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1.
Simian rotavirus SA-11 was concentrated from tap water by adsorption to and elution from microporous filters, followed by organic flocculation. Two types of filters were compared for their ability to concentrate the virus. Both Zeta Plus 60S and Cox AA type M-780 filters were efficient for virus adsorption, but the efficiency of virus elution was higher with Zeta Plus than with Cox filters. Optimum conditions for virus recovery from Zeta Plus filters included an input water pH of 6.5 to 7.5 and the use of 3% beef extract (pH 9.0) for elution. Under these conditions, an average of 62 to 100% of the virus was recovered in the concentrate. Organic flocculation was used as a second-step concentration method, with average recoveries of 47 to 69%. When the two methods were used to concentrate small numbers (7 to 75 PFU/liter) of input rotavirus, an average of 75 ± 40% recovery was achieved. With large volumes of input water, however, recovery was reduced to 16 ± 7%.  相似文献   

2.
A virus concentration method using a cation-coated filter was developed for large-volume freshwater applications. Poliovirus type 1 (LSc 2ab Sabin strain) inoculated into 40 ml of MilliQ (ultrapure) water was adsorbed effectively to a negatively charged filter (Millipore HA, 0.45-μm pore size) coated with aluminum ions, 99% (range, 81 to 114%) of which were recovered by elution with 1.0 mM NaOH (pH 10.8) following an acid rinse with 0.5 mM H2SO4 (pH 3.0). More than 80% poliovirus recovery yields were obtained from 500-ml, 1,000-ml, and 10-liter MilliQ water samples and from tap water samples. This method, followed by TaqMan PCR detection, was applied to determine the presence of noroviruses in tap water in Tokyo, Japan. In a 14-month survey, 4 (4.1%) and 7 (7.1%) of 98 tap water samples (100 to 532 liters) contained a detectable amount of noroviruses of genotype 1 and genotype 2, respectively. This method was proved to be useful for surveying the occurrence of enteric viruses, including noroviruses, in large volumes of freshwater.  相似文献   

3.
水体病毒钙离子絮凝浓缩新方法研究   总被引:2,自引:0,他引:2  
研究建立了一种从水体中浓缩病毒的新方法,即钙离子絮凝-柠檬酸缓冲液洗溶法,该方法的要点是先用一定量的钙离子溶液和钙离子絮凝剂絮凝水体中的病毒,再用pH5.0的0.3mol/L的柠檬酸缓冲液洗溶,然后再进一步超滤浓缩。此法可方便地将水体中的病毒浓缩10000倍以上。应用该法分别对人工播种于饮用水中的f2噬菌体和脊髓灰质炎疫苗病毒(PV1)进行了浓缩,结果发现f2噬菌体的平均回收率达96%,而PV1的回收率为100%,均显著高于阳电膜过滤法(P<0.05)。该方法快速、简便、有效。  相似文献   

4.
病毒浓缩条件的优化是水环境病毒污染监测及灭活去除效率评价的基础,本文开发了在待浓缩水样中预先加入钠化蒙脱石吸附病毒以增加其沉降性能,并在优化絮凝条件下用聚合氯化铝絮凝沉淀蒙脱石钠的水体病毒浓缩方法。该方法对人为污染的脊髓灰质炎病毒(Poliovirus 1,PV1)、烟草花叶病毒(Tobacco mosaic virus,TMV)、大肠杆菌噬菌体(Phage of Ecoli,E.cp)在闽汀水、生活污水、自来水中分别有高于84.3%的浓缩回收率,说明该浓缩方法具有较广泛的适用性和应用前景,可为水体病毒污染监测及灭活去除评价提供一个简便、回收率高、成本低的浓缩方法。  相似文献   

5.
水体病毒浓缩条件的优化   总被引:5,自引:0,他引:5  
病毒浓缩条件的优化是水环境病毒污染监测及灭活去除效率评价的基础,本文开发了在待浓缩水样中预先加入钠化蒙脱石吸附病毒以增加其沉降性能,并在优化絮凝条件下用聚合氯化铝絮凝沉淀蒙脱石钠的水体病毒浓缩方法.该方法对人为污染的脊髓灰质炎病毒(Poliovirus 1, PV1)、烟草花叶病毒(Tobacco mosaic virus, TMV)、大肠杆菌噬菌体(Phage of Ecoli, E.cp)在闽江水、生活污水、自来水中分别有高于84.3%的浓缩回收率,说明该浓缩方法具有较广泛的适用性和应用前景,可为水体病毒污染监测及灭活去除评价提供一个简便、回收率高、成本低的浓缩方法.  相似文献   

