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Updated: May 6, 2026

Cell-Free DNA Integrity Analysis in Urine Samples
Published on: January 5, 2017
Negative-control-anchored urinary microbiome profiling with absolute 16S quantification: a pilot study in newly
Tomaž Accetto1, Katja Strašek Smrdel2, Milena Taskovska3,4
1Department of Microbiology, Biotechnical Faculty, University of Ljubljana, SI-1000 Ljubljana, Slovenia.
Abstract:
Recent studies utilizing 16S rRNA amplicon sequencing have challenged the notion of urine sterility, yet urine is a low-biomass specimen in which apparent community profiles can be strongly influenced by background signal from reagents and processing. To address this interpretability gap, we integrate culture-independent absolute 16S rRNA gene quantification with urinary 16S amplicon sequencing in a negative-control-anchored workflow. Bacterial load provides a biomass-aware quality control gate that defines interpretable low-biomass thresholds and objective exclusion criteria. As a pilot application, we compared midstream urine collected prior to instrumentation from healthy volunteers and newly diagnosed bladder cancer (BC) patients, quality filtering retained 29 controls and 5 BC cases. Samples > 106 copies/ml typically produced > 10 000 reads; near 105 copies/ml read counts dropped sharply yet remained distinguishable from background. Thirteen negative controls (V3-V4 PCR and stabilization buffer; median 90, mean 124 reads) supported excluding samples with < 1000 reads. Median bacterial load was lower in BC than in controls (7.0 × 103 vs 1.07 × 106 copies/ml), although not significant in this underpowered cohort (P = 0.07). This cohort-size-independent framework enables load-based triage for sequencing, reduces background-driven over-interpretation in low-biomass urine datasets, and supports modeling bacterial load as a covariate or stratifier in future studies of the bladder cancer microbiome.
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