Validation of molecular detection of Candida auris from wastewater

Roxanna M Rodríguez Stewart1,2, Anastasia P Litvintseva2, Jorge Chavez2

  • 1Laboratory Leadership Service, Centers for Disease Control and Prevention, Atlanta, Georgia, USA.

Microbiology Spectrum
|June 22, 2026
PubMed

Insights

Wastewater surveillance can now detect Candida auris (C. auris), an urgent threat pathogen. This validated qPCR assay offers a cost-effective method for early detection and monitoring of C. auris in healthcare systems.

Area of Science:

  • Environmental microbiology
  • Infectious disease surveillance
  • Molecular diagnostics

Background:

  • Candida auris (C. auris) is a multidrug-resistant pathogen causing severe infections and spreading rapidly in healthcare settings.
  • High transmissibility is linked to C. auris skin colonization, shedding, and environmental persistence, complicating control efforts.
  • Current patient screening methods are time-consuming and costly, leading to insufficient monitoring of C. auris prevalence.

Purpose of the Study:

  • To validate a quantitative polymerase chain reaction (qPCR) assay for detecting C. auris in wastewater samples.
  • To assess the feasibility of integrating this assay into wastewater surveillance workflows for early C. auris detection in healthcare facilities.
  • To provide a more cost-effective alternative to direct patient screening for monitoring C. auris within healthcare systems.

Main Methods:

  • A qPCR protocol, originally developed for C. auris colonization screening, was adapted for wastewater matrices.
  • The assay's performance was evaluated using key metrics including PCR amplification efficiency, sensitivity (limit of detection), and reproducibility.
  • Wastewater samples were utilized to mimic real-world conditions for assay validation.

Main Results:

  • The validated qPCR assay demonstrated high PCR amplification efficiency (96.8%) with a slope of -3.4 in a wastewater matrix.
  • The assay exhibited high sensitivity, with a limit of detection of 1.8 colony-forming units/milliliter.
  • The method showed high reproducibility, indicating reliability for C. auris detection in wastewater.

Conclusions:

  • The adapted qPCR assay accurately detects C. auris in wastewater samples.
  • This validated workflow supports the integration of wastewater surveillance for early C. auris detection and prevalence monitoring in healthcare systems.
  • Wastewater-based detection offers a proactive and cost-effective strategy for managing C. auris transmission, especially in areas lacking direct patient screening.

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