| Literature DB >> 21234380 |
Damani A Piggott1, Petros C Karakousis.
Abstract
The convergent human immunodeficiency virus (HIV) and tuberculosis (TB) pandemics continue to collectively exact significant morbidity and mortality worldwide. Highly active antiretroviral therapy (HAART) has been a critical component in combating the scourge of these two conditions as both a preemptive and therapeutic modality. However, concomitant administration of antiretroviral and antituberculous therapies poses significant challenges, including cumulative drug toxicities, drug-drug interactions, high pill burden, and the immune reconstitution inflammatory syndrome (IRIS), thus complicating the management of coinfected individuals. This paper will review data from recent studies regarding the optimal timing of HAART initiation relative to TB treatment, with the ultimate goal of improving coinfection-related morbidity and mortality while mitigating toxicity resulting from concurrent treatment of both infections.Entities:
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Year: 2010 PMID: 21234380 PMCID: PMC3017895 DOI: 10.1155/2011/103917
Source DB: PubMed Journal: Clin Dev Immunol ISSN: 1740-2522
Studies on initiation of highly active antiretroviral therapy (HAART) in HIV/TB-coinfected individuals.
| Study (author, year) | Study characteristics | Timing of HAART relative to TB treatment | Outcomes | Adverse events |
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| Leonard et al. 2002 [ | - Retrospective cohort | HAART at time of diagnosis versus HAART post-TB diagnosis — not defined | Decreased 1 year mortality in 1994 and 1997 cohort compared to 1991 cohort | N/A |
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| Sungkanuparph et al. 2006 [ | - Retrospective, observational | Median 8 weeks (range 4–12 weeks) | Virological suppression | IRIS—1/29 |
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| Manosuthi et al. 2006 [ | - Retrospective cohort | 2 mth versus 4 mth versus | Increased survival for pts. receiving HAART as compared to no HAART | N/A |
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| Sanguanwongse et al. 2008 [ | - Observational cohort | Not defined | Decreased mortality in group receiving HAART (11%) compared to that not receiving HAART (46%) (relative risk 0.24, 95% confidence interval: 0.19 to 0.30) | N/A |
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| Tabarsi et al. 2009 [ | - Retrospective cohort | Group I: HAART after 8 wks if CD4 < 100 | Increased mortality when HAART deferred after 8 weeks if CD4 <100 Group I versus Group II mortality = 27.7% versus 4.5% ( | No difference between groups I and II regarding Grade 3 or 4 events, IRIS, or new OI |
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| Velasco et al. 2009 [ | - Mixed retrospective/ prospective study | - Simultaneous: HAART within 2 mths of TB diagnosis | - Decreased mortality in simultaneous group (9.3%) versus nonsimultaneous group (19.7%) ( | N/A |
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| Torok et al. 2009 [ | - Randomized, double blind, placebo-controlled trial | HAART started within 7 days (immediate arm) or at 2 mths (deferred arm) after initiation of TB treatment | Mortality: | Incidence of grade 3 or 4 adverse events first 2 mths: |
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| Abdool Karim et al. 2010 [ | - Open-label, randomized, controlled trial | HAART started either during TB treatment (in two integrated-therapy groups) or after completion of TB treatment (in one sequential-therapy group) | Mortality rate per 100 py: | Incidence of IRIS: |
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| Blanc et al. 2010 [ | - Open label randomized, | HAART started at 2 weeks (early arm) or 8 weeks (late arm) after initiation of TB treatment | Mortality rate per 100 py: | Incidence of IRIS per 100 pm: |
OI: Opportunistic infections IRIS: Immune reconstitution inflammatory syndrome EFV: Efavirenz NVP: Nevirapine pts: Patients HR: Hazard ratio py: Person-years pm: Person-months N/A: Not available.