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Verification of performance of a direct fluorescent assay for cell-free DNA quantification stability according to pre-analytical storage conditions and the effect of freeze-thawing

机译:验证直接荧光测定的性能用于无细胞DNA定量根据分析前储存条件的稳定性以及冻融的效果

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摘要

A simple fluorescence-based cell-free DNA (CFD) assay has been previously developed that can directly measure nucleic acids without prior DNA extraction and amplification. However, studies on fluorescence-based CFD are lacking. In particular, there is no known information regarding the stability with regard to pre-analytical storage conditions in relation to time and temperature, or on the influence of freeze-thawing. Plasma was directly assayed to measure CFD using PicoGreen™ reagent. Standard linearity and accuracy were confirmed using salmon sperm DNA. Whole blood was left at room temperature (RT) and at 4˚C, and then plasma was separated. The CFD was also measured using thawed plasma after 1 week of freezing. As a correlation with a sperm DNA concentration, CFD demonstrated linearity over a wide range of concentrations, with a 0.998 correlation coefficient. The CFD level showed a change of up to 2.5 µg/ml according to pre-analytical storage time, and the changes were not consistent over time. The CFD values at RT after 1 h were similar to the baseline values, and the relative standard deviation was lowest under this condition. The CFD values between 4˚C and RT were similar over all time periods assessed. After freeze-thawing, the change in CFD value was reduced compared to that before freezing. The present study showed that CFD measurements using plasma processed within 1 h were optimal. Additionally, the effects of substantial changes according to storage conditions were reduced after freeze-thawing, and thus studies using stored samples is viable and relevant.
机译:先前已经开发了一种简单的荧光基细胞DNA(CFD)测定,其可以直接测量核酸而没有先前的DNA提取和扩增。然而,缺乏关于荧光的CFD的研究。特别地,关于关于时间和温度的关于预分析储存条件的稳定性,或冻融的影响,没有已知的信息。直接测定等离子体使用PICoGreen™试剂测量CFD。使用鲑鱼精子DNA确认标准线性和精度。全血在室温(RT)和4℃下留下,然后分离血浆。在冻结后1周后,还使用解冻的血浆测量CFD。作为与精子DNA浓度的相关性,CFD在宽范围的浓度下表现出线性,具有0.998的相关系数。根据预分析储存时间,CFD水平显示出高达2.5μg/ mL的变化,随着时间的推移,变化并不一致。 1小时后的RT值与基线值类似,并且在这种情况下相对标准偏差最低。在评估的所有时间段内,4℃和室温之间的CFD值相似。冻融后,与冻结之前,CFD值的变化降低。本研究表明,在1小时内使用血浆的CFD测量是最佳的。另外,在冷冻解冻后降低了根据储存条件的大量变化的影响,因此使用储存样品的研究是可行和相关的。

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