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Rol de la farmacogenómica en el régimen de tratamiento de tuberculosis

Bibliographic Data

ID15533641
AuthorsHeinner Guio (0000-0003-0078-1188, Instituto Nacional de Salud, corresponding author), Kelly S Levano (0000-0001-6519-6305, Instituto Nacional de Salud), César Sánchez (0000-0001-7300-0085, Instituto Nacional de Salud), David Tarazona (0000-0002-9273-0590, Instituto Nacional de Salud)
Year2015
Volume32
Issue4
Pages794-794
Publication date2015-12-06
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueRevista Peruana de Medicina Experimental y Salud Pública (JOURNAL)
Journal identifiersISSN: 1726-4634 • E-ISSN: 1726-4642
PublisherNational Institute of Health of Peru (PUBLISHER • PE)
DOI10.17843/rpmesp.2015.324.1774
PMID26732931
OpenAlexW2225893801
LanguageES
References cited1

Tuberculosis is a health problem worldwide with one-third of the population infected with the Mycobacterium tuberculosis bacilli. The first-line of treatment for tuberculosis includes the drugs Isoniazid (INH) and Rifampicin (RIF) metabolized in the liver. Drug metabolism is directly related to the genetic variation of NAT2 and CYP2E1 (associated with INH metabolism) and AADAC (associated with RIF metabolism), and the effects produced in an individual may be a fast, intermediate or slow metobolizer. Polymorphisms in genes of people in standard tuberculosis treatment can cause effects on drug metabolism with consequences of hepatotoxicity and even drug resistance. Countries have began clinical trials focused on personalization of tuberculosis treatment to reduce the consequences for patients in treatment. In countries like Peru, where high rates of tuberculosis are recorded and therefore more people in treatment, the pharmacogenomic of individuals becomes a crucial tool for an optimum tuberculosis treatment. This review highlights the importance of having pharmacogenomic studies and having the identification of polymorphisms associated to the metabolism of the anti-tuberculosis drugs in our Peruvian population

Environmental health · Isoniazid · Mycobacterium tuberculosis · Pathology · Pharmacogenomics · Population · Pyrazinamide · Rifampicin · Tuberculosis · Biochemical and Molecular Research · Medicine · Pharmacogenetics and Drug Metabolism · Tuberculosis Research and Epidemiology · Pharmacology

  • Molecular Structure of Nucleic Acids

    Open Access•James Dewey Watson, Francis Crick et al.•Nature•1953

Citation velocityhistorical
Highly citedNo

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