V. Leroy et al., Maternal plasma viral load, zidovudine and mother-to-child transmission ofHIV-1 in Africa: DITRAME ANRS 049a trial, AIDS, 15(4), 2001, pp. 517-522
Objective: To study the relationship between maternal plasma RNA levels and
mother-to-child transmission (MTCT) of HIV-1 in African breastfed children
.
Design: Nested case-control study within a randomized trial assessing the e
fficacy of a short maternal zidovudine (ZDV regimen to reduce MTCT.
Methods: Eligible women received either 300 mg of ZDV twice a day until lab
our, 600 mg at the beginning of labour and 300 mg twice a day for 7 days po
st-partum or a placebo, The diagnosis of paediatric HIV-1 infection was bas
ed on PCR tests at days 1-8, 45, 90 and 180 then on serology performed at 3
monthl intervals. Plasma HIV-1 RNA was measured at inclusion and on day 8
after delivery for all women who did transmit HIV to their children (cases)
using a Chiron branched DNA assay (sensitivity 50 copies/ml) and compared
with women who did not transmit (two per case) matched for phase trial, tre
atment allocation and site.
Results: At inclusion, mean log(10) viral load was 4.6 among 55 transmittin
g mothers and 3.7 among 117 non transmitters (P = 0.0001). Among transmitte
rs, the mean difference in log(10) viral load between day 8 post-partum and
inclusion was -0.13 in the ZDV group (n = 23) versus 0.27 in the placebo g
roup (n = 32; P = 0.01); among non transmitters it was -0.35 for the ZDV gr
oup (n = 47) versus 0.27 in the placebo group (n = 70; P < 10(-4)). In mult
ivariate logistic regression analysis, odds ratios for MTCT were 8.7 (95% c
onfidence interval, 3.7-20.6) for 1 log(10) increase of maternal RNA at inc
lusion and 4.2 (95% confidence interval, 1.7-10.3) for 1 log(10) increase d
ifference from inclusion to day 8 post-partum.
Conclusion: High maternal viral load at inclusion strongly predicts MTCT of
HIV in Africa. A short ZDV treatment regimen decreases significantly mater
nal viral load from its pretreatment revel. (C) 2001 Lippincott Williams &
Wilkins.