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◆ Pathogens (Basel, Switzerland)2026-07-24

A Novel Real-Time SYBR Green PCR Assay for Integron Profiling in Pseudomonas aeruginosa: Unveiling the Resistance Nexus Between Food and Clinical Isolates.

Hend Emad, Mahmoud M Amer, Munirah M Alhammadi, Mona Alharbi, Yasmen F Mahran, Attia A Attia, Khalid Maniah, Azza SalahEldin El-Demerdash

原始摘要(英文原文)· Original abstract
Background: The dissemination of extensively drug-resistant Pseudomonas aeruginosa strains across the human-food interface represents a critical threat to global public health, complicating empirical therapeutic choices and challenging traditional nosocomial restriction paradigms. Objective: This study investigated the prevalence, phenotypic resistome landscapes, and underlying integron-mediated mobilization mechanics of P. aeruginosa across the One Health continuum using an optimized real-time quantitative PCR (qPCR) platform. Methods: A total of 116 samples comprising human clinical specimens (n = 61) and retail food matrices (n = 55) were screened. Phenotypic resistance was profiled against 16 antipseudomonal agents, with polymyxin and colistin resistance validated via reference broth microdilution. A novel real-time SYBR Green qPCR assay backed by derivative melting curve analysis was developed to track Class 1 (intI1) and Class 2 (intI2) integrons. Results:Pseudomonas aeruginosa was recovered from 36.2% (n = 42/116) of total samples, exhibiting a homogeneous distribution across clinical (32.8%) and retail food matrices (40.0%, p = 0.445). Antibiogram characterization revealed a critical resistance burden: 100% of isolates fell into extreme epidemiological tiers, with 71.4% (n = 30) exhibiting an extensively drug-resistant (XDR) phenotype and 28.6% (n = 12) reaching absolute pandrug-resistant (PDR) status. Absolute phenotypic resistance (100%) was recorded across both cohorts for meropenem, ceftazidime, aztreonam, tobramycin, polymyxins, and novel combination therapeutics (ceftazidime-avibactam and ceftolozane-tazobactam). Pairwise tracking demonstrated an exceptionally strong positive correlation in resistance distribution patterns between human and food isolates (Spearman's rho = 0.948, p < 0.001). Analytical validation of the qPCR assay demonstrated tight, reproducible specific derivative melting peaks (Tm) at 83.2 °C for intI1 and 83.8 °C for intI2. Genotypic screening revealed universal conservation of plasmid-borne intI1 (100%), whereas plasmidic intI2 was variably distributed (61.9%). Crucially, intI2 carriage served as a definitive marker for the transition to complete pandrug resistance, being detected in 100% (n = 12/12) of PDR isolates compared to 46.7% (n = 14/30) of XDR strains (p = 0.001), supported by a strong positive correlation with the PDR phenotype (rho = 0.496, p = 0.0008). Conclusions: These findings reveal an overlapping, extreme resistome across the food-clinical interface and identify intI2 as a genetic tipping point for absolute pandrug resistance. The validated real-time assay provides a highly sensitive, proactive molecular surveillance framework capable of mapping high-risk mobile genetic platforms before they manifest as catastrophic empirical treatment failures.
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A Novel Real-Time SYBR Green PCR Assay for Integron Profiling in Pseudomonas aeruginosa: Unveiling the Resistance Nexus Between Food and Clinical Isolates. — 科研速览 Science Skim