Demonstration of potential DNA contamination introduced by laboratory consumables using Fluorescein

IF 3.2 2区 医学 Q2 GENETICS & HEREDITY Forensic Science International-Genetics Pub Date : 2024-10-09 DOI:10.1016/j.fsigen.2024.103157
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Abstract

The development of increasingly efficient DNA extraction and profiling kits has increased the amount of allelic information obtained from trace DNA samples, but also inadvertently, increased the detection of DNA contamination. This study aimed to evaluate the potential of DNA transfer using fluorescein, fluorescent under an alternate light source, in the use of a range of forensically relevant DNA profiling consumables. An evaluation of two pre-lysis methods adopting three different sample tubes, some with deliberate seal damage, showed the PrepFiler™ Automated Forensic DNA Extraction Kit caused leakage and crusting when the rim of the PrepFiler™ LySep column was compromised, but no leakage was observed under the same conditions using the Investigator STAR Lyse&Prep kit. The AutoLys tube showed minimal leakage using the PrepFiler™ chemistry. A DNA extract tube with an external thread, similar to the AutoLys tube, showed no leakage after fridge or freezer storage. However, it highlighted that a centrifugal spin does not guarantee all the DNA will pool at the base of the tube. A comparison of adhesive plate sealing films to 8-well strip caps for sealing 96-well PCR plates showed the adhesive plate sealing films presented a lower risk of DNA transfer, largely due to the adhesion of dispersed liquid on the sticky surface of the film. Overall, this study highlighted a number of variables that may be considered in the development of more refined contamination minimisation protocols in respect to increased sensitivities of DNA profiling.
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使用荧光素展示实验室耗材可能造成的 DNA 污染
效率越来越高的 DNA 提取和分析试剂盒的开发增加了从痕量 DNA 样品中获取等位基因信息的数量,但也无意中增加了 DNA 污染的检测。本研究旨在评估使用荧光素进行 DNA 转移的潜力,荧光素在另一种光源下会发出荧光,可用于一系列法医相关的 DNA 分析耗材。对采用三种不同样品管的两种预裂解方法进行的评估显示,当 PrepFiler™ LySep 柱边缘受损时,PrepFiler™ 自动化法医 DNA 提取试剂盒会造成泄漏和结壳,但在使用 Investigator STAR Lyse&Prep 试剂盒的相同条件下,未观察到泄漏。使用 PrepFiler™ 化学试剂时,AutoLys 管的泄漏极少。带外螺纹的 DNA 提取管与 AutoLys 管类似,在冰箱或冷藏室保存后未出现泄漏。不过,这突出表明离心旋转并不能保证所有 DNA 都会聚集在试管底部。对用于密封 96 孔 PCR 板的粘合剂封板膜和 8 孔条形盖进行比较后发现,粘合剂封板膜的 DNA 转移风险较低,这主要是由于分散的液体附着在粘合剂封板膜的粘性表面上。总之,这项研究强调了一些变量,在制定更精细的污染最小化方案时可以考虑这些变量,以提高 DNA 分析的灵敏度。
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来源期刊
CiteScore
7.50
自引率
32.30%
发文量
132
审稿时长
11.3 weeks
期刊介绍: Forensic Science International: Genetics is the premier journal in the field of Forensic Genetics. This branch of Forensic Science can be defined as the application of genetics to human and non-human material (in the sense of a science with the purpose of studying inherited characteristics for the analysis of inter- and intra-specific variations in populations) for the resolution of legal conflicts. The scope of the journal includes: Forensic applications of human polymorphism. Testing of paternity and other family relationships, immigration cases, typing of biological stains and tissues from criminal casework, identification of human remains by DNA testing methodologies. Description of human polymorphisms of forensic interest, with special interest in DNA polymorphisms. Autosomal DNA polymorphisms, mini- and microsatellites (or short tandem repeats, STRs), single nucleotide polymorphisms (SNPs), X and Y chromosome polymorphisms, mtDNA polymorphisms, and any other type of DNA variation with potential forensic applications. Non-human DNA polymorphisms for crime scene investigation. Population genetics of human polymorphisms of forensic interest. Population data, especially from DNA polymorphisms of interest for the solution of forensic problems. DNA typing methodologies and strategies. Biostatistical methods in forensic genetics. Evaluation of DNA evidence in forensic problems (such as paternity or immigration cases, criminal casework, identification), classical and new statistical approaches. Standards in forensic genetics. Recommendations of regulatory bodies concerning methods, markers, interpretation or strategies or proposals for procedural or technical standards. Quality control. Quality control and quality assurance strategies, proficiency testing for DNA typing methodologies. Criminal DNA databases. Technical, legal and statistical issues. General ethical and legal issues related to forensic genetics.
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