Morono Yuki, Hoshino Tatsuhiko, Terada Takeshi, Suzuki Taketo, Sato Takahiro, Yuasa Hisashi, Kubota Yuji, Inagaki Fumio
Geomicrobiology Group, Kochi Institute for Core Sample Research, Japan Agency for Marine-Earth Science and Technology (JAMSTEC).
Geobiotechnology Group, Research and Development Center for Submarine Resources, JAMSTEC.
Microbes Environ. 2018 Jul 4;33(2):222-226. doi: 10.1264/jsme2.ME18012. Epub 2018 Jun 16.
Experimental contamination by exogenous DNA is a major issue in molecular biological studies for data quality and its management. We herein assessed DNA aerosols for the risk of contamination and tested the capacity of clean air filters to trap and remove DNA aerosols. DNA aerosols were generated by atomizing a DNA solution and introduced into a laminar flow clean air unit. Capture and detection performed upstream and downstream of the clean air unit showed that a significant fraction (>99.96%) of introduced molecules was trapped and removed by the filter. Although DNA aerosols appear to be an avoidable source of exogenous contamination, a clearer understanding and careful experimental procedures are needed in order to perform contamination-free, high-quality molecular biology experiments.
外源性DNA的实验污染是分子生物学研究中影响数据质量及其管理的一个主要问题。我们在此评估了DNA气溶胶的污染风险,并测试了空气过滤器捕获和去除DNA气溶胶的能力。通过雾化DNA溶液产生DNA气溶胶,并将其引入层流洁净空气单元。在洁净空气单元的上游和下游进行的捕获和检测表明,引入的分子中有很大一部分(>99.96%)被过滤器捕获并去除。尽管DNA气溶胶似乎是外源性污染的一个可避免来源,但为了进行无污染的高质量分子生物学实验,仍需要更清晰的认识和谨慎的实验操作。