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杨佳昭, 倪云龙, 乔昕, 王燕梅, 杜佳露, 霍翔. 纯净水中病毒富集和浓缩方法优化及筛选[J]. 中国公共卫生, 2023, 39(12): 1625-1629. DOI: 10.11847/zgggws1142700
引用本文: 杨佳昭, 倪云龙, 乔昕, 王燕梅, 杜佳露, 霍翔. 纯净水中病毒富集和浓缩方法优化及筛选[J]. 中国公共卫生, 2023, 39(12): 1625-1629. DOI: 10.11847/zgggws1142700
YANG Jiazhao, NI Yunlong, QIAO Xin, WANG Yanmei, DU Jialu, HUO Xiang. Condition optimization of MCE adsorption-ultrafiltration for enrichment and concentration of viruses in purified water: an experimental study[J]. Chinese Journal of Public Health, 2023, 39(12): 1625-1629. DOI: 10.11847/zgggws1142700
Citation: YANG Jiazhao, NI Yunlong, QIAO Xin, WANG Yanmei, DU Jialu, HUO Xiang. Condition optimization of MCE adsorption-ultrafiltration for enrichment and concentration of viruses in purified water: an experimental study[J]. Chinese Journal of Public Health, 2023, 39(12): 1625-1629. DOI: 10.11847/zgggws1142700

纯净水中病毒富集和浓缩方法优化及筛选

Condition optimization of MCE adsorption-ultrafiltration for enrichment and concentration of viruses in purified water: an experimental study

  • 摘要:
    目的 使用膜吸附(混合纤维素酯膜,MCE) – 超滤法对纯净水中的病毒进行富集浓缩,通过优化其富集试验条件,研究不同试验条件下纯净水中病毒的富集和浓缩效率,筛选最优试验条件。
    方法 以噬菌体MS2为目标病毒,首先对膜吸附过程中4个影响因素进行多水平的排列组合试验,再使用筛选出的最优条件与超滤过程中2个影响因素进行组合筛选,使用实时荧光定量逆转录聚合酶链式反应(RT-qPCR)技术检测、计算噬菌体MS2的回收率,最后对试验数据进行统计学分析。
    结果 MCE-超滤法的最优富集条件为:阳离子浓度(0.025 mol/L)、MCE膜的孔径(0.22 μm)、洗脱液(1% TGBE)、洗脱方式(震荡洗脱)、超滤管截留分子量(30 kD)、离心力(3000 g)。优化后的MCE-超滤法对纯净水中的噬菌体MS2病毒回收率可达到81.20%(95%CI = 71.86%~90.54%)。
    结论 经优化后的MCE-超滤法对纯净水中的噬菌体MS2病毒有较高的回收率,可用于纯净水中病毒的富集浓缩。

     

    Abstract:
    Objective To optimize experimental conditions of the enrichment and concentration of viruses in purified water with mixed cellulose ester (MCE) membrane adsorption-ultrafiltration method.
    Methods Bacteriophage MS2 was used as the target virus. First, water sample cation concentration, MCE membrane pore size, type of eluent, and elution method were included in the orthogonal experiment on the MCE adsorption of bacteriophage MS2. Then, the optimized conditions were further screened by applying centrifugal force of 3 000 and 4 000 grams during the ultrafiltration process. Reverse transcription-fluorescence quantitative polymerase chain reaction (RT-qPCR) was used in the detection and the recovery rates of bacteriophage MS2 under various conditions were calculated and analyzed statistically.
    Results The optimal enrichment conditions for MCE-ultrafiltration method were as follows: water sample cation concentration of 0.025 mol/L, MCE membrane pore size of 0.22 μm), using 1% Tris-glycine-beef extract (TGBE) solution in elution, adopting vibration method in elution, use of ultrafiltration tubes retaining organics with the molecular weight of 30 kD in the ultrafiltration, and centrifugal force of 3 000 grams. A recovery rate of 81.20% (95% confidence interval: 71.86% – 90.54%) for bacteriophage MS2 viruses in purified water samples was achieved under the above conditions in the experiment.
    Conclusion The optimized membrane adsorption MCE-ultrafiltration method could enrich bacteriophage MS2 viruses in purified water samples at a high recovery rate and be used in the enrichment and concentration of viruses in purified water.

     

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