HIV
Conditions
Keywords
HIV infection, Gut microbiome, Raltegravir, Raltegravir intensification, Bacterial richness
Brief summary
The project presented here will be the first prospective, randomized evaluation of the effect of ART on the structure and function of the gut microbiome. This study provides a unique opportunity to understand the benefits of ART with high intestinal penetration on the gut microbiome. It is thus a key study to understand the bidirectional interactions between the microbiome and the host in people living with HIV/AIDS.
Detailed description
The gut microbiome is essential for the maturation of the neonatal immune system and the adequate development and function of adult immune responses. HIV-1 infection in children and adults exerts a rapid and severe depletion of gut-associated lymphoid tissue, which damages the intestinal barrier, allowing translocation of gut commensal bacteria into the systemic circulation. Bacterial translocation causes chronic inflammation and immune activation, which lead to immune deterioration and premature aging of HIV-1-infected subjects, including metabolic disturbances, cardiovascular diseases, cognitive disorders and HIV-associated cancers. Persistence of residual HIV-1 replication in the presence of ART has been associated to incomplete HIV-1 suppression in gut lymphatic tissues due to suboptimal tissular penetration of PI/s or NNRTIs. In previous work in our institute, the investigators have observed that HIV-1 infection is independently associated with significant reductions in the gut microbiome richness, which is, in turn, are inversely correlated with systemic inflammation. Reduced microbial richness, for example, has been associated with intestinal inflammatory diseases and well as with metabolic syndrome, diabetes and obesity and correlated with metabolic markers. Recovering bacterial richness might thus have a positive impact on immune activation, chronic inflammation and the overall health of HIV-infected individuals. However, achieving that goal will possibly require, alongside potential bacterial supplementations, the use of ART with high penetration into gut lymphoid tissue to limit as much as possible the continued damage exerted by residual HIV replication on the GALT. Antiretroviral drugs with higher intestinal penetration like raltegravir may be more effective at recovering the intestinal microbiome composition and function than those with lower gut penetration like darunavir or the NNRTIs. Thereby, raltegravir intensification could be associated with increases in intestinal microbial richness, implying an improvement on intestinal and overall health. Despite the lack of evidence on that regard, previous studies from our group and others would favor that hypothesis. Residual HIV-1 replication in plasma can be deterred by ART intensification with raltegravir, which is, in part, due to the high penetration of raltegravir in intestinal tissues. Moreover, raltegravir intensification decreases peripheral CD8 T-cell activation CD45RA (-) and creates a transient CD4 T-cell redistribution, which revert after raltegravir withdrawal. The project presented here will be the first prospective, randomized evaluation of the effect of ART on the structure and function of the gut microbiome. This study provides a unique opportunity to understand the benefits of ART with high intestinal penetration on the gut microbiome. It is thus a key study to understand the bidirectional interactions between the microbiome and the host in people living with HIV/AIDS
Interventions
Raltegravir 1200 mg (2 tablets x 600mg) once daily plus current ART during 48 weeks from randomization
Placebo (2 tablets of placebo) once daily plus current ART during 48 weeks from randomization.
3-drug antiretroviral treatment including PI/r/c or NNRTI
Sponsors
Study design
Eligibility
Inclusion criteria
1. Age ≥18 years old 2. Documented HIV infection 3. Stable 3-drug antiretroviral treatment including PI/r/c or NNRTI for at least 6 months. 4. Plasma HIV-1 RNA load \<50 copies/mL for at least 12 months. 5. Signed Informed Consent
Exclusion criteria
1. PI/r monotherapy 2. INSTI therapy during the previous 6 months 3. Evidence of previous INSTI resistance 4. Creatine clearance \<50 mL/min 5. Child- Pugh B or C 6. History of active uncontrolled GI disorders or diseases including: 6.1. Major surgery of the GI tract, with the exception of cholecystectomy and appendectomy, in the previous 5 years. 6.2. Any major bowel resection at any time. 6.3. Any chronic digestive disease such as peptic ulcer, Crohn's disease, ulcerative colitis, coeliac disease, confirmed intolerance to lactose or indeterminate colitis. 6.4. Persistent infectious gastroenteritis, colitis or gastritis; persistent or chronic diarrhea of unknown etiology; Clostridium difficile infection (recurrent) or Helicobacter pylori infection (untreated) 6.5. Irritable bowel syndrome (moderate-severe) 6.6. Chronic constipation 6.7. Active proctitis 7. Antibiotic therapy within the previous 2 months 8. In women, pregnancy or breastfeeding\*. * Female subjects of childbearing potential must not be pregnant, not be planning a pregnancy or breast-feeding. Sexually active women must be willing to use two approved methods of contraception (including condoms, diaphragm, spermicides, hormonal methods and/or intrauterine devices) from baseline until the end of the clinical trial. Sexually active men in heterosexual relationships must be willing to use two approved method of contraception with their partners from baseline until the end of the clinical trial. * condom use is considered as an additional method of contraception only and cannot be the only method of contraception used as not been considered an effective method by the Clinical Trial Facilitation Group (CTFG) guidelines.
