Objective: To test the a priori hypothesis that longer duration of ruptured membranes is associated with increased risk of vertical transmission of HIV.Design: The relationship between duration of ruptured membranes and vertical transmission of HIV was evaluated in an individual patient data meta-analysis.Methods: Eligible studies were prospective cohort studies including at least 100 mother-child pairs, from regions where HIV-infected women are counselled not to breastfeed. Analyses were restricted to vaginal deliveries and non-elective Cesarean sections; elective Cesarean section deliveries (those performed before onset of labour and before rupture of membranes) were excluded.Results: The primary analysis included 4721 deliveries with duration of ruptured membranes less than or equal to 24 h. After adjusting for other factors known to be associated with vertical transmission using logistic regression analysis to assess the strength of the relationship, the risk of vertical HIV transmission increased approximately 2% with an increase of 1 h in the duration of ruptured membranes [adjusted odds ratio, 1.02; 95% confidence interval, 1.01-1.04; for each 1 h increment]. There were no significant interactions of duration of ruptured membranes with study cohort or with any of the covariates, except maternal AIDS. Among women diagnosed with AIDS, the estimated probability of transmission increased from 8% to 31% with duration of ruptured membranes of 2 h and 24 h respectively (P < 0.01).Conclusions: These results support the importance of duration of ruptured membranes as a risk factor for vertical transmission of HIV and suggest that a diagnosis of AIDS in the mother at the time of delivery may potentiate the effect of duration of ruptured membranes. (C) 2001 Lippincott Williams & Wilkins.
CD8 T cell function, lymphocyte surface phenotype, serum markers of immunologic activation, and viral burden were assessed in 75 human immunodeficiency virus (HIV)-infected pregnant women, including 9 who transmitted infection to their infants. Serial studies during and after pregnancy showed no significant differences in levels of cell-surface or serum activation molecules in transmitting compared to nontransmitting mothers, with the exception of a postpartum increase in tumor necrosis factor alpha in transmitting women. The transmitting women had a median plasma viral load of 65,516 RNA copies/mL at delivery versus 5139 in nontransmitting women. During the third trimester, the CD8 cells of 81% of the nontransmitting and 44% of the transmitting mothers suppressed HIV production in vitro by >50%. Women with <50% suppression had a 3.4 times greater risk of transmitting HIV to their infants. CD8 suppression and viral load were interrelated, but when either CD4 percent or AZT use was controlled for, suppression was still significant.
The time of perinatal human immunodeficiency virus type 1 (HIV-1) transmission and the pattern of early plasma viremia as predictors of disease progression were evaluated in infected infants followed from birth. Cox proportional hazards modeling demonstrated that a 1-log higher HIV-1 RNA copy number at birth was associated with a 40% increase in the relative hazard (RH) of developing CDC class A or B symptoms (P = .004), a 60% increase in developing AIDS (P = .01), and an 80% increase in the of risk death (P = .023) over the follow-up period of up to 8 years. The peak HIV-1 RNA copy number for infants during primary viremia was also predictive of progression to AIDS (RH, 9.9; 95% confidence interval [95% CI], 1.8-54.1; P = .008) and death (RH, 6.9; 95% CI, 1.1-43.8; P = .04). The results indicate that high levels of HIV-1 RNA at birth and during primary viremia are associated with early onset of symptoms and rapid disease progression to AIDS and death in perinatally infected children.
ABSTRACT Human immunodeficiency virus type 1 (HIV-1) RNA levels in plasma are currently widely used clinically for prognostication and in monitoring antiretroviral therapy. Accurate and reproducible results are critical for patient management. To determine the effects of specimen collection and handling procedures on quantitative measurement of HIV-1 RNA, we compared anticoagulants and sample processing times. Whole blood was collected from 20 HIV-1-infected patients in EDTA, acid citrate dextrose (ACD), and heparin tubes, aliquoted, and stored at room temperature. Plasma was separated from whole-blood aliquots prepared at ≤1, 3, 6, 24, and 48 h postcollection and then stored at −70°C until use. HIV-1 RNA levels were determined by the AMPLICOR HIV-1 MONITOR assay. Heparinized plasma samples, which were pretreated with heparinase prior to analysis, had the lowest baseline HIV-1 RNA levels. In the first 6 h, HIV-1 RNA levels decreased by 10, 20, and 31% in EDTA, ACD, and heparin tubes, respectively. From 6 to 48 h postcollection, HIV-1 RNA levels decreased in all anticoagulants, albeit at a slower, more consistent rate. Our results indicate that EDTA should be the anticoagulant of choice for plasma HIV-1 RNA measurement by reverse transcriptase PCR, but ACD tubes are acceptable if the plasma is separated within 6 h of blood collection. Caution must be applied in the interpretation of absolute HIV-1 RNA copy number values obtained with suboptimal specimen collection and processing procedures.
