| Literature DB >> 28377928 |
Lucrecia Acosta Soto1, Ana Belén Santísima-Trinidad2, Fernando Jorge Bornay-Llinares3, Marcos Martín González4, José Antonio Pascual Valero2, Margarita Ros Muñoz2.
Abstract
The reuse of reclaimed water from wastewater depuration is a widespread and necessary practice in many areas around the world and must be accompanied by adequate and continuous quality control. Ascaris lumbricoides is one of the soil-transmitted helminths (STH) with risk for humans due to its high infectivity and an important determinant of transmission is the inadequacy of water supplies and sanitation. The World Health Organization (WHO) recommends a limit equal to or lower than one parasitic helminth egg per liter, to reuse reclaimed water for unrestricted irrigation. We present two new protocols of DNA extraction from large volumes of reclaimed water. Quantitative PCR (qPCR) and digital PCR (dPCR) were able to detect low amounts of A. lumbricoides eggs. By using the first extraction protocol, which processes 500 mL of reclaimed water, qPCR can detect DNA concentrations as low as one A. lumbricoides egg equivalent, while dPCR can detect DNA concentrations as low as five A. lumbricoides egg equivalents. By using the second protocol, which processes 10 L of reclaimed water, qPCR was able to detect DNA concentrations equivalent to 20 A. lumbricoides eggs. This fact indicated the importance of developing new methodologies to detect helminth eggs with higher sensitivity and precision avoiding possible human infection risks.Entities:
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Year: 2017 PMID: 28377928 PMCID: PMC5362715 DOI: 10.1155/2017/7515409
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.411
Figure 1Linear regression between copies ITS-1 of A. lumbricoides per microliter of bidistilled water and numbers of A. lumbricoides eggs measured by qPCR. Each value was obtained from five replicates.
Detection of A. lumbricoides by qPCR from reclaimed water seeded with different amounts of A. lumbriocoides eggs.
| Protocol 1 (for 500 mL) | Protocol 2 (for 10 L) | |||||
|---|---|---|---|---|---|---|
| Number of eggs | Mean | Result | Number of eggs | Mean | Positive extractions | Result |
| 1 | 3.41 ± 0.16 | Presence | 10 | — | —/6 | Absence |
| 1 | 2.54 ± 0.32 | Presence | 10 | 46.57 ± 11.03 | 2/6 | Presence |
| 1 | 4.68 ± 3.80 | Presence | 10 | — | —/6 | Absence |
| 1 | 11.6 ± 2.02 | Presence | 10 | 45.16 ± 11.40 | 2/6 | Presence |
| 1 | 8.41 ± 1.93 | Presence | 10 | 48.68 ± 4.76 | 1/6 | Presence |
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| Average ± SD | 6.14 ± 3.80 | 46.80 ± 1.78 | ||||
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| 5 | 42.92 ± 11.27 | Presence | 20 | 61.58 ± 9.10 | 4/6 | Presence |
| 5 | 59.31 ± 13.35 | Presence | 20 | 37.96 ± 9.02 | 2/6 | Presence |
| 5 | 54.18 ± 12.94 | Presence | 20 | 42.83 ± 3.69 | 2/6 | Presence |
| 5 | 51.51 ± 4.04 | Presence | 20 | 47.67 ± 14.40 | 1/6 | Presence |
| 5 | 64.99 ± 12.8 | Presence | 20 | 47.77 ± 4.10 | 3/6 | Presence |
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| Average ± SD | 54.58 ± 8.31 | 47.56 ± 8.82 | ||||
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| 10 | 89.59 ± 14.4 | Presence | 50 | 123.64 ± 14.60 | 6/6 | Presence |
| 10 | 107.86 ± 4.93 | Presence | 50 | 51.76 ± 2.07 | 2/6 | Presence |
| 10 | 53.83 ± 11.04 | Presence | 50 | 39.91 ± 5.20 | 1/6 | Presence |
| 10 | 102.31 ± 11.62 | Presence | 50 | 37.64 ± 11.57 | 3/6 | Presence |
| 10 | 62.53 ± 6.84 | Presence | 50 | 56.57 ± 18.36 | 5/6 | Presence |
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| Average ± SD | 83.22 ± 24.00 | 61.91 ± 35.41 | ||||
The averages are for three aliquots in 500 mL and for three aliquots of each of six different extractions per sample in 10 L. Positive extractions: number of positive extractions in each batch. Only from the “positive” aliquots were included in the calculation. Presence: Ct < 37. Absence: Ct > 37. Protocol 2, below 10-egg amplification was not observed.
Figure 2Linear regression between copies ITS-1 of A. lumbricoides per microliter of bidistilled water and numbers of A. lumbricoides eggs measured by dPCR. Each value was obtained from five replicates.
Detection of A. lumbricoides by dPCR from reclaimed water seeded with different amounts of A. lumbriocoides eggs.
| Protocol 1 (for 500 mL) | Protocol 2 (for 10 L) | ||||
|---|---|---|---|---|---|
| Number of eggs | Mean | Result | Number of eggs | Mean | Result |
| 1 | 4.35 | Presence | 10 | — | NA |
| 1 | — | Absence | 10 | — | NA |
| 1 | — | Absence | 10 | — | NA |
| 1 | 1.12 | Presence | 10 | — | NA |
| 1 | 7.14 | Presence | 10 | — | NA |
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| Average ± SD | 4.2 ± 3.01 | ||||
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| 5 | 13.25 | Presence | 20 | — | NA |
| 5 | 27.22 | Presence | 20 | — | NA |
| 5 | 23.77 | Presence | 20 | — | NA |
| 5 | 41.37 | Presence | 20 | — | NA |
| 5 | 7.05 | Presence | 20 | — | NA |
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| Average ± SD | 22.53 ± 13.27 | ||||
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| 10 | 16.36 | Presence | 50 | — | NA |
| 10 | 50.00 | Presence | 50 | — | NA |
| 10 | 23.30 | Presence | 50 | — | NA |
| 10 | 39.37 | Presence | 50 | — | NA |
| 10 | 28.74 | Presence | 50 | — | NA |
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| Average ± SD | 31.55 ± 13.31 | ||||
Presence: more than one copy μL−1. Absence: not detected; NA: no amplification.
Number of eggs provided by different laboratories using ENAC accredited method (modified Bailenger) from A. lumbricoides eggs seeded in 10 L of reclaimed water.
| Code number | Number of eggs seeded in 10 L of reclaimed water | Provided result by the lab |
|---|---|---|
| Sample 1 | 10 | <1 egg |
| Sample 2 | 50 | <1 egg |
| Sample 3 | 1,000 | <1 egg |
| Sample 4 | 1,000 | <1 egg |
| Sample 5 | 1,000 | 28 eggs |
| Sample 6 | 1,000 | 7 eggs |