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Published on: October 31, 2010
Strengthening STD Screening Programs: Comprehensive Evaluation of High-Throughput Immunoassays for HIV and Syphilis
Ahmed Ismail1, Shaden Abunasser2,3, Israa M Salameh3
1Laboratory Section, Medical Commission Department, Ministry of Public Health, Doha 42, Qatar.
Insights
Fourth-generation immunoassays for HIV and syphilis screening were evaluated. Automated chemiluminescent immunoassay (CLIA) platforms showed high agreement within diagnostic algorithms, with MAGLUMI® HIV Ab/Ag Combi demonstrating fewer false-reactive results.
Area of Science:
- Clinical diagnostics
- Infectious disease screening
- Immunochemistry
Background:
- Fourth-generation immunoassays are crucial for HIV and syphilis screening in high-throughput laboratories.
- False-reactive results can increase confirmatory testing burden and operational costs.
- Evaluating automated chemiluminescent immunoassay (CLIA) performance within routine algorithms is essential.
Purpose of the Study:
- To comparatively evaluate the performance of automated CLIA platforms for HIV and syphilis screening.
- To assess assay concordance within established diagnostic algorithms, including antibody differentiation and PCR.
- To identify potential differences in assay performance, particularly regarding discordant results.
Main Methods:
- Evaluated MAGLUMI® HIV Ab/Ag Combi, VITROS® ECiQ HIV Combo, MAGLUMI® Syphilis, and ARCHITECT® Syphilis TP assays.
- Utilized archived serum samples (240 for HIV, 180 for syphilis).
- Employed agreement-based measures (sensitivity, specificity, OPA, Cohen's kappa) and comparator-based estimates within routine algorithms.
Main Results:
- MAGLUMI® HIV Ab/Ag Combi showed complete agreement with INNO-LIA® HIV I/II Score (κ=1.00) and high agreement with PCR (κ=0.90).
- VITROS® ECiQ HIV Combo demonstrated high agreement with INNO-LIA® (κ=0.916) and substantial agreement with PCR (κ=0.715).
- Both MAGLUMI® Syphilis and ARCHITECT® Syphilis TP showed complete agreement (κ=1.00) with INNO-LIA® Syphilis Score; RPR assay showed moderate agreement (κ=0.52).
Conclusions:
- Automated CLIA platforms exhibit high agreement within structured diagnostic algorithms for HIV and syphilis screening.
- MAGLUMI® HIV Ab/Ag Combi demonstrated fewer false-reactive results compared to ARCHITECT® and VITROS® in discordant HIV samples.
- These CLIA platforms can enhance laboratory workflow efficiency, but results should be interpreted within the context of comparator-based classification.
Abstract:
Fourth-generation immunoassays are widely used for HIV and syphilis screening; however, false-reactive results may increase confirmatory testing and operational burden in high-throughput laboratories. This study evaluated the comparative performance of automated chemiluminescent immunoassays (MAGLUMI® HIV Ab/Ag Combi (Snibe Diagnostics Co. Ltd., Shenzhen, China), VITROS® ECiQ HIV Combo (Ortho Clinical Diagnostics, Raritan, NJ, USA), MAGLUMI® Syphilis (Snibe Diagnostics Co. Ltd., Shenzhen, China), and ARCHITECT® Syphilis TP (Abbott Diagnostics, Abbott Park, IL, USA) within a routine diagnostic algorithm, incorporating antibody differentiation immunoassays (INNO-LIA® HIV I/II Score (Fujirebio Europe N.V., Ghent, Belgium) and HIV-1 RNA PCR where applicable. A total of 240 archived serum samples for HIV testing and 180 for syphilis testing were analyzed. Agreement-based performance measures including sensitivity, specificity, overall percent agreement (OPA), and Cohen's kappa (κ) were calculated as comparator-based estimates reflecting concordance within the routine diagnostic algorithm rather than absolute diagnostic accuracy against a universal reference standard. For comparisons with HIV-1 RNA PCR, positive and negative concordance rates are reported to reflect agreement between assays detecting different biological targets. Among samples with definitive (positive or negative) results, the MAGLUMI® HIV Ab/Ag Combi assay showed complete agreement with INNO-LIA® HIV I/II Score (κ = 1.00) and high agreement with PCR within the ARCHITECT® HIV Ag/Ab Combo-reactive subset (κ = 0.90). The VITROS® ECiQ HIV Combo assay demonstrated high agreement with INNO-LIA® HIV I/II Score (κ = 0.916) and substantial agreement with PCR (κ = 0.715), with a lower negative concordance rate with PCR observed in the ARCHITECT-reactive subset. A parallel five-modality analysis of 11 discordant samples applying the CDC 2014 algorithm demonstrated that all three immunoassay platforms successfully detected confirmed HIV-seropositive individuals with controlled viremia despite negative PCR, while MAGLUMI® HIV Ab/Ag Combi produced fewer false-reactive results than both ARCHITECT® and VITROS® in this discordant subset. Additionally, two cases showed INNO-LIA® indeterminate results with positive PCR, consistent with acute HIV infection during the early seroconversion stage; all three immunoassay platforms produced signals above the non-reactive threshold in both cases. For syphilis testing, both MAGLUMI® Syphilis and ARCHITECT® Syphilis TP assays showed complete agreement with INNO-LIA® Syphilis Score among samples with definitive results (κ = 1.00). In contrast, the RPR assay showed reduced positive predictive value (49.4%) and moderate agreement with INNO-LIA® Syphilis Score (κ = 0.52). Automated chemiluminescent immunoassay (CLIA) platforms demonstrated high agreement within a structured diagnostic algorithm in a high-throughput screening setting. Differences in assay performance were observed across platforms, particularly with respect to discordant results in the ARCHITECT-reactive PCR-evaluated subset for HIV and non-treponemal concordance for syphilis. These platforms may support more efficient laboratory workflows; however, findings should be interpreted within the context of comparator-based classification rather than absolute diagnostic accuracy.
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