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Assessment of DNA encapsulation, a new room-temperature DNA storage method

机译:评估DNA封装,一种新的室温DNA存储方法

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摘要

A new procedure for room-temperature storage of DNA was evaluated whereby DNA samples from human tissue, bacteria, and plants were stored under an anoxic and anhydrous atmosphere in small glass vials fitted in stainless-steel, laser-sealed capsules (DNAshells (R)). Samples were stored in DNAshells (R) at room temperature for various periods of time to assess any degradation and compare it to frozen control samples and those stored in GenTegra (TM) tubes. The study included analysis of the effect of accelerated aging by using a high temperature (76 degrees C) at 50% relative humidity. No detectable DNA degradation was seen in samples stored in DNAshells (R) at room temperature for 18 months. Polymerase chain reaction experiments, pulsed field gel electrophoresis, and amplified fragment length polymorphism analyses also demonstrated that the protective properties of DNAshells (R) are not affected by storage under extreme conditions (76 degrees C, 50% humidity) for 30 hours, guaranteeing 100 years without DNA sample degradation. However, after 30 hours of storage at 76 degrees C, it was necessary to include adjustments to the process in order to avoid DNA loss. Successful protection of DNA was obtained for 1 week and even 1 month of storage at high temperature by adding trehalose, which provides a protective matrix. This study demonstrates the many advantages of using DNAshells (R) for room-temperature storage, particularly in terms of long-term stability, safety, transport, and applications for molecular biology research.
机译:评估了室温下保存DNA的新程序,从而将人体组织,细菌和植物的DNA样品在缺氧和无水气氛下保存在装有不锈钢激光密封胶囊(DNAshells(R))的小玻璃瓶中。 )。将样品在室温下于DNAshells(R)中存储各种时间,以评估降解情况,并将其与冷冻的对照样品以及GenTegra(TM)管中的样品进行比较。该研究包括通过在50%相对湿度下使用高温(76摄氏度)来分析加速老化的影响。在室温下存放18个月的DNAshells®中的样品中未发现可检测到的DNA降解。聚合酶链反应实验,脉冲场凝胶电泳和扩增的片段长度多态性分析还表明,DNAshells(R)的保护特性不受极端条件(76摄氏度,50%湿度)保存30小时的影响,可确保100多年没有DNA样品降解。但是,在76摄氏度下保存30小时后,有必要对过程进行调整,以避免DNA丢失。通过添加海藻糖可成功保护DNA在高温下保存1周甚至1个月,从而提供了保护性基质。这项研究证明了使用DNAshells(R)进行室温保存的许多优势,特别是在长期稳定性,安全性,运输以及分子生物学研究应用方面。

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