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Bacterial Gene Richness (Observed Unique Genes). Analysis of the Composition, Structure and Function of the Intestinal Microbiome. * | From baseline to 48 weeks | -\* Structure and composition of the microbiome. DNA will be extracted and purified from fecal samples and cryopreserved at -80ºC until amplification. The purified DNA will be amplified using Illumina-tagged primers to amplify the V3 and V4 16S ribosomal DNA (rDNA) regions. PCR reactions will be performed in triplicate to preserve diversity. Pooled triplicates will be sequenced ensuring adequate sampling depth. -Function of the bacteriome. The gene content will be inferred from the abundance of each bacteria in the intestinal bacteriome according to the 16S rDNA information |
Secondary
| Measure | Time frame | Description |
|---|---|---|
| Association of the Gut Microbiome With Coagulation | From baseline to 48 weeks | D-Dimer |
| Association of the Gut Microbiome With Enterocyte Damage | From baseline to 48 weeks | Intestinal Fatty Acid Binding Protein (I-FABP) |
| Association of the Gut Microbiome With Bacterial Translocation and Monocyte Activation | From baseline to 48 weeks | LPS-binding protein (LBP), soluble CD14 |
| Association of the Gut Microbiome With Inflammation Markers | From baseline to week 48 | IL-6, IP-10 |
| Association of the Gut Microbiome Composition and Richness With CD4 and CD8+ Counts. | Baseline | CD4 and CD8+ counts |
| Other Estimators of Richness and Diversity | From baseline to 48 weeks | Shannon |
| Association of the Gut Microbiome Composition and Richness With CD4/CD8+ Cell Ratio. | Baseline | CD4/CD8+ cell ratio |
| Mean Fluorescence Intensity (MFI) Measure of Maturation, Activation, Exhaustion and Immune Senescence Markers in CD4+ and CD8+ T-cells | Differences at week 48 | CCR7, CD28, CD27, HLA-DR, CD38, PD-1, CD57 |
Countries
Spain
Participant flow
Participants by arm
| Arm | Count |
|---|---|
| Current ART + Raltegravir Current ART + Raltegravir
Raltegravir: Raltegravir 1200 mg (2 tablets x 600mg) once daily plus current ART during 48 weeks from randomization
Current ART: 3-drug antiretroviral treatment including PI/r/c or NNRTI | 37 |
| Current ART + Placebo Current ART + placebo
Placebo: Placebo (2 tablets of placebo) once daily plus current ART during 48 weeks from randomization.
Current ART: 3-drug antiretroviral treatment including PI/r/c or NNRTI | 17 |
| Total | 54 |
Baseline characteristics
| Characteristic | Current ART + Raltegravir | Current ART + Placebo | Total |
|---|---|---|---|
| Age, Categorical <=18 years | 0 Participants | 0 Participants | 0 Participants |
| Age, Categorical >=65 years | 1 Participants | 1 Participants | 2 Participants |
| Age, Categorical Between 18 and 65 years | 36 Participants | 16 Participants | 52 Participants |
| Age, Continuous | 52 years | 52 years | 52 years |
| Ethnicity (NIH/OMB) Hispanic or Latino | 2 Participants | 2 Participants | 4 Participants |
| Ethnicity (NIH/OMB) Not Hispanic or Latino | 21 Participants | 6 Participants | 27 Participants |
| Ethnicity (NIH/OMB) Unknown or Not Reported | 14 Participants | 9 Participants | 23 Participants |
| Region of Enrollment Spain | 37 participants | 17 participants | 54 participants |
| Sex: Female, Male Female | 5 Participants | 1 Participants | 6 Participants |
| Sex: Female, Male Male | 32 Participants | 16 Participants | 48 Participants |
Adverse events
| Event type | EG000 affected / at risk | EG001 affected / at risk |
|---|---|---|
| deaths Total, all-cause mortality | 0 / 37 | 0 / 17 |
| other Total, other adverse events | 1 / 38 | 1 / 18 |
