bernemann, Nataliia Nizhegorodtseva, Rory Wilson, Raphael Gronauer, Martin Seifert, Thomas Illig
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引用次数: 0
摘要
表征 DNA 甲基化模式以确定复杂人类疾病的表观遗传标记是生物医学研究中一个重要且发展迅速的部分。过去几年中收集并储存在临床生物库中的 DNA 样本是未来表观遗传学研究的重要来源。分离的 gDNA 在低温下储存数年后被认为是稳定的。然而,长期储存的 DNA 样本的多次使用和相关的反复解冻对 DNA 甲基化模式的影响尚未得到研究。在这项研究中,我们通过比较全基因组甲基化图谱,研究了多达 10 个冻融周期对全球 DNA 甲基化的影响。将 19 名健康志愿者的 DNA 样本冷冻在 -80°C 或进行多达 10 次的冻融循环。使用Illumina Infinium MethylationEPIC BeadChip分析了0、1、3、5或10个解冻周期后的全基因组DNA甲基化情况。通过β值密度图和多维缩放图对全基因组DNA甲基化概况进行了评估,结果表明存在明显的受试者依赖性变异,但冷冻和解冻周期的变异性很低。因此,在所进行的统计分析中,没有发现所研究的甲基化胞嘧啶/鸟嘌呤位点存在明显差异。我们的研究结果表明,长期冷冻的 DNA 样本在经过多次解冻周期后仍适合进行表观遗传学研究。
Effects of Repeated Freeze and Thaw Cycles on the Genome-Wide DNA Methylation Profile of Isolated Genomic DNA.
The characterization of DNA methylation patterns to identify epigenetic markers for complex human diseases is an important and rapidly evolving part in biomedical research. DNA samples collected and stored in clinical biobanks over the past years are an important source for future epigenetic studies. Isolated gDNA is considered stable when stored at low temperatures for several years. However, the effect of multiple use and the associated repeated thawing of long-term stored DNA samples on DNA methylation patterns has not yet been investigated. In this study, we examined the influence of up to 10 freeze and thaw cycles on global DNA methylation by comparing genome-wide methylation profiles. DNA samples from 19 healthy volunteers were either frozen at -80°C or subjected to up to 10 freeze and thaw cycles. Genome-wide DNA methylation was analyzed after 0, 1, 3, 5, or 10 thaw cycles using the Illumina Infinium MethylationEPIC BeadChip. Evaluation of the global DNA methylation profile by beta-value density plots and multidimensional scaling plots revealed an expected clear participant-dependent variability, but a very low variability depending on the freeze and thaw cycles. In accordance, no significant difference in any of the methylated cytosine/guanine sites studied could be detected in the performed statistical analyses. Our results suggest that long-term frozen DNA samples are still suitable for epigenetic studies after multiple thaw cycles.
Biopreservation and BiobankingBiochemistry, Genetics and Molecular Biology-General Biochemistry,Genetics and Molecular Biology
自引率
12.50%
发文量
114
期刊介绍:
Biopreservation and Biobanking is the first journal to provide a unifying forum for the peer-reviewed communication of recent advances in the emerging and evolving field of biospecimen procurement, processing, preservation and banking, distribution, and use. The Journal publishes a range of original articles focusing on current challenges and problems in biopreservation, and advances in methods to address these issues related to the processing of macromolecules, cells, and tissues for research.
In a new section dedicated to Emerging Markets and Technologies, the Journal highlights the emergence of new markets and technologies that are either adopting or disrupting the biobank framework as they imprint on society. The solutions presented here are anticipated to help drive innovation within the biobank community.
Biopreservation and Biobanking also explores the ethical, legal, and societal considerations surrounding biobanking and biorepository operation. Ideas and practical solutions relevant to improved quality, efficiency, and sustainability of repositories, and relating to their management, operation and oversight are discussed as well.