ArticleAnalytical and bioanalytical chemistry2024
Establishing performance metrics for quantitative non-targeted analysis: a demonstration using per- and polyfluoroalkyl substances.
Article in Analytical and bioanalytical chemistry, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 16 papers.
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Who cites it
16 citing papers in PubMed.
- Occurrence and Treatment Technologies of Per- and Polyfluoroalkyl Substances in Electroplating Wastewater: A Review.Toxics · 2026Review
- Case study application of high-throughput new approach methodologies for exposure to the interpretation of matched biomarker and indoor media measurements.Journal of exposure science & environmental epidemiology · 2026Article
- AI redefine untargeted metabolomics: estimating chemical amounts for a Human Exposome Project.Frontiers in public health · 2026Review
- Review
- Prioritizing Chemical Candidates from Non-targeted Analysis Using Metadata, Spectral Similarity, and Hazard Scoring within INTERPRET NTA.Analytical chemistry · 2025Article
- Examining the effects of analytical replication on data quality in a non-targeted analysis experiment.Analytical and bioanalytical chemistry · 2025Article
- Examining structure-based surrogate selection for quantitative non-targeted analysis.Analytical and bioanalytical chemistry · 2025Article
- The ENTAiLS Toolkit: an integrated workflow to perform non-targeted analysis of per- and polyfluoroalkyl substances.Analytical and bioanalytical chemistry · 2025Article
- Categorizing Concentration Confidence: A Framework for Reporting Concentration Measures from Mass Spectrometry-Based Assays.Environmental health perspectives · 2025Article
- Implementation of Matrix-Matched Semiquantification of PFAS in AFFF-Contaminated Soil.Environmental science & technology · 2025Article
- Automated QA/QC reporting for non-targeted analysis: a demonstration of "INTERPRET NTA" with de facto water reuse data.Analytical and bioanalytical chemistry · 2025Article
- Examining environmental matrix effects on quantitative non-targeted analysis estimates of per- and polyfluoroalkyl substances.Analytical and bioanalytical chemistry · 2025Article
- Communicating with Stakeholders to Identify High-Impact Research Directions for Non-Targeted Analysis.Analytical chemistry · 2025Review
- Emerging Per- and Polyfluoroalkyl Substances in Tap Water from the American Healthy Homes Survey II.Environmental science & technology · 2025Article
- Comprehensive characterization of European house dust contaminants: Concentrations and profiles, geographical variability, and implications for chemical regulation and health risk.The Science of the total environment · 2024Article
- Quantitative assessment of poly- and perfluoroalkyl substances (PFASs) in aqueous film forming foam (AFFF)-impacted soils: a comparison of analytical protocols.Analytical and bioanalytical chemistry · 2024Article
Corrections and comments
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Authors and funding
4 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Non-targeted analysis (NTA) is an increasingly popular technique for characterizing undefined chemical analytes. Generating quantitative NTA (qNTA) concentration estimates requires the use of training data from calibration "surrogates," which can yield diminished predictive performance relative to targeted analysis. To evaluate performance differences between targeted and qNTA approaches, we defined new metrics that convey predictive accuracy, uncertainty (using 95% inverse confidence intervals), and reliability (the extent to which confidence intervals contain true values). We calculated and examined these newly defined metrics across five quantitative approaches applied to a mixture of 29 per- and polyfluoroalkyl substances (PFAS). The quantitative approaches spanned a traditional targeted design using chemical-specific calibration curves to a generalizable qNTA design using bootstrap-sampled calibration values from "global" chemical surrogates. As expected, the targeted approaches performed best, with major benefits realized from matched calibration curves and internal standard correction. In comparison to the benchmark targeted approach, the most generalizable qNTA approach (using "global" surrogates) showed a decrease in accuracy by a factor of ~4, an increase in uncertainty by a factor of ~1000, and a decrease in reliability by ~5%, on average. Using "expert-selected" surrogates (n = 3) instead of "global" surrogates (n = 25) for qNTA yielded improvements in predictive accuracy (by ~1.5×) and uncertainty (by ~70×) but at the cost of further-reduced reliability (by ~5%). Overall, our results illustrate the utility of qNTA approaches for a subclass of emerging contaminants and present a framework on which to develop new approaches for more complex use cases.
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