The purpose of the study was to evaluate whether the probiotic Visbiome Extra Strength reduces inflammation in HIV-infected men and women when compared to a placebo (inactive medication like a dummy pill). The study evaluated whether taking Visbiome Extra Strength by mouth for 24 weeks was safe and well-tolerated for HIV-infected persons on antiretroviral therapy (ART). Probiotics are germs such as yeast or bacteria that are found in food and supplements that are used to improve the health of the digestive system. Many people refer to probiotics as "helpful bacteria." These bacteria live in the body and help the body work normally. In some medical conditions, including HIV infection, helpful bacteria are replaced with bacteria that can change the normal intestinal function and increase inflammation. The investigators tested whether giving a probiotic restored normal intestinal function and decreased inflammation.
This was a phase II, randomized, double-blind, two-arm study to evaluate whether there is a significant change in sCD14 after 24 weeks of probiotic Visbiome Extra