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Last, A. R.

Publications and source records attributed to Last, A. R..

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Evaluation of a Chlamydia trachomatis-specific, commercial, real-time PCR for use with ocular swabs

BackgroundChlamydia trachomatis (Ct) is the most common bacterial sexually transmitted infection and the causative organism of trachoma, the leading infectious cause of blindness worldwide. Trachoma is diagnosed clinically by observation of conjunctival inflammation and/or scarring, however, there is evidence that monitoring Ct infection may be required for elimination programs. There are many commercial and in-house nucleic acid amplification tests for the detection of Ct DNA, but the vast majority have not been validated for use with ocular swabs. This study evaluated a commercial assay, the Fast-Track Vaginal swab kit, using conjunctival samples from two trachoma-endemic areas. An objective, biostatistical-based method for binary classification of continuous PCR data was also developed, to limit potential user-bias in diagnostic settings.\n\nResultsThe Fast-Track Vaginal swab assay was run on 210 ocular swab samples from Guinea-Bissau and Tanzania. Fit of individual amplification curves to exponential or sigmoid models, derivative and second derivative of the curves and final fluorescence value were examined for utility in thresholding for determining positivity. The results from the Fast-Track Vaginal swab assay were evaluated against a commercial test (Amplicor CT/NG) as well as a non-commercial test (in-house ddPCR) both of whose performance has previously been evaluated.\n\nSignificant evidence of exponential amplification (R2 > 0.99) and final fluorescence > 0.15 were combined for thresholding. This objective approach identified a population of positive samples, however there were a subset of samples that amplified towards the end of the cycling protocol (at or later than 35 cycles), which were less clearly defined. The Fast-Track Vaginal swab assay showed good sensitivity against the commercial (95.71) and non-commercial (97.18) tests. Specificity was lower against both tests (90.00 and 96.55 respectively).\n\nConclusionsThis study defined a simple, automated protocol for binary classification of continuous, real time qPCR data, for use in an end-point diagnostic test. This method identified a population of positive samples, however, as with manual thresholding, a subset of samples that amplified towards the end of the thermal cycling program were less easily classified. When used with ocular swabs, the Fast-Track Vaginal swab assay had good sensitivity but for Ct detection lower specificity than the commercial and non-commercial assays it was evaluated against, possibly leading to false positives.

molecular biology

Population-based analysis of ocular Chlamydia trachomatis in trachoma-endemic West African communities identifies genomic markers of disease severity

Chlamydia trachomatis (Ct) is the most common infectious cause of blindness and bacterial sexually transmitted infection worldwide. Using Ct whole genome sequences obtained directly from conjunctival swabs, we studied Ct genomic diversity and associations between Ct genetic polymorphisms with ocular localization and disease severity in a treatment-naive trachoma-endemic population in Guinea Bissau, West Africa. All sequences fall within the T2 ocular clade phylogenetically. This is consistent with the presence of the characteristic deletion in trpA resulting in a truncated non-functional protein and the ocular tyrosine repeat regions present in tarP associated with ocular tissue localization. We have identified twenty-one Ct non-synonymous single nucleotide polymorphisms (SNPs) associated with ocular localization, including SNPs within pmpD (OR=4.07, p*=0.001) and tarP (OR=0.34, p*=0.009). Eight SNPs associated with disease severity were found in yjfH (rlmB) (OR=0.13, p*=0.037), CTA0273 (OR=0.12, p*=0.027), trmD (OR=0.12, p*=0.032), CTA0744 (OR=0.12, p*=0.041), glgA (OR=0.10, p*=0.026), alaS (OR=0.10, p*=0.032), pmpE (OR=0.08, p*=0.001) and the intergenic region CTA0744-CTA0745 (OR=0.13, p*=0.043). This study demonstrates the extent of genomic diversity within a naturally circulating population of ocular Ct, and the first to describe novel genomic associations with disease severity. These findings direct investigation of host-pathogen interactions that may be important in ocular Ct pathogenesis and disease transmission.

genomics