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Younger age at HAART initiation is associated with more rapid growth reconstitution
Christine J McGrath1, Michael H Chung, Barbra A Richardson
1Department of Epidemiology, University of Washington, Seattle, Washington, USA. mcgrathc@u.washington.edu
Insights
Younger children experienced faster growth recovery after starting highly active antiretroviral therapy (HAART). Food supplementation and multivitamins further supported growth reconstitution in HIV-1-infected children.
Area of Science:
- Pediatric infectious diseases
- Growth and development in HIV-infected children
- Antiretroviral therapy outcomes
Background:
- Growth patterns in children receiving highly active antiretroviral therapy (HAART) are not well-established.
- Understanding growth reconstitution is crucial for managing HIV-1-infected children.
Purpose of the Study:
- To determine the rates and predictors of growth reconstitution in children initiating HAART.
- To compare catch-up growth trajectories among different age groups.
Main Methods:
- Study conducted among 173 HIV-1-infected children in Kenya initiating HAART.
- Kaplan-Meier curves and Cox regression analyzed catch-up growth at 12 months.
- Multivariate linear mixed-effects models assessed growth rates and predictors.
Main Results:
- Children under 3 years showed more significant catch-up growth (weight-for-age and weight-for-height Z-scores) compared to older children (6-10 years).
- Children at WHO stage 3 or higher had faster weight-for-height reconstitution.
- Food supplementation and multivitamins were associated with improved weight and height gains, respectively.
Conclusions:
- Earlier initiation of HAART in younger children leads to more rapid catch-up growth.
- Food supplementation and multivitamins can accelerate growth reconstitution in conjunction with HAART.
Objectives:
Patterns of growth following highly active antiretroviral therapy (HAART) administration among children are not well defined. The objective of this study was to determine rates and predictors of growth reconstitution among children on HAART.
Methods:
A study was conducted among HIV-1-infected children initiating HAART at an HIV treatment clinic in Kenya. Kaplan-Meier survival curves and Cox proportional hazards regression models compared catch-up growth (Z-score ≥ 0) at 12 months post-HAART. Multivariate linear mixed-effects models determined rates and predictors of growth following HAART.
Results:
One hundred and seventy-three HIV-1-infected children initiated HAART with a median age of 4.7 years [interquartile range (IQR) 2.4, 7.0]. At baseline, children below 3 years had lower weight-for-age (WAZ) and weight-for-height (WHZ) Z-scores than children 3-5 and 6-10 years (WAZ: P = 0.03; WHZ: P = 0.006). Adjusting for baseline growth, children below 3 years were two to three-fold more likely to attain population age-norms (Z-score = 0) than 6-10 years (WAZ: P = 0.055; WHZ: P = 0.005) at 12 months post-HAART. After adjustment, children below 3 years had higher increases in WAZ and WHZ following HAART than 6-10 years (WAZ: P = 0.006; WHZ: P = 0.005). Children at WHO stage at least 3 at baseline experienced more rapid WHZ reconstitution (P = 0.002). Food supplementation while on HAART was associated with increased monthly gains in weight indices (WAZ: P = 0.001; WHZ: P = 0.005), and multivitamins were associated with greater increases in height (P < 0.01).
Conclusion:
Following HAART initiation, younger children had more rapid catch-up to the population-average weight of their peers than older children, demonstrating growth benefit of earlier HAART. In addition to HAART, food supplementation and multivitamins may also accelerate growth reconstitution.
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