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Pertussis Pseudo-outbreak linked to specimens contaminated by Bordetella pertussis DNA From clinic surfaces
Sema Mandal1, Kathleen M Tatti, Denise Woods-Stout
1Epidemic Intelligence Service, Meningitis and Vaccine Preventable Diseases Branch, Division of Bacterial Diseases, National Center for Immunization and Respiratory Diseases, US Centers for Disease Control and Prevention, Atlanta, GA 30329, USA. smandal1@cdc.gov
Background And Objectives:
We investigated a pertussis outbreak characterized by atypical cases, confirmed by polymerase chain reaction (PCR) alone at a single laboratory, which persisted despite high vaccine coverage and routine control measures. We aimed to determine whether Bordetella pertussis was the causative agent and advise on control interventions.
Methods:
We conducted case ascertainment, confirmatory testing for pertussis and other pathogens, and an assessment for possible sources of specimen contamination, including a survey of clinic practices, sampling clinics for B pertussis DNA, and review of laboratory quality indicators.
Results:
Between November 28, 2008, and September 4, 2009, 125 cases were reported, of which 92 (74%) were PCR positive. Cases occurring after April 2009 (n = 79; 63%) had fewer classic pertussis symptoms (63% vs 98%; P < .01), smaller amounts of B pertussis DNA (mean PCR cycle threshold value: 40.9 vs 33.1; P < .01), and a greater proportion of PCR-positive results (34% vs 6%; P < .01). Cultures and serology for B pertussis were negative. Other common respiratory pathogens were detected. We identified factors that likely resulted in specimen contamination at the point of collection: environmentally present B pertussis DNA in clinics from vaccine, clinic standard specimen collection practices, use of liquid transport medium, and lack of clinically relevant PCR cutoffs.
Conclusions:
A summer pertussis pseudo-outbreak, multifactorial in cause, likely occurred. Recommendations beyond standard practice were made to providers on specimen collection and environmental cleaning, and to laboratories on standardizing PCR protocols and reporting results, to minimize false-positive results from contaminated clinical specimens.
Insights
A pertussis pseudo-outbreak occurred due to specimen contamination, not true Bordetella pertussis infection. This highlights the need for improved laboratory protocols and clinical specimen collection to prevent false positives in pertussis testing.
Area of Science:
- Microbiology
- Infectious Diseases
- Public Health
Background:
- Investigated a pertussis outbreak with atypical cases despite high vaccination rates.
- Identified challenges in confirming Bordetella pertussis (B. pertussis) due to atypical presentations and laboratory findings.
Purpose of the Study:
- Determine if B. pertussis was the actual cause of the reported outbreak.
- Provide recommendations for effective control interventions and accurate pertussis diagnosis.
Main Methods:
- Conducted case ascertainment and confirmatory testing for pertussis.
- Assessed potential sources of specimen contamination, including clinic practices and laboratory quality indicators.
- Analyzed B. pertussis DNA levels and clinical symptoms in reported cases.
Main Results:
- A pseudo-outbreak of pertussis was identified, with most cases occurring in summer months.
- Atypical presentations and lower B. pertussis DNA levels were observed in later cases.
- Specimen contamination was linked to environmental DNA, collection practices, and inadequate PCR cutoffs; cultures and serology were negative.
Conclusions:
- The outbreak was multifactorial, likely a summer pertussis pseudo-outbreak caused by contamination.
- Recommendations were made for improved specimen collection, environmental cleaning, and standardized laboratory PCR protocols to reduce false positives.
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