6.
水体中病毒浓缩方法及其条件优化   总被引:3,自引:1,他引:2  
本研究探讨了在自来水和污水两种不同的水体环境中, 三氯化铝沉淀法和正电荷滤膜法浓缩回收病毒的效率, 并比较应用不同的浓缩条件、洗脱物质时的病毒回收率, 从而建立有效的环境样本中病毒的浓缩方法。结果表明, 三氯化铝沉淀法在两种水体中的回收率均较高, 最高回收率分别达到96.0%和92.0%, 但正电荷滤膜法在两种水体中的回收率差别较大。在自来水中, 正电荷滤膜法的最高回收率为93.9%, 在污水中的最高回收率仅为69.9%, 这说明正电荷滤膜法适用于病毒含量较高且悬浮物等杂质较少的样本。在应用于自来水样时, 两种方法均可起到有效的病毒浓缩作用, 但在悬浮物等杂质较多的污水中, 三氯化铝法具有较好的回收效率。  相似文献   

7.
自来水中人肠道病毒的存在已引起人们极大的关切和忧虑。本文报道了武汉东湖水和以东湖为水源的自来水中病毒和指示细菌的存在水平。水源水经过预加氯消毒、絮凝沉淀、砂滤和最后加氯消毒处理而成的自来水中细菌总数检测范围是41—500/升,总大肠菌是2—13/升、粪大肠菌为0—4/升、大肠菌噬菌体是0—13.6PFU/升,平均2.48PFU/升,肠道病毒为0—78PFU/升,平均为6.7PFU/升。水源水经制水工艺处理去除指示细菌、大肠菌噬菌体和肠道病毒的效率分别为97.95—99.99%,90.63%和53.18%。这种结果说明自来水制水工艺能有效地降低指示细菌,大肠菌噬菌体,而去除肠道病毒效率较低,揭示肠道病毒对环境压专的耐受性明显地比指示细菌强。  相似文献   

8.
Trypanosoma cruzi, a blood-borne parasite, is the etiological agent of Chagas disease. T. cruzi trypomastigotes, the infectious life cycle stage, can be detected in blood of infected individuals using PCR-based methods. However, soon after a natural infection, or during the chronic phase of Chagas disease, the number of parasites in blood may be very low and thus difficult to detect by PCR. To facilitate PCR-based detection methods, a parasite concentration approach was explored. A whole cell SELEX strategy was utilized to develop serum stable RNA aptamers that bind to live T. cruzi trypomastigotes. These aptamers bound to the parasite with high affinities (8-25 nM range). The highest affinity aptamer, Apt68, also demonstrated high specificity as it did not interact with the insect stage epimastigotes of T. cruzi nor with other related trypanosomatid parasites, L. donovani and T. brucei, suggesting that the target of Apt68 was expressed only on T. cruzi trypomastigotes. Biotinylated Apt68, immobilized on a solid phase, was able to capture live parasites. These captured parasites were visible microscopically, as large motile aggregates, formed when the aptamer coated paramagnetic beads bound to the surface of the trypomastigotes. Additionally, Apt68 was also able to capture and aggregate trypomastigotes from several isolates of the two major genotypes of the parasite. Using a magnet, these parasite-bead aggregates could be purified from parasite-spiked whole blood samples, even at concentrations as low as 5 parasites in 15 ml of whole blood, as detected by a real-time PCR assay. Our results show that aptamers can be used as pathogen specific ligands to capture and facilitate PCR-based detection of T. cruzi in blood.  相似文献   

9.
A method for recovering enteroviruses, adenovirus, and reovirus from water with lettuce extract is described. Lettuce extract at pH 8.5 was added to the sample and the pH was reduced stepwise with hydrochloric acid to 4.0 to 4.5. The flocculent lettuce-extract particles, and adsorbed virus, were readily removed from solution by low-speed centrifugation. Electron microscopy suggests that, under conditions suitable for adsorption, virus particles are coated with the lettuce-extract colloid.  相似文献   

