| Literature DB >> 29435423 |
John B Kalule1, Karen H Keddy2, Anthony Smith2, Mark P Nicol1, Lourens Robberts1.
Abstract
INTRODUCTION: Shiga toxin-producing Escherichia coli (STEC) is an emerging infectious pathogen which could lead to haemolytic uremic syndrome. Even though previous studies have compared the performance of CHROMagarTMSTEC to real-time polymerase chain reaction (PCR) in Europe, no study has been done to assess its performance on African isolates.Entities:
Year: 2017 PMID: 29435423 PMCID: PMC5803521 DOI: 10.4102/ajlm.v6i1.609
Source DB: PubMed Journal: Afr J Lab Med ISSN: 2225-2002
FIGURE 1Summary of methods used in this study.
Primers and probes used for real-time polymerase chain reaction.
| Primers/probes | 5! | Sequence | 3! | Reference |
|---|---|---|---|---|
| CAAGAGCGATGTTACGGT | (16) | |||
| AATTCTTCCTACACGAACAGA | (16) | |||
| CTGGGGAAGGTTGAGTAGCG | Fluorescein | (16) | ||
| CAL Fluor 610 | CCTGCCTGACTATCATGGACA | 3′ phosphor | (16) | |
| GGGACCACATCGGTGT | (16) | |||
| CGGGCACTGATATATGTGTAA | (16) | |||
| CTGTGGATATACGAGGGCTTGATGTC | Fluorescein | (16) | ||
| CAL Fluor 610 | ATCAGGCGCGTTTTGACCATCT | 3′ phosphor | (16) |
Primers used for detection of virulence genes by conventional polymerase chain reaction.
| Genes | Primers | Primer sequence | Product size | |
|---|---|---|---|---|
| A | TCAATGCAGTTCCGTTATCAGTT | 482 bp | ||
| GTAAAGTCCGTTACCCCAACCTG | ||||
| GGAAGTCAAATTCATGGGGGTAT | 298 bp | |||
| GGAATCAGACGCAGACTGGTAGT | ||||
| CAGTTAATGTGGTGGCGAAGG | 348 bp | |||
| CACCAGACAATGTAACCGCTG | ||||
| ATCCTATTCCCGGGAGTTTACG | 584 bp | |||
| GCGTCATCGTATACACAGGAGC | ||||
| B | ATTTTTCTTTCTGTATTGTCTT | 190 bp | ||
| CACCCGGTACAAGCAGGATT | ||||
| GGCGACAGATTATACCGTGC | 440 bp | |||
| CGGTCTCTATATTCCCTGTT | ||||
| C | CTCGGCACGTTTTAATAGTCTGG | 933 bp | ||
| GTGGAGAGCTGAAGTTTCTCTGC | ||||
| pCVD432-F | CTGGCGAAAGACTGTATCAT | 630 bp | ||
| pCVD432-R | CAATGTATAGAAATCCGCTGTT | |||
| CAGGTCATCCGGTCAGTCGG | 212 bp | |||
| CAATGCCACGTACAACCGGC |
ST, heat-stable; LT, heat-labile.
FIGURE 2Polymerase chain reaction amplicons of stx1 and stx2 after cloning.
FIGURE 3Amplification curves for the validated duplex real-time polymerase chain reaction for detection of the stx gene
FIGURE 6Melting peaks for the detection of stxd using the duplex real-time polymerase chain reaction assay.
FIGURE 7Amplification curves and melting peaks obtained on screening tryptic soy broth using the in-house optimised real-time polymerase chain reaction assay. (A) Amplification curves. (B) Melting peaks for the duplex real-time polymerase chain reaction assay.
FIGURE 8Summary of isolate characterisation results.
Performance of CHROMagarTMSTEC compared with real-time polymerase chain reaction assay.
| In-house developed assay | ||||
|---|---|---|---|---|
| + | _ | Total | ||
| + | 5 | 48 | 53 | |
| _ | 9 | 164 | 173 | |
CHROMagarTMSTEC sensitivity = 5/14*100 = 33.3%
CHROMagarTMSTEC specificity = 164/212*100 = 77.4%
CHROMagarTMSTEC positive predictive value = 5/53*100 = 9.4%
CHROMagarTMSTEC negative predictive value = 164/173*100 = 95%