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Rapid and accurate diagnosis of bloodstream infections: A multiplex real-time PCR assay with selective microbial enrichment for direct whole-blood detection and positive blood culture confirmation

Journal
Journal of microbiology, immunology, and infection = Wei mian yu gan ran za zhi (Q1)
Published
18 September 2026
Study design
Prospective / inception cohort
Evidence level
Level 4, Very Low (CEBM 4)
Authors
Zhao Xiaoyi, Geng Mingjun, Chen Diandian, Yang Wenshuo, Peng Huiqiong, Li Ying, et al.
PMID
42763279
DOI
10.1016/j.jmii.2026.09.004

Why clinicians should know about it

  • Picked for Microbiology (medical) (paper of the day, 23 September 2026): Rapid PCR assay for bloodstream infection diagnosis

Abstract

BACKGROUND: Bloodstream infections (BSIs) remain a critical clinical challenge with high morbidity and mortality, yet conventional blood culture-based diagnostics delayed timely antimicrobial therapy due to long turnaround times. This study evaluated a rapid BSI diagnostic method combining selective microbial enrichment with multiplex real-time fluorescent polymerase chain reaction (PCR), with a focus on direct whole-blood detection as the primary innovation. METHODS: The enrichment-PCR assay targets 16 common BSI pathogens. Technical performance was confirmed using 479 Gram-stained positive blood culture bottles (May-October 2025, two centers), with conventional culture + MALDI-TOF MS as the reference standard. Direct whole-blood detection was then prospectively evaluated in 50 patients with suspected BSI, using a composite reference standard of blood culture and metagenomic next-generation sequencing (mNGS). Clinical impact was assessed by analyzing time savings and antimicrobial therapy adjustments. RESULTS: In positive blood culture bottles, enrichment-PCR generated results in 2 h (vs. 18-24 h for conventional methods), achieving 97.48% overall concordance with reference standards (95% CI: 95.65%-98.56%). In the 50-patient direct whole-blood cohort, enrichment-PCR identified all 14 culture-confirmed cases (100% concordance) and detected 6 additional culture-negative infections that were validated by mNGS. Direct testing reduced the median time to pathogen identification from blood collection to approximately 4 h, compared with a median of 19.6 h to blood culture positivity. Among the 6 culture-negative, PCR-positive cases, early identification led to targeted antimicrobial adjustments in 5 of 6 patients. One false-positive result was observed. The enrichment step reduced Ct values by 3-4 cycles (10-fold sensitivity gain; P < 0.001), achieving a limit of detection of 100 CFU/mL. CONCLUSION: This enrichment-PCR assay enables rapid, accurate BSI diagnosis, with the direct whole-blood application providing a meaningful clinical time advantage over culture-based methods. Preliminary data suggest potential for detecting culture-negative BSI and guiding early antimicrobial decisions, although validation in larger cohorts is needed.

Abstract as published, via PubMed.

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For healthcare professionals. The summary is generated by AI from the published abstract, and the evidence level is assigned automatically from the study design on the Oxford CEBM hierarchy. Neither is medical advice. Read the full paper before changing practice.