10.
11.
The bandgap engineering of semiconductors, in particular low‐cost organic/polymeric photocatalysts could directly influence their behavior in visible photon harvesting. However, an effective and rational pathway to stepwise change of the bandgap of an organic/polymeric photocatalyst is still very challenging. An efficient strategy is demonstrated to tailor the bandgap from 2.7 eV to 1.9 eV of organic photocatalysts by carefully manipulating the linker/terminal atoms in the chains via innovatively designed polymerization. These polymers work in a stable and efficient manner for both H2 and O2 evolution at ambient conditions (420 nm < λ < 710 nm), exhibiting up to 18 times higher hydrogen evolution rate (HER) than a reference photocatalyst g‐C3N4 and leading to high apparent quantum yields (AQYs) of 8.6%/2.5% at 420/500 nm, respectively. For the oxygen evolution rate (OER), the optimal polymer shows 19 times higher activity compared to g‐C3N4 with excellent AQYs of 4.3%/1.0% at 420/500 nm. Both theoretical modeling and spectroscopic results indicate that such remarkable enhancement is due to the increased light harvesting and improved charge separation. This strategy thus paves a novel avenue to fabricate highly efficient organic/polymeric photocatalysts with precisely tunable operation windows and enhanced charge separation.  相似文献   

12.
Radiometric Method for the Detection of Coliform Organisms in Water   总被引:7,自引:7,他引:0       下载免费PDF全文
A new radiometric method for the detection of coliform bacteria in water has been described. The method is based on the release of 14CO2 from [14C]lactose by bacteria suspended in growth medium and incubated at 37 C. The evolved 14CO2 is trapped by hyamine hydroxide and counted in a liquid scintillation spectrometer. The method permits the detection of 1 to 10 organisms within 6 h of incubation. Coliform bacteria suspended in water for several days recover from starvation and may be quantitated by the proposed method. Bacteria from water samples may also be concentrated by filtration through membrane filters and detected by the radiometric assay.  相似文献   

13.
Determination of biodegradable dissolved organic carbon in waters is of particular importance for the water treatment industry. A simple method for determining biodegradable dissolved organic carbon which is applicable to surface and drinking water is proposed. It consists of sterilizing the water sample, inoculating it with autochthonous bacteria, and measuring the decrease in dissolved organic carbon concentration due to the carbon oxidization by bacteria. The detailed experimental procedure is discussed, and validation of the method is presented. The method has been used for studying river waters and for drinking water treatment plant design.  相似文献   

14.
15.
A total of 48 water samples were collected from six water treatment plants in Wuhan and analyzed by real-time PCR assay for viral identification of enterovirus (EV), rotavirus group A (RVA), human adenovirus (HAdV) as well as human adenovirus subgroup F (HAdVF) during the period from December 2010 to October 2011. HAdV, HAdVF, and RVA were all positively detected in the samples of source water and treated drinking water. EV could be found in 46 % (11/24) of all the source water samples, but only 21 % (5/24) positive in treated drinking water. The concentrations of these three kinds of enteric viruses detected were as follows: HAdV > RVA > EV. The highest removal rate was EV (97 %), followed by RVA (82 %), HAdV (73 %), and HAdVF (72 %). HAdV and RVA have been abundant in untreated river water and finished water after conventional processes of water treatment plants, while bacterial indicators could not be detected in tap water, which met the standard of China for drinking water bacterial quality. Some factors that could affect the accuracy of qPCR detection are also discussed in this study.  相似文献   

16.
Development of a Rapid Assimilable Organic Carbon Method for Water   总被引:22,自引:7,他引:22       下载免费PDF全文
A rapid method for measurement of assimilable organic carbon (AOC) is proposed. The time needed to perform the assay is reduced by increasing the incubation temperature and increasing the inoculum density. The ATP luciferin-luciferase method quickly enumerates the test organisms without the need for plate count media or dilution bottles. There was no significant difference between AOC values determined with strain P17 for the ATP and plate count procedures. For strain NOX, the plate count procedure underestimated bacterial levels in some samples. Comparison of AOC values obtained by the Belleville laboratory (by the ATP technique) and the Stroud Water Research Center (by plate counts) showed that values were significantly correlated and not significantly different. The study concludes that the rapid AOC method can quickly determine the bacterial growth potential of water within 2 to 4 days.  相似文献   

