Wang Yu, Keith Marie, Leyme Anthony, Bergelson Svetlana, Feschenko Marina
Department of Analytical Development, Biogen Inc. 225 Binney St, Cambridge, MA, 02142, USA.
Department of Analytical Development, Biogen Inc. 225 Binney St, Cambridge, MA, 02142, USA.
Anal Biochem. 2019 Oct 15;583:113363. doi: 10.1016/j.ab.2019.113363. Epub 2019 Jul 13.
Long-term storage of DNA is a routine practice in biomedical research, diagnostics and drug discovery. Periodic monitoring is important for early detection of changes in DNA quality and quantity. Existing methods include agarose gel, ultraviolet (UV) absorbance, fluorometric reading and qPCR. However, these methods are either limited by sensitivity or depend on DNA standards, which face the same storage challenges. In this paper, we tested the state-of-the-art droplet digital PCR (ddPCR) technology that can quantify the absolute DNA copy number with no need of a standard curve. We found that ddPCR was very accurate in determining the level of a plasmid DNA standard and was sensitive to DNA loss due to degradation or adsorption. With the ddPCR technology, we found a gradual process of DNA adsorption to several types of low binding tubes, which was unnoticed before. Although modest, adsorption significantly affected recovery of highly diluted DNA (<0.2 μg/mL), which could be rescued by addition of carrier DNA. In conclusion, this paper not only demonstrated that ddPCR is an ideal method for monitoring DNA storage, but also provided an effective approach to improving recovery of highly diluted DNA, which may have broad implications in assay development, diagnostics and forensic sciences.
DNA的长期储存是生物医学研究、诊断和药物发现中的常规操作。定期监测对于早期发现DNA质量和数量的变化很重要。现有方法包括琼脂糖凝胶电泳、紫外(UV)吸光度法、荧光读数法和定量聚合酶链反应(qPCR)。然而,这些方法要么受灵敏度限制,要么依赖面临相同储存挑战的DNA标准品。在本文中,我们测试了最先进的数字液滴聚合酶链反应(ddPCR)技术,该技术无需标准曲线即可定量绝对DNA拷贝数。我们发现,ddPCR在确定质粒DNA标准品水平方面非常准确,并且对由于降解或吸附导致的DNA损失很敏感。通过ddPCR技术,我们发现DNA吸附到几种低结合管上是一个渐进的过程,这在以前未被注意到。虽然吸附程度不大,但显著影响了高度稀释DNA(<0.2μg/mL)的回收率,添加载体DNA可挽救这种情况。总之,本文不仅证明了ddPCR是监测DNA储存的理想方法,还提供了一种提高高度稀释DNA回收率的有效方法,这可能在分析方法开发、诊断和法医学中有广泛的意义。