Immunologic alterations occur during pregnancy, but the effect of pregnancy on HIV infection is controversial. We characterized some of the immunologic alterations with potential to influence HIV disease in 99 infected and 46 uninfected women during pregnancy and up to 6 months post-partum. Immunophenotyping to quantitate the major lymphocyte subsets and determine expression of activation and adhesion molecules on T cells was performed using 3-color staining and laser flow cytometry. Serum neopterin, β2-microglobulin, and tumor necrosis factor-α (TNFα) were quantitated using commercial immunoassays. HIV + pregnant women were compared to uninfected pregnant subjects and to reference ranges established on healthy, HIV-seronegative non-pregnant female controls. Both CD4 and CD8 T cell subsets were increased in HIV-negative pregnant women compared to non-pregnant controls. In HIV-infected pregnant women, CD4 T cells were low and CD8 cells were elevated compared to HIV-negative pregnant and non-pregnant women. Levels of subsets were stable during pregnancy and postpartum in both groups of women. Evidence of peripheral immune activation was found during the later stages of pregnancy. Increases in HLA-DR and CD38 activation antigens on CD8 cells, serum neopterin and β-2-microglobulin were seen during pregnancy in HIV-negative women. These correlates of immune activation were increased in HIV-infected pregnant women and increased further during pregnancy, paralleling changes seen in uninfected pregnant women. These immunologic alterations may directly or indirectly enhance viral replication, impacting the long-term course of HIV disease.
Human immunodeficiency virus (HIV) infection in children is associated with qualitative and quantitative changes in the peripheral lymphocyte surface phenotype beyond the normal maturational changes. Neonates, however, have been reported to have a delayed immune response to HIV compared to HIV-infected adults. We prospectively performed immunophenotyping of T lymphocytes by three-color immunofluorescent labeling and laser flow cytometry to determine the timing of phenotypic alterations in 112 neonates born to HIV-infected mothers. Serial testing was performed at birth (cord blood) and at 2, 6, and 12 weeks of age. Data were divided retrospectively for analysis into those for HIV-infected (n = 14) infants and those for exposed, uninfected infants. Our results show that both infected and uninfected infants had a decline in the percentages and numbers of CD4 cells beginning at 2 weeks of age but that the decline was greater in the HIV-infected group. The activation and differentiation of CD8 T cells in HIV+ infants were shown by a significant increase in CD45RA- CD45RO+ CD8+ cells by 6 weeks of age and by increases in CD8+ S6F1+ CD3+ cells and HLA-DR+ CD38+ CD8+ cells by 2 weeks of age. These results indicate that HIV-infected neonates show alterations in T-cell phenotype reflecting those reported for older HIV-infected children. Most importantly, neonatal T cells are able to respond to HIV within the first weeks of life.