17.
近年来,研究表明氢分子具有广泛的生物学效应,饮用富氢水(hydrogen-rich water,HRW)是其主要的摄取方法,但目前对于水相中氢气浓度检测方法的研究甚少。为了建立适用于测定水相中氢气浓度的检测方法,利用纯水氢气发生器制备饱和富氢水。然后,利用氢气微电极直接测定水相中的氢气浓度,结果表明,在不同氢气浓度范围内(0~1.620 0 mg·L-1和0~0.202 5 mg·L-1),氢气浓度与微电极信号值均呈现良好的线性关系,方法检出限(method detection limit,MDL)为4.3×10-3 mg·L-1。同时,采用顶空方式将水相中的氢气转移到气相中,通过气相色谱法测定氢气的浓度,结果表明,在不同氢气浓度范围内(0~1.620 0 mg·L-1和0~0.202 5 mg·L-1),氢气浓度与气相色谱峰面积均具有良好的线性关系,MDL为8.7×10-4 mg·L-1。研究结果表明,氢微电极法和气相色谱法均可用于水相中氢气浓度的精确定量,即成功建立了采用氢气微电极及顶空气相色谱测定水相中氢气含量的检测方法。  相似文献   

18.
The ability of the Canalco Model CF-3 electro-osmosis (EO) apparatus to concentrate viruses from artificially seeded distilled water was improved. Modification of the physical arrangement of the equipment allowed for a 10–25 fold increase in concentration efficiency and a concomitant decrease in the process time. The major improvements involved modifications of the cell arrangement (which increased the membrane transport area), a change in the salt replenishing solution and the use of different membranes of higher flux. Viruses concentrated by E0 from seeded tap water resulted in lower recoveries when compared to distilled water. The lower yields were probably due to instability or aggregation of the agents in the menstruum and not directly related to the physical apparatus. Under the conditions used, one could detect virus at levels as low as 0.01 plaque forming units (PFU) per ml of initial input. The efficacy of a modification of the Canalco forced-flow electrophoretic (FFE) system was also evaluated. The maximum potential was applied with a constant value for pump rates. A 6-fold concentration of virus and a 12-fold decrease in water volume was obtained.  相似文献   

19.
The protozoan parasite Cryptosporidium parvum is known to occur widely in both source and drinking water and has caused waterborne outbreaks of gastroenteritis. To improve monitoring, the U.S. Environmental Protection Agency developed method 1622 for isolation and detection of Cryptosporidium oocysts in water. Method 1622 is performance based and involves filtration, concentration, immunomagnetic separation, fluorescent-antibody staining and 4′,6-diamidino-2-phenylindole (DAPI) counterstaining, and microscopic evaluation. The capsule filter system currently recommended for method 1622 was compared to a hollow-fiber ultrafilter system for primary concentration of C. parvum oocysts in seeded reagent water and untreated surface waters. Samples were otherwise processed according to method 1622. Rates of C. parvum oocyst recovery from seeded 10-liter volumes of reagent water in precision and recovery experiments with filter pairs were 42% (standard deviation [SD], 24%) and 46% (SD, 18%) for hollow-fiber ultrafilters and capsule filters, respectively. Mean oocyst recovery rates in experiments testing both filters on seeded surface water samples were 42% (SD, 27%) and 15% (SD, 12%) for hollow-fiber ultrafilters and capsule filters, respectively. Although C. parvum oocysts were recovered from surface waters by using the approved filter of method 1622, the recovery rates were significantly lower and more variable than those from reagent grade water. In contrast, the disposable hollow-fiber ultrafilter system was compatible with subsequent method 1622 processing steps, and it recovered C. parvum oocysts from seeded surface waters with significantly greater efficiency and reliability than the filter suggested for use in the version of method 1622 tested.  相似文献   

20.
During a 3‐year study, grapevines from 23 vineyards in Poland were surveyed for virus diseases and tested to determine the prevalence of the most economically important viruses by RT‐PCR. The rate of positive samples was 2.2% for grapevine leafroll‐associated virus 1 (GLRaV‐1), 1.9% for grapevine leafroll‐associated virus 2 (GLRaV‐2), 1.5% grapevine leafroll‐associated virus 3 (GLRaV‐3), 1.9% for grapevine virus A (GVA), 0.2% for grapevine virus B (GVB), 0.2% for grapevine virus E (GVE), 0.65% for grapevine fanleaf virus (GFLV), 20.4% for grapevine fleck virus (GFkV) and 71.9% for grapevine rupestris stem pitting‐associated virus (GRSPaV). These viruses were found to occur as single or mixed infections of different combinations in individual grapevines. The overall viral infection rate in the surveyed grapevines was 82.6%. GRSPaV is the most widely distributed virus of all the viruses currently detected in the region. DNA sequencing confirmed the identification of the viruses in selected samples, and analysis indicated that the Polish isolates shared a close molecular identity with the corresponding isolates in GenBank. To our knowledge, this is the first detection of GLRaV‐1, ‐2, ‐3, GVA, GVB, GVE, GFLV, GFkV and GRSPaV in Poland.  相似文献   

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