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Standardised PCR-based molecular epidemiology of tuberculosis

Allix-Beguec, C.
Supply, P.
Wanlin, M.
Bifani, P.
Fauville, M.
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Abstract

A population-based molecular epidemiology investigation has been undertaken to evaluate tuberculosis transmission and control in the Brussels-Capital Region (Belgium). All tuberculosis cases reported from January 2003 to December 2004 were investigated. In total, 536 Mycobacterium tuberculosis isolates (89% of culture-positive samples) were genotyped by the newly standardised 24 loci-based mycobacterial interspersed repetitive unit-variable number tandem-repeat typing, spoligotyping and IS6110 fingerprinting. Of all the patients, 30% were grouped based on strain clusters, suggesting a transmission index of 20%. An unsuspected outbreak entailing > or = 23 patients was evidenced by molecular typing analysis and confirmed by contact tracing. Foreign-born status accounted for 79% of the studied patients, including 37.9% illegal immigrants and asylum seekers. Among foreign-born patients, asylum seekers and illegal immigrants were significantly less abundant in strain clusters than settled residents. Tuberculosis in the Brussels-Capital Region is a bi-faceted problem, comprising both persisting recent transmission and "imported diseases". Molecular epidemiology based on real-time genotyping techniques has proven invaluable in better understanding tuberculosis transmission. However, it will most efficiently contribute to tuberculosis control when implemented in an integrated public health system

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2008-05-15
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Peer reviewed scientific article
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2004, ADOLESCENT, Adult, ALL, analysi, analysis, article, Belgium, Bruxelles, Case, Child, Child,Preschool, Cluster, Cluster Analysis, CONTACT, Contact Tracing, Control, cross-sectional studies, de, DNA Fingerprinting, electronic, Emigrants and Immigrants, epidemiology, ET, Female, genetics, Genotype, health, health system, Humans, im, index, Infant, investigation, IS, IT, journal, Less, Male, middle aged, Minisatellite Repeats, Molecular, Molecular Epidemiology, Molecular Typing, Mycobacterium, Mycobacterium tuberculosis, outbreak, Patient, patients, polymerase chain reaction, population based, population-based, public, public health, Public-health, region, residents, Sample, Samples, SB - IM, status, strain, System, Technique, Transmission, tuberculose, Tuberculosis
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