| serious Total, serious adverse events | 0 / 37 | 0 / 17 |
Outcome results
Bacterial Gene Richness (Observed Unique Genes). Analysis of the Composition, Structure and Function of the Intestinal Microbiome. *
-\* Structure and composition of the microbiome. DNA will be extracted and purified from fecal samples and cryopreserved at -80ºC until amplification. The purified DNA will be amplified using Illumina-tagged primers to amplify the V3 and V4 16S ribosomal DNA (rDNA) regions. PCR reactions will be performed in triplicate to preserve diversity. Pooled triplicates will be sequenced ensuring adequate sampling depth. -Function of the bacteriome. The gene content will be inferred from the abundance of each bacteria in the intestinal bacteriome according to the 16S rDNA information
Time frame: From baseline to 48 weeks
| Arm | Measure | Group | Value (MEDIAN) |
|---|---|---|---|
| Current ART + Raltegravir | Bacterial Gene Richness (Observed Unique Genes). Analysis of the Composition, Structure and Function of the Intestinal Microbiome. * | Gene richness at baseline | 768358 Number of unique genes detected |
| Current ART + Raltegravir | Bacterial Gene Richness (Observed Unique Genes). Analysis of the Composition, Structure and Function of the Intestinal Microbiome. * | Gene richness at timepoint 12 | 767756 Number of unique genes detected |
| Current ART + Raltegravir | Bacterial Gene Richness (Observed Unique Genes). Analysis of the Composition, Structure and Function of the Intestinal Microbiome. * | Gene richness at timepoint 24 | 724452 Number of unique genes detected |
| Current ART + Raltegravir | Bacterial Gene Richness (Observed Unique Genes). Analysis of the Composition, Structure and Function of the Intestinal Microbiome. * | Gene richness at timepoint 48 | 718824 Number of unique genes detected |
| Current ART + Placebo | Bacterial Gene Richness (Observed Unique Genes). Analysis of the Composition, Structure and Function of the Intestinal Microbiome. * | Gene richness at timepoint 48 | 860913 Number of unique genes detected |
| Current ART + Placebo | Bacterial Gene Richness (Observed Unique Genes). Analysis of the Composition, Structure and Function of the Intestinal Microbiome. * | Gene richness at baseline | 730732 Number of unique genes detected |
| Current ART + Placebo | Bacterial Gene Richness (Observed Unique Genes). Analysis of the Composition, Structure and Function of the Intestinal Microbiome. * | Gene richness at timepoint 24 | 777452 Number of unique genes detected |
| Current ART + Placebo | Bacterial Gene Richness (Observed Unique Genes). Analysis of the Composition, Structure and Function of the Intestinal Microbiome. * | Gene richness at timepoint 12 | 808911 Number of unique genes detected |
Association of the Gut Microbiome Composition and Richness With CD4 and CD8+ Counts.
CD4 and CD8+ counts
Time frame: Baseline
| Arm | Measure | Group | Value (MEDIAN) |
|---|---|---|---|
| Current ART + Raltegravir | Association of the Gut Microbiome Composition and Richness With CD4 and CD8+ Counts. | CD4+ | 696 cells/mm^3 of blood |
| Current ART + Raltegravir | Association of the Gut Microbiome Composition and Richness With CD4 and CD8+ Counts. | CD8+ | 787 cells/mm^3 of blood |
| Current ART + Placebo | Association of the Gut Microbiome Composition and Richness With CD4 and CD8+ Counts. | CD4+ | 664 cells/mm^3 of blood |
| Current ART + Placebo | Association of the Gut Microbiome Composition and Richness With CD4 and CD8+ Counts. | CD8+ | 668 cells/mm^3 of blood |
Association of the Gut Microbiome Composition and Richness With CD4/CD8+ Cell Ratio.
