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简单经济的室温下病毒 RNA 提取和储存方法。

Simple and Economical Extraction of Viral RNA and Storage at Ambient Temperature.

机构信息

Emory University, Department of Medicine, Division of Infectious Diseases, Atlanta, Georgia, USA.

Universidad Nacional de Asunción, Instituto de Investigaciones en Ciencias de la Salud, Departamento de Salud Pública, San Lorenzo, Paraguay.

出版信息

Microbiol Spectr. 2022 Jun 29;10(3):e0085922. doi: 10.1128/spectrum.00859-22. Epub 2022 Jun 1.

Abstract

RNA extraction is essential for the molecular detection of common viral pathogens. However, available extraction methods and the need for ultra-cold storage limit molecular testing in resource-constrained settings. Herein, we describe the development of an economical xtraction and torage (RNAES) protocol that eliminates requirements for instrumentation, expensive materials, and preserved cold chain. Through an iterative process, we optimized viral lysis and RNA binding to and elution from glass fiber membranes included in simple RNAES packets. Efficient viral lysis was achieved with a nontoxic buffer containing sucrose, KCl, proteinase K, and carrier RNA. Viral RNA binding to glass fiber membranes was concentration dependent across seven orders of magnitude (4.0-10.0 log copies/μL) and significantly increased with an acidic arginine binding buffer. For the clinical evaluation, 36 dengue virus (DENV)-positive serum samples were extracted in duplicate with the optimized RNAES protocol and once in an EMAG instrument (bioMérieux). DENV RNA was successfully extracted from 71/72 replicates (98.6%) in the RNAES protocol, and real-time RT-PCR cycle threshold () values correlated between extraction methods. DENV RNA, extracted from clinical samples, was stable when stored on dried RNAES membranes at ambient temperature for up to 35 days, with median eluate RNA concentration decreasing by 0.18 and 0.29 log copies/μL between day 0 and days 7 and 35, respectively. At a cost of $0.08/sample, RNAES packets address key limitations to available protocols and may increase capacity for molecular detection of RNA viruses. RNA extraction methods and ultra-cold storage requirements limit molecular testing for common viruses. We developed a simple, flexible, and economical method that simultaneously addresses these limitations. At $0.08/sample, the new xtraction and torage (RNAES) protocol successfully extracted viral RNA from acute-phase sera and provided stable, ambient-temperature RNA storage for 35 days. Using this approach, we expect to improve RNA virus detection and outbreak response in resource-constrained settings.

摘要

RNA 提取对于常见病毒病原体的分子检测至关重要。然而,现有的提取方法和对超低温储存的需求限制了资源有限环境中的分子检测。在此,我们描述了一种经济的提取和储存(RNAES)方案的开发,该方案消除了对仪器、昂贵材料和保冷链的需求。通过迭代过程,我们优化了包含在简单 RNAES 包中的玻璃纤维膜上的病毒裂解以及 RNA 的结合和洗脱。使用含有蔗糖、KCl、蛋白酶 K 和载体 RNA 的无毒缓冲液实现了有效的病毒裂解。病毒 RNA 与玻璃纤维膜的结合在七个数量级(4.0-10.0 log 拷贝/μL)上呈浓度依赖性,并且在用酸性精氨酸结合缓冲液处理时显著增加。在临床评估中,使用优化的 RNAES 方案对 36 份登革热病毒(DENV)阳性血清样本进行了重复提取,并在 EMAG 仪器(bioMérieux)中提取了一次。在 RNAES 方案中,成功地从 72 个重复样本中的 71 个(98.6%)中提取了 DENV RNA,并且两种提取方法的实时 RT-PCR 循环阈值(Ct)值相关。从临床样本中提取的 DENV RNA 存放在干燥的 RNAES 膜上,在环境温度下可稳定保存长达 35 天,洗脱液中 RNA 浓度中位数在第 0 天和第 7 天以及第 35 天分别下降了 0.18 和 0.29 log 拷贝/μL。每份样本的成本为 0.08 美元,RNAES 试剂盒解决了现有方案的关键限制因素,并可能增加 RNA 病毒的分子检测能力。 RNA 提取方法和超低温储存要求限制了常见病毒的分子检测。我们开发了一种简单、灵活和经济的方法,同时解决了这些限制。每份样本的成本为 0.08 美元,新的提取和储存(RNAES)方案成功地从急性血清中提取了病毒 RNA,并提供了 35 天的稳定、环境温度 RNA 储存。使用这种方法,我们预计将改善资源有限环境中的 RNA 病毒检测和疫情应对能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75d7/9241768/82a0113fc1ff/spectrum.00859-22-f001.jpg

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