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Author Spotlight: Advancing Rapid Detection of Respiratory Pathogens Using Microfluidic Chip
Published on: March 29, 2024
Evaluating the use of a 22-pathogen TaqMan array card for rapid diagnosis of respiratory pathogens in intensive care
Nick K Jones1,2, Andrew Conway Morris3,2, Martin D Curran1
1Clinical Microbiology and Public Health Laboratory, Public Health England, Cambridge, UK.
Abstract:
Introduction. Pneumonia is highly prevalent in intensive care units (ICUs), with high associated mortality. Empirical treatment prioritizes breadth of coverage while awaiting laboratory diagnosis, often at the expense of antimicrobial stewardship. Microarrays use multiple parallel polymerase chain reactions to enable a rapid syndromic approach to laboratory diagnosis.Aim. To evaluate the clinical and laboratory implications of introducing a bespoke 22-pathogen TaqMan Array Card (TAC) for rapid pathogen detection in deep respiratory samples from adult ICUs.Methodology. TAC results from all ICU patients prospectively tested over a 9-month period at Cambridge's Clinical Microbiology and Public Health Laboratory were compared to those of corresponding conventional microbiological assays (culture-, PCR- or serology-based) in terms of result agreement and time-to-result availability. Clinical impact was assessed by retrospective review of medical records.Results. Seventy-one patients were included [45 (63 %) male, median age 59). Overall result agreement was 94 %, with TAC detecting more pathogens than conventional methods. TAC detected Streptococcus pneumoniae more readily than culture (7 vs 0 cases; P=0.02). TAC did not detect Aspergillus spp. in eight culture- or galactomannan-positive cases. The median turnaround time (1 day) was significantly shorter than that of bacterial/fungal culture, Pneumocystis jirovecii PCR and galactomannan testing (each 3 days; P<0.001), atypical bacteria serology (13 days; P<0.001) and Mycobacterium tuberculosis culture (46 days; P<0.001). Earlier result availability prompted discontinuation of unnecessary antimicrobials in 15/71 (21 %) cases, but had no bearing on patient isolation/deisolation.Conclusion. TAC provided greater overall yield of pathogen detection and faster turnaround times, permitting earlier discontinuation of unnecessary antimicrobials.
Insights
Rapid pathogen detection using TaqMan Array Cards (TAC) in intensive care units (ICUs) significantly reduced antimicrobial use. This diagnostic approach improved pathogen identification and shortened turnaround times compared to conventional methods.
Area of Science:
- Clinical Microbiology
- Infectious Diseases
- Diagnostic Technology
Background:
- Pneumonia is a common and fatal condition in intensive care units (ICUs).
- Current empirical treatment strategies for ICU pneumonia often lead to overuse of antimicrobials due to delayed laboratory diagnostics.
- Microarray technology, such as TaqMan Array Cards (TAC), offers a potential solution for rapid, syndromic diagnosis.
Purpose of the Study:
- To assess the clinical and laboratory impact of implementing a 22-pathogen TAC for rapid detection of respiratory pathogens in adult ICUs.
- To compare the diagnostic yield and turnaround time of TAC against conventional microbiological assays.
Main Methods:
- Prospective study over 9 months at Cambridge's Clinical Microbiology and Public Health Laboratory.
- Comparison of TAC results with conventional methods (culture, PCR, serology) for deep respiratory samples from ICU patients.
- Retrospective review of medical records to evaluate clinical impact, including antimicrobial use and patient management.
Main Results:
- The TAC demonstrated 94% overall result agreement with conventional methods, detecting more pathogens overall.
- TAC identified *Streptococcus pneumoniae* more effectively than culture (7 vs 0 cases).
- TAC significantly reduced turnaround time to 1 day compared to 3-46 days for conventional tests, leading to unnecessary antimicrobial discontinuation in 21% of patients.
Conclusions:
- The 22-pathogen TAC offers a superior diagnostic yield and faster results for ICU respiratory infections.
- Rapid pathogen detection via TAC enables earlier de-escalation of antimicrobial therapy, supporting antimicrobial stewardship.
- While effective, TAC did not detect *Aspergillus* spp. in cases confirmed by other methods.