CD4/CD8+ cell ratio
Time frame: Baseline
Population: CD4+/CD8+ ratio
| Arm | Measure | Value (MEDIAN) |
|---|---|---|
| Current ART + Raltegravir | Association of the Gut Microbiome Composition and Richness With CD4/CD8+ Cell Ratio. | 1.10 Ratio |
| Current ART + Placebo | Association of the Gut Microbiome Composition and Richness With CD4/CD8+ Cell Ratio. | 0.91 Ratio |
Association of the Gut Microbiome With Bacterial Translocation and Monocyte Activation
LPS-binding protein (LBP), soluble CD14
Time frame: From baseline to 48 weeks
| Arm | Measure | Group | Value (MEDIAN) |
|---|---|---|---|
| Current ART + Raltegravir | Association of the Gut Microbiome With Bacterial Translocation and Monocyte Activation | LBP at baseline | 4238 ng/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Bacterial Translocation and Monocyte Activation | LBP at week 12 | 4478 ng/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Bacterial Translocation and Monocyte Activation | LBP at week 24 | 3879 ng/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Bacterial Translocation and Monocyte Activation | LBP at week 48 | 4172 ng/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Bacterial Translocation and Monocyte Activation | sCD14 at baseline | 2.41 ng/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Bacterial Translocation and Monocyte Activation | sCD14 at week 12 | 2.5 ng/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Bacterial Translocation and Monocyte Activation | sCD14 at week 24 | 2.36 ng/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Bacterial Translocation and Monocyte Activation | sCD14 at week 48 | 2.48 ng/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Bacterial Translocation and Monocyte Activation | sCD14 at week 48 | 2.5 ng/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Bacterial Translocation and Monocyte Activation | LBP at baseline | 4274 ng/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Bacterial Translocation and Monocyte Activation | sCD14 at baseline | 2.63 ng/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Bacterial Translocation and Monocyte Activation | LBP at week 12 | 4313 ng/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Bacterial Translocation and Monocyte Activation | sCD14 at week 24 | 2.62 ng/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Bacterial Translocation and Monocyte Activation | LBP at week 24 | 4221 ng/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Bacterial Translocation and Monocyte Activation | sCD14 at week 12 | 2.61 ng/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Bacterial Translocation and Monocyte Activation | LBP at week 48 | 4203 ng/ml |
Association of the Gut Microbiome With Coagulation
D-Dimer
Time frame: From baseline to 48 weeks
| Arm | Measure | Group | Value (MEDIAN) |
|---|---|---|---|
| Current ART + Raltegravir | Association of the Gut Microbiome With Coagulation | D-Dimer at baseline | 1.99 ug/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Coagulation | D-Dimer at week 12 | 2.155 ug/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Coagulation | D-Dimer at week 24 | 2.14 ug/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Coagulation | D-Dimer at week 48 | 2.22 ug/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Coagulation | D-Dimer at week 48 | 2.18 ug/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Coagulation | D-Dimer at baseline | 2.1 ug/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Coagulation | D-Dimer at week 24 | 2.22 ug/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Coagulation | D-Dimer at week 12 | 2.19 ug/ml |
Association of the Gut Microbiome With Enterocyte Damage
Intestinal Fatty Acid Binding Protein (I-FABP)
Time frame: From baseline to 48 weeks
| Arm | Measure | Group | Value (MEDIAN) |
|---|---|---|---|
| Current ART + Raltegravir | Association of the Gut Microbiome With Enterocyte Damage | IFABP at baseline | 0.92 ng/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Enterocyte Damage | IFABP at week 12 | 0.94 ng/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Enterocyte Damage | IFABP at week 24 | 1.04 ng/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Enterocyte Damage | IFABP at week 48 | 0.81 ng/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Enterocyte Damage | IFABP at week 48 | 1.06 ng/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Enterocyte Damage | IFABP at baseline | 0.69 ng/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Enterocyte Damage | IFABP at week 24 | 0.76 ng/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Enterocyte Damage | IFABP at week 12 | 0.82 ng/ml |
Association of the Gut Microbiome With Inflammation Markers
IL-6, IP-10
Time frame: From baseline to week 48
| Arm | Measure | Group | Value (MEDIAN) |
|---|---|---|---|
| Current ART + Raltegravir | Association of the Gut Microbiome With Inflammation Markers | IL-6 at baseline | 1.32 pg/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Inflammation Markers | IL-6 at week 12 | 1.52 pg/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Inflammation Markers | IL-6 at week 24 | 1.25 pg/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Inflammation Markers | IL-6 at week 48 | 1.28 pg/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Inflammation Markers | IP-10 at baseline | 102.99 pg/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Inflammation Markers | IP-10 at week 12 | 104.7 pg/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Inflammation Markers | IP-10 at week 24 | 104.6 pg/ml |
