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在冻干稳定剂中,血浆样本中的“HIV”RNA在高达45°C的温度下的储存和运输。

Storage and Transportation of "HIV" RNA in Plasma Samples up to 45°C in a Lyophilized Stabilizer.

作者信息

Weidner Jürgen, Hünger Frank, Odaibo Georgina, Olaleye David, Reichelt Doris, Greve Burkhard, Cassens Uwe

出版信息

Clin Lab. 2019 Aug 1;65(8). doi: 10.7754/Clin.Lab.2019.190126.

Abstract

BACKGROUND

Blood or plasma samples from rural areas are often transported under suboptimal conditions to central laboratories. The negative influence of different storage temperatures during transportation as well as long transportation times on the stability of unprotected HIV RNA is well known. Therefore, the correct and reliable quantification of HIV RNA might be very difficult. A stabilization solution for the storage and transportation of plasma samples was developed which stabilizes RNA for seven days up to 45°C without viral load changes.

METHODS

Blood samples from HIV positive individuals were collected into EDTA containing tubes. The isolated plasma samples in Germany were pipetted into pre-prepared RNA stabilization tubes and incubated for seven days at 45°C. HIV-1 RNA quantification was performed on a HIV-1 LCx m 2000 system from Abbott and a Qiagen/Artus HI Virus-1 RG RT-PCR Kit on a Rotor-Gene Q PCR machine. In addition, plasma samples were collected and tested using existing SOP for storage and transportation in Nigeria. Plasma samples were treated with and without stabilization solution and the AMPLICOR HIV-1 MONITORTM test was used to determine viral load.

RESULTS

Seventy-four stabilized plasma samples were tested in Germany and results were compared to those tested unprotected within two hours. No significant changes of viral load were detected up to seven days and 45°C in case of stabilized samples. In contrast RNA of the same unprotected samples was no longer detectable after one day at 45°C. Additionally, 22 plasma samples were investigated on day zero and under field conditions in Nigeria without changes of the viral load after seven days under given temperature conditions.

CONCLUSIONS

No cooling chain is necessary for the storage and/or transportation of plasma samples treated with the new RNA stabilization solution for up to seven days. The use of this solution to preserve plasma RNA will be very helpful in countries where the environmental temperature is higher than 30°C, thus addressing the problem of unreliable viral load results due to suboptimal storage or transportation conditions. Further, the costs of storage and transportation of samples for viral load quantification could be significantly reduced.

摘要

背景

农村地区的血液或血浆样本通常在不理想的条件下运往中心实验室。运输过程中不同储存温度以及较长运输时间对未保护的HIV RNA稳定性的负面影响是众所周知的。因此,准确可靠地定量HIV RNA可能非常困难。已开发出一种用于血浆样本储存和运输的稳定溶液,该溶液可在高达45°C的温度下使RNA稳定7天,且病毒载量不变。

方法

将HIV阳性个体的血液样本采集到含EDTA的试管中。在德国,将分离出的血浆样本移液至预先准备好的RNA稳定试管中,并在45°C下孵育7天。使用雅培公司的HIV-1 LCx m 2000系统以及在Rotor-Gene Q PCR仪上使用Qiagen/Artus HI Virus-1 RG RT-PCR试剂盒进行HIV-1 RNA定量。此外,在尼日利亚按照现有标准操作程序收集并检测血浆样本。对血浆样本分别进行有无稳定溶液处理,并使用AMPLICOR HIV-1 MONITORTM检测来确定病毒载量。

结果

在德国对74份经稳定处理的血浆样本进行了检测,并将结果与两小时内未加保护进行检测的样本结果进行比较。对于经稳定处理的样本,在高达45°C的温度下放置7天,未检测到病毒载量有显著变化。相比之下,同样未加保护的样本在45°C放置一天后RNA就不再能检测到。此外,在尼日利亚对22份血浆样本在第0天进行了研究,并在现场条件下进行观察,在给定温度条件下放置7天后病毒载量没有变化。

结论

对于用新的RNA稳定溶液处理过的血浆样本,储存和/或运输长达7天无需冷链。在环境温度高于30°C的国家,使用这种溶液保存血浆RNA将非常有帮助,从而解决因储存或运输条件不理想导致病毒载量结果不可靠的问题。此外,用于病毒载量定量的样本储存和运输成本可大幅降低。

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