首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >A Practical and Novel Method to Extract Genomic DNA from Blood Collection Kits for Plasma Protein Preservation
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A Practical and Novel Method to Extract Genomic DNA from Blood Collection Kits for Plasma Protein Preservation

机译:一种实用新颖的方法可从血液采集试剂盒中提取基因组DNA以保存血浆蛋白

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摘要

Laboratory tests can be done on the cellular or fluid portions of the blood. The use of different blood collection tubes determines the portion of the blood that can be analyzed (whole blood, plasma or serum). Laboratories involved in studying the genetic basis of human disorders rely on anticoagulated whole blood collected in EDTA-containing vacutainer as the source of DNA for genetic / genomic analysis. Because most clinical laboratories perform biochemical, serologic and viral testing as a first step in phenotypic outcome investigation, anticoagulated blood is also collected in heparin-containing tube (plasma tube). Therefore when DNA and plasma are needed for simultaneous and parallel analyses of both genomic and proteomic data, it is customary to collect blood in both EDTA and heparin tubes. If blood could be collected in a single tube and serve as a source for both plasma and DNA, that method would be considered an advancement to existing methods. The use of the compacted blood after plasma extraction represents an alternative source for genomic DNA, thus minimizing the amount of blood samples processed and reducing the number of samples required from each patient. This would ultimately save time and resources.The BD P100 blood collection system for plasma protein preservation were created as an improved method over previous plasma or serum collection tubes1, to stabilize the protein content of blood, enabling better protein biomarker discovery and proteomics experimentation from human blood. The BD P100 tubes contain 15.8 ml of spray-dried K2EDTA and a lyophilized proprietary broad spectrum cocktail of protease inhibitors to prevent coagulation and stabilize the plasma proteins. They also include a mechanical separator, which provides a physical barrier between plasma and cell pellets after centrifugation. Few methods have been devised to extract DNA from clotted blood samples collected in old plasma tubes2-4. Challenges from these methods were mainly associated with the type of separator inside the tubes (gel separator) and included difficulty in recovering the clotted blood, the inconvenience of fragmenting or dispersing the clot, and obstruction of the clot extraction by the separation gel.We present the first method that extracts and purifies genomic DNA from blood drawn in the new BD P100 tubes. We compare the quality of the DNA sample from P100 tubes to that from EDTA tubes. Our approach is simple and efficient. It involves four major steps as follows: 1) the use of a plasma BD P100 (BD Diagnostics, Sparks, MD, USA) tube with mechanical separator for blood collection, 2) the removal of the mechanical separator using a combination of sucrose and a sterile paperclip metallic hook, 3) the separation of the buffy coat layer containing the white cells and 4) the isolation of the genomic DNA from the buffy coat using a regular commercial DNA extraction kit or a similar standard protocol.
机译:实验室测试可以在血液的细胞或液体部分进行。使用不同的采血管确定可以分析的血液部分(全血,血浆或血清)。参与研究人类疾病遗传基础的实验室依靠收集在含EDTA的真空容器中的抗凝全血作为基因/基因组分析的DNA来源。由于大多数临床实验室将生物化学,血清学和病毒学检测作为表型结果调查的第一步,因此抗凝血液也会收集在含肝素的试管(血浆管)中。因此,当需要DNA和血浆同时进行基因组和蛋白质组数据的并行分析时,通常需要在EDTA和肝素管中采集血液。如果可以将血液收集在单个管中并用作血浆和DNA的来源,则该方法将被认为是对现有方法的改进。血浆提取后使用致密血液代表了基因组DNA的另一种来源,从而使处理的血液样品量最少,并减少了每个患者所需的样品数量。最终节省了时间和资源。创建了用于血浆蛋白保存的BD P100血液采集系统,是对先前血浆或血清采集管 1 的改进方法,以稳定血液中的蛋白质含量,从而实现更好的血液分离人类血液中蛋白质生物标志物的发现和蛋白质组学实验。 BD P100试管包含15.8 ml喷雾干燥的K2EDTA和蛋白酶抑制剂的冻干专有广谱混合物,可防止凝血并稳定血浆蛋白。它们还包括一个机械分离器,该分离器在离心后为血浆和细胞沉淀之间提供物理屏障。目前很少有人设计从旧血浆管 2-4 中收集的凝结血样中提取DNA的方法。这些方法面临的挑战主要与管内分离器的类型(凝胶分离器)有关,包括难以回收凝结的血液,使凝块破碎或分散不便以及通过分离凝胶阻碍凝块提取的困难。第一种从新BD P100管中抽取的血液中提取和纯化基因组DNA的方法。我们比较了P100管和EDTA管的DNA样品质量。我们的方法简单有效。它包括以下四个主要步骤:1)使用带有机械分离器的血浆BD P100(BD Diagnostics,Sparks,MD,USA)管进行血液采集,2)使用蔗糖和蔗糖的组合去除机械分离器无菌回形针金属钩,3)分离含有白细胞的血沉棕黄层,以及4)使用常规的商业DNA提取试剂盒或类似的标准方案从血沉棕黄层中分离基因组DNA。

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