| Current ART + Raltegravir | Association of the Gut Microbiome With Inflammation Markers | IP-10 at week 48 | 106.43 pg/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Inflammation Markers | IP-10 at week 48 | 108.55 pg/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Inflammation Markers | IL-6 at baseline | 1.53 pg/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Inflammation Markers | IP-10 at baseline | 97.44 pg/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Inflammation Markers | IL-6 at week 12 | 1.48 pg/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Inflammation Markers | IP-10 at week 24 | 99.58 pg/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Inflammation Markers | IL-6 at week 24 | 1.38 pg/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Inflammation Markers | IP-10 at week 12 | 108.6 pg/ml |
| Current ART + Placebo | Association of the Gut Microbiome With Inflammation Markers | IL-6 at week 48 | 1.3 pg/ml |
Mean Fluorescence Intensity (MFI) Measure of Maturation, Activation, Exhaustion and Immune Senescence Markers in CD4+ and CD8+ T-cells
CCR7, CD28, CD27, HLA-DR, CD38, PD-1, CD57
Time frame: Differences at week 48
| Arm | Measure | Group | Value (MEDIAN) |
|---|---|---|---|
| Current ART + Raltegravir | Mean Fluorescence Intensity (MFI) Measure of Maturation, Activation, Exhaustion and Immune Senescence Markers in CD4+ and CD8+ T-cells | CD28 | 8051 MFI |
| Current ART + Raltegravir | Mean Fluorescence Intensity (MFI) Measure of Maturation, Activation, Exhaustion and Immune Senescence Markers in CD4+ and CD8+ T-cells | CD27 | 26002 MFI |
| Current ART + Raltegravir | Mean Fluorescence Intensity (MFI) Measure of Maturation, Activation, Exhaustion and Immune Senescence Markers in CD4+ and CD8+ T-cells | HLA-DR | 954 MFI |
| Current ART + Raltegravir | Mean Fluorescence Intensity (MFI) Measure of Maturation, Activation, Exhaustion and Immune Senescence Markers in CD4+ and CD8+ T-cells | CD38 | 165 MFI |
| Current ART + Raltegravir | Mean Fluorescence Intensity (MFI) Measure of Maturation, Activation, Exhaustion and Immune Senescence Markers in CD4+ and CD8+ T-cells | PD-1 | 1074 MFI |
| Current ART + Raltegravir | Mean Fluorescence Intensity (MFI) Measure of Maturation, Activation, Exhaustion and Immune Senescence Markers in CD4+ and CD8+ T-cells | CD57 | 239 MFI |
| Current ART + Placebo | Mean Fluorescence Intensity (MFI) Measure of Maturation, Activation, Exhaustion and Immune Senescence Markers in CD4+ and CD8+ T-cells | PD-1 | 1246 MFI |
| Current ART + Placebo | Mean Fluorescence Intensity (MFI) Measure of Maturation, Activation, Exhaustion and Immune Senescence Markers in CD4+ and CD8+ T-cells | CD28 | 8076 MFI |
| Current ART + Placebo | Mean Fluorescence Intensity (MFI) Measure of Maturation, Activation, Exhaustion and Immune Senescence Markers in CD4+ and CD8+ T-cells | CD38 | 130 MFI |
| Current ART + Placebo | Mean Fluorescence Intensity (MFI) Measure of Maturation, Activation, Exhaustion and Immune Senescence Markers in CD4+ and CD8+ T-cells | CD27 | 27604 MFI |
| Current ART + Placebo | Mean Fluorescence Intensity (MFI) Measure of Maturation, Activation, Exhaustion and Immune Senescence Markers in CD4+ and CD8+ T-cells | CD57 | 226 MFI |
| Current ART + Placebo | Mean Fluorescence Intensity (MFI) Measure of Maturation, Activation, Exhaustion and Immune Senescence Markers in CD4+ and CD8+ T-cells | HLA-DR | 990 MFI |
Other Estimators of Richness and Diversity
Shannon
Time frame: From baseline to 48 weeks
Population: The Shannon Diversity Index (SDI), also known as Shannon-Weaver or Shannon-Wiener Index, is a commonly used metric in ecology and microbiome research to quantify microbial diversity within a sample (alpha diversity). It takes into account both richness (the number of different species and evenness (the relative abundance distribution of species). Higher SDI values reflect greater microbial diversity, while lower SDI values may indicate dysbiosis or a disrupted microbial community.
| Arm | Measure | Group | Value (MEDIAN) |
|---|---|---|---|
| Current ART + Raltegravir | Other Estimators of Richness and Diversity | Shannon at week 24 | 2.65 Shannon index |
| Current ART + Raltegravir | Other Estimators of Richness and Diversity | Shannon at week 12 | 2.91 Shannon index |
| Current ART + Raltegravir | Other Estimators of Richness and Diversity | Shannon at week 48 | 2.63 Shannon index |
| Current ART + Raltegravir | Other Estimators of Richness and Diversity | Shannon at baseline | 2.90 Shannon index |
| Current ART + Placebo | Other Estimators of Richness and Diversity | Shannon at week 48 | 2.97 Shannon index |
| Current ART + Placebo | Other Estimators of Richness and Diversity | Shannon at baseline | 2.56 Shannon index |
| Current ART + Placebo | Other Estimators of Richness and Diversity | Shannon at week 24 | 2.56 Shannon index |
| Current ART + Placebo | Other Estimators of Richness and Diversity | Shannon at week 12 | 2.89 Shannon index |