Background: We evaluated data from prospectively identified twins to understand better the mechanisms and covariates of mother-to-infant transmission of human immunodeficiency virus (HIV).Methods: Using data obtained from an international collaboration and multivariate quasilikelihood modeling, we assessed concordance, birth order, route of delivery, and other factors for HIV infection in 115 prospectively studied twin pairs born to HIV-infected women. Actuarial methods were used to evaluate overall survival and survival free of acquired immunodeficiency syndrome for HIV-infected twins.Results: Infection with HIV occurred in 35% of vaginally delivered firstborn (A) twins, 16% of cesarean-delivered A twins, 15% of vaginally delivered second-born (B) twins, and 8% of cesarean-delivered B twins. In a multivariate model, the adjusted odds ratios for HIV infection were 11.8 (confidence interval: 3.1 to 45.3) for concordance of infection with the co-twin, 2.8 (confidence interval: 1.6 to 5.0) for A versus B twins, and 2.7 (confidence interval: 1.1 to 6.6) for vaginally delivered versus cesarean-delivered twins. Among A twins, 52% (lower confidence limit: 6%) of the transmission risk was related to vaginal delivery, Comparing vaginally delivered A twins (infants most exposed to vaginal mucus and blood) to cesarean-delivered B twins (infants least exposed), 76% (lower confidence limit: 48%) of the transmission risk was related to vaginal exposure. Infected B twins had slightly reduced Quetelet indexes and more rapid development of illnesses related to acquired immunodeficiency syndrome.Conclusions: These results indicate that HIV infection of B twins occurs predominantly in utero, whereas infection of A twins (and, by implication, singletons) occurs predominantly intrapartum, We propose that intrapartum transmission is responsible for the majority of pediatric HIV infections and that reducing exposure to HIV in the birth canal may reduce transmission of the virus from mother to infant.
The relationship between viral burden, timing of transmission, and clinical progression was investigated in 110 children at risk for vertical human immunodeficiency virus (HIV) infection using quantitative polymerase chain reaction, coculture, and immune complex-dissociated p24 antigen assay. In a cross-sectional study, the mean HIV DNA copy number in 19 symptomatic children was significantly higher than in 31 infected, asymptomatic children (420 +/- 125 vs. 87 +/- 78; P < .0001). In a second group of 8 vertically infected infants followed prospectively from birth, 4 defined as infected in utero showed a more rapid increase in virus load, an accelerated loss of CD4 cells, and early progression to symptomatic disease (3-12 weeks) compared with 4 children with late in utero or intrapartum transmission (10-31 months). These data suggest that a direct relationship exists between HIV replication, the timing of transmission and onset and progression of HIV disease in vertically infected children.
In a prospective study of factors associated with genital herpes simplex virus (HSV) type 2 transmission in couples in whom 1 partner had clinical genital HSV and the other did not, 11 (19%) of the 57 history-negative partners had HSV-2 antibody by Western blot at entry. In follow-up (mean, 16 months) of 29 HSV-2-seronegative partners, overall 4 (14%) seroconverted compared with 3 (23%) of 13 HSV-1- and -2-seronegative partners and 1 (6%) of 16 HSV-1-seropositive partners. Since all seroconverters were women, the risk of transmission may be higher in HSV-seronegative women. No significant differences were found between HSV-2-seronegative partners and seroconverters regarding duration of relationships, number of partner recurrences, intercourse frequency, or contraceptive method. However, 2 seroconverters were exposed to lesions without barrier contraception. This study suggests that infection is commonly asymptomatic and that although the overall risk of genital HSV transmission in couples is low (10%/year), the risk may be significantly increased in women and in seronegative individuals.
In a randomized double-blinded fashion, herpes simplex virus type 2 specific lymphocyte proliferation (HSV-2-LP) was studied in patients with frequently recurring genital HSV-2 who were administered daily suppressive oral acyclovir (S-ACV) or placebo and acyclovir for 5 d (PLC/ACV) with recurrences. The pretreatment HSV-2-LP of subjects was low compared with that of controls with infrequently recurring genital HSV-2 (54,000 vs. 110,000 cpm). The HSV-2-LP increased with both S-ACV and PLC/ACV (101,000 and 94,000 cpm, respectively). After treatment was stopped, the HSV-2-LP decreased in both groups (59,000 cpm). Similar data were seen in a subpopulation given a second year of S-ACV. HSV recurrences were reduced in the S-ACV but not in the PLC/ACV group. These data suggest that a low HSV-2-LP in untreated patients is associated with frequent recurrences of genital HSV; a reduction of viral antigens by suppression with ACV or early treatment of HSV recurrences augments the HSV-2-LP response; and the recurrence pattern is not modulated by the HSV-2-LP response.