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Diagnostic procedures in tularaemia with special focus on molecular and immunological techniques
W D Splettstoesser1, H Tomaso, S Al Dahouk
1Department of Medical Microbiology and Hospital Hygiene, Institute of Medical Microbiology, Virology and Hygiene, University Hospital Rostock, Schillingallee 70, 18057 Rostock, Germany. wolfsplettstoesser@bundeswehr.org
Abstract:
Tularaemia is a severe bacterial zoonosis caused by the highly infectious agent Francisella tularensis. It is endemic in countries of the northern hemisphere ranging from North America to Europe, Asia and Japan. Very recently, Francisella-like strains causing disease in humans were described from tropical northern Australia. In the last decade, efforts have been made to develop sensitive and specific immunological and molecular techniques for the laboratory diagnosis of tularaemia and also for the definite identification of members of the species F. tularensis and its four subspecies. Screening for the keyword 'Francisella' a Medline search over the last decade was performed and articles describing diagnostic methods for tularaemia and its causative agent were selected. Besides classical microbiological techniques (cultivation, biochemical profiling, susceptibility testing) several new immunological and molecular approaches to identify F. tularensis have been introduced employing highly specific antibodies and various polymerase chain reaction (PCR)-based methods. Whereas direct antigen detection by enzyme-linked immunosorbent assay (ELISA) or immunofluorescence might allow early presumptive diagnosis of tularaemia, these methods--like all PCR techniques--still await further evaluation. Therefore, diagnosis of tularaemia still relies mainly on the demonstration of specific antibodies in the host. ELISA and immunoblot methods started to replace the standard tube or micro-agglutination assays. However, the diagnostic value of antibody detection in the very early clinical phase of tularaemia is limited. Francisella tularensis is regarded as a 'highest priority' biological agent (category 'A' according to the CDC, Atlanta, GA, USA), thus rapid and reliable diagnosis of tularaemia is required not only for a timely onset of therapy, the handling of outbreak investigations but also for the surveillance of endemic foci. Only very recently, evaluated test kits for serological diagnosis of human tularaemia became available, while the introduction of standardized molecular techniques for detection and typing is still missing.
Insights
Tularaemia, a severe bacterial zoonosis caused by Francisella tularensis, requires rapid laboratory diagnosis. Recent advancements in immunological and molecular techniques aid in identifying this highly infectious agent, though further evaluation is needed.
Area of Science:
- Infectious Diseases
- Bacteriology
- Diagnostic Microbiology
Background:
- Tularaemia is a severe bacterial zoonosis caused by the highly infectious agent Francisella tularensis.
- The disease is endemic in the Northern Hemisphere and has recently been reported in Australia.
- Francisella tularensis is a Category A bioterrorism agent, necessitating rapid and reliable diagnostics.
Purpose of the Study:
- To review recent advancements in laboratory diagnostic techniques for tularaemia and Francisella tularensis.
- To assess the sensitivity and specificity of newly developed immunological and molecular methods.
- To identify gaps in current diagnostic capabilities for timely tularaemia detection and management.
Main Methods:
- A Medline search was conducted for articles published in the last decade focusing on 'Francisella' and diagnostic methods for tularaemia.
- Reviewed classical microbiological techniques, including cultivation, biochemical profiling, and susceptibility testing.
- Evaluated new immunological approaches like enzyme-linked immunosorbent assay (ELISA) and immunofluorescence, alongside various polymerase chain reaction (PCR)-based molecular methods.
Main Results:
- New immunological and molecular techniques have been developed for identifying Francisella tularensis.
- Direct antigen detection methods (ELISA, immunofluorescence) and PCR techniques show potential but require further evaluation.
- Serological diagnosis, primarily antibody detection via ELISA and immunoblot, is currently the main diagnostic approach, though limited in the early disease phase.
Conclusions:
- Current tularaemia diagnosis relies heavily on antibody detection, with newer serological kits becoming recently available.
- Standardized molecular techniques for Francisella tularensis detection and typing are still lacking.
- Continued development and validation of sensitive and specific diagnostic tools are crucial for tularaemia surveillance, therapy, and outbreak response.
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