Related Experiment Video
Updated: Sep 14, 2025

Novel Diagnostics in Revision Arthroplasty: Implant Sonication and Multiplex Polymerase Chain Reaction
Published on: December 3, 2017
Comparative evaluation of Biofire Joint Infection Panel, Sepsitest 16S/18S rDNA PCR, and culture to identify
Benjamin Berinson1, Konstantin Tanida1, Manuel Wolters1
1Institute for Medical Microbiology, Virology and Hygiene, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
Abstract:
Infective endocarditis (IE) is a major life-threatening disease. However, the inability to identify the causative pathogen using conventional microbiological cultures jeopardizes the choice of optimal antibiotic therapy. Culture-independent molecular techniques for pathogen detection may overcome this challenge. Here, two molecular tests (16S/18S rDNA assay [SepsiTest, Molzym, Germany]; Biofire Joint Infection Panel [BJP, bioMérieux, Marcy l'Étoile, France]) were analyzed for their ability to detect pathogens in a series of 100 explanted heart valves. In total, at least one pathogen was detected in 67/100 specimens by one or more methods, and 33/100 specimens were negative in all three assays. Overall, valve-culture had an inferior sensitivity (39.4%), compared to 16S/18S rDNA PCR (90.9%) and the BJP (83.1% [all organisms], 98.2% [on-panel organisms only]). In culture-negative cases, 35 and 32 additional pathogens were identified by 16S/18S rDNA PCR and BJP, respectively. In five culture- and 16S/18S rDNA assay-negative cases, BJP identified correctly additional pathogens. False-positive results were observed in one (16S/18S rDNA PCR) and two (BJP) cases, respectively. In conclusion, both culture-independent assays proved to be reliable and increased the diagnostic yield compared to culture. In general, false negatives (i.e., off-panel pathogens in BJP) and false positives require careful clinical evaluation of results from culture-independent techniques. Diagnostic stewardship is essential to guide the optimal use of molecular techniques in the work-up of infective endocarditis.IMPORTANCEInfective endocarditis (IE) therapy must be guided by the identification of the causative pathogen. Microbiological cultures, however, remain negative in a significant number of cases, jeopardizing the choice of optimal anti-infective treatment. This study evaluated the ability of two independent molecular tests (16/18S rDNA PCR, syndromic panel PCR [Biofire JI panel]) to overcome limitations of conventional microbiological approaches to detect microorganisms from explanted heart valve tissues. Both assays proved to have a greater sensitivity compared to conventional culture, and PCR and BJP identified a pathogen in 35 and 32 out of 74 culture negative IE cases, additional pathogens, respectively. The study highlights the great importance of culture-independent approaches to pathogen detection in IE and guides the choice of the optimal assay using diagnostic stewardship interventions.
Insights
Molecular tests significantly improve pathogen detection in infective endocarditis (IE) compared to traditional cultures. These advanced techniques offer higher sensitivity for identifying causative agents, guiding better treatment decisions.
Area of Science:
- Infectious Diseases
- Molecular Diagnostics
- Cardiovascular Surgery
Background:
- Infective endocarditis (IE) is a life-threatening condition where pathogen identification is crucial for effective antibiotic therapy.
- Conventional microbiological cultures often fail to detect the causative pathogen, complicating treatment decisions.
- Culture-independent molecular techniques offer a potential solution to overcome the limitations of traditional methods.
Purpose of the Study:
- To evaluate the diagnostic performance of two molecular assays (16S/18S rDNA PCR and Biofire Joint Infection Panel [BJP]) compared to conventional valve culture for pathogen detection in infective endocarditis.
- To determine the sensitivity and additional diagnostic yield of molecular techniques in culture-negative IE cases.
- To assess the reliability and potential pitfalls (false positives/negatives) of these molecular assays.
Main Methods:
- Analysis of 100 explanted heart valves using three methods: conventional valve culture, 16S/18S rDNA PCR (SepsiTest), and Biofire Joint Infection Panel (BJP).
- Comparison of pathogen detection rates and sensitivity across the three techniques.
- Evaluation of additional pathogens identified in culture-negative samples by molecular assays.
Main Results:
- At least one pathogen was detected in 67% of specimens by at least one method.
- Molecular assays demonstrated superior sensitivity: 16S/18S rDNA PCR (90.9%) and BJP (83.1% overall, 98.2% for on-panel organisms) compared to valve culture (39.4%).
- 35 and 32 additional pathogens were identified by 16S/18S rDNA PCR and BJP, respectively, in culture-negative cases. BJP identified additional pathogens in five cases negative by both culture and 16S/18S rDNA PCR.
Conclusions:
- Both culture-independent molecular assays are reliable and significantly increase the diagnostic yield for pathogen detection in infective endocarditis compared to conventional culture.
- Careful clinical evaluation is necessary to interpret results, considering potential false negatives (off-panel pathogens) and false positives.
- Diagnostic stewardship is essential to guide the optimal use of these molecular techniques in IE work-up.
More Related Videos
09:18Assessing Bacterial Invasion of Cardiac Cells in Culture and Heart Colonization in Infected Mice Using Listeria monocytogenes
Published on: May 27, 2015
11:25Preparation of a Blood Culture Pellet for Rapid Bacterial Identification and Antibiotic Susceptibility Testing
Published on: October 15, 2014
Related Concept Videos
Sputum Studies II: Culture and Sensitivity
Sputum culture and sensitivity is a medical procedure used to diagnose bacterial infections in the respiratory tract and select the most appropriate antibiotics for treatment. This process involves analyzing sputum samples of thick and opaque secretions produced in the lungs and airways. These samples are collected from patients and then sent to the laboratory for analysis.
The test can identify various pathogens responsible for respiratory infections, including Streptococcus,...
Endocarditis I: Introduction
Sputum Studies I: Gram Stain, cytology, and Acid-fast smear and culture
Gram Stain
The Gram Stain is an integral part of sputum studies. It involves the staining of sputum, which permits...
Endocarditis III: Medical Management
Endocarditis II: Clinical Features of Infective Endocarditis
Rheumatic Heart Disease II: Clinical Manifestations and Diagnostic Studies