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首页> 外文期刊>Malaria Journal >The design and evaluation of a shaped filter collection device to sample and store defined volume dried blood spots from finger pricks
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The design and evaluation of a shaped filter collection device to sample and store defined volume dried blood spots from finger pricks

机译:异型过滤器收集设备的设计和评估,用于采样和存储手指刺中确定体积的干血斑

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Background Dried blood spots are a common medium for collecting patient blood prior to testing for malaria by molecular methods. A new shaped filter device for the quick and simple collection of a designated volume of patient blood has been designed and tested against conventional blood spots for accuracy and precision. Methods Shaped filter devices were laser cut from Whatman GB003 paper to absorb a 20 μl blood volume. These devices were used to sample Plasmodium falciparum infected blood and the volume absorbed was measured volumetrically. Conventional blood spots were made by pipetting 20 μl of the same blood onto Whatman 3MM paper. DNA was extracted from both types of dried blood spot using Qiagen DNA blood mini or Chelex extraction for real-time PCR analysis, and PURE extraction for malaria LAMP testing. Results The shaped filter devices collected a mean volume of 21.1 μl of blood, with a coefficient of variance of 8.1%. When used for DNA extraction by Chelex and Qiagen methodologies the mean number of international standard units of P. falciparum DNA recovered per μl of the eluate was 53.1 (95% CI: 49.4 to 56.7) and 32.7 (95% CI: 28.8 to 36.6), respectively for the shaped filter device, and 54.6 (95% CI: 52.1 to 57.1) and 12.0 (95% CI: 9.9 to 14.1), respectively for the 3MM blood spots. Qiagen extraction of 200 μl of whole infected blood yielded 853.6 international standard units of P. falciparum DNA per μl of eluate. Conclusions A shaped filter device provides a simple way to quickly sample and store a defined volume of blood without the need for any additional measuring devices. Resultant dried blood spots may be employed for DNA extraction using a variety of technologies for nucleic acid amplification without the need for repeated cleaning of scissors or punches to prevent cross contamination of samples and results are comparable to traditional DBS.
机译:背景技术干血斑是在通过分子方法检测疟疾之前收集患者血液的常用介质。为了快速和简单地收集指定量的患者血液,已经设计了一种新型过滤器,并针对常规血斑进行了精确度和精确度测试。方法从Whatman GB003纸上激光切割成形的过滤器装置,以吸收20μl的血液量。这些设备用于对恶性疟原虫感染的血液进行采样,并按体积测量吸收的体积。通过将20μl相同的血液吸到Whatman 3MM纸上来制成常规的血斑。使用Qiagen DNA mini血液或Chelex提取液从两种干血斑中提取DNA进行实时PCR分析,并使用PURE提取液进行疟疾LAMP测试。结果成形的过滤器设备收集的平均血液量为21.1μl,变异系数为8.1%。通过Chelex和Qiagen方法进行DNA提取时,每微升洗脱液回收的国际标准单位恶性疟原虫DNA的平均数分别为53.1(95%CI:49.4至56.7)和32.7(95%CI:28.8至36.6)。分别用于异形过滤器,对于3MM血斑分别为54.6(95%CI:52.1至57.1)和12.0(95%CI:9.9至14.1)。 Qiagen提取200μl全感染血液后,每μl洗脱液产生853.6国际标准单位的恶性疟原虫DNA。结论异形过滤器设备提供了一种简单的方法来快速采样和存储一定量的血液,而无需任何其他测量设备。可以使用多种用于核酸扩增的技术将所得的干血斑用于DNA提取,而无需重复清洗剪刀或打孔机以防止样品的交叉污染,其结果可与传统DBS媲美。

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