Drug Resistance Evolution of a Mycobacterium tuberculosis Strain from a Noncompliant Patient

Author:

Meacci Francesca1,Orrù Germano2,Iona Elisabetta3,Giannoni Federico3,Piersimoni Claudio4,Pozzi Gianni1,Fattorini Lanfranco3,Oggioni Marco R.1

Affiliation:

1. Dipartimento di Biologia Molecolare, Laboratorio di Microbiologia Molecolare e Biotecnologia, Università di Siena, Siena

2. Dipartimento di Scienze Odontostomatologiche, Universita' di Cagliari, Cagliari

3. Dipartimento di Malattie Infettive, Parassitarie e Immunomediate, Istituto Superiore di Sanità, 00161 Roma

4. Dipartimento di Microbiologia Clinica, Ospedali Riuniti, Ancona, Italy

Abstract

ABSTRACT The emergence and spread of multidrug-resistant (MDR) Mycobacterium tuberculosis (MT) represents a worldwide health care problem because of the difficulty in treating these infections. Development of drug resistance in MT arises mainly by mutation of chromosomal genes. To investigate the evolution of a MT population during a long-lasting infection, the phenotypic and genotypic changes in the drug resistance of 10 sequential MT isolates from a noncompliant chronically infected patient were investigated. During more than 12 years of active disease, a MDR population developed; molecular typing showed one single parental strain that infected the patient and persisted throughout the disease. Molecular analysis of the drug resistance-related genes revealed that discrete subpopulations evolved over time from the parental strain by acquiring and accumulating resistance-conferring mutations to isoniazid, rifampin, and streptomycin. Overall, these observations indicate that during a chronic infection, several subpopulations may coexist in the same patient with different drug susceptibility profiles.

Publisher

American Society for Microbiology

Subject

Microbiology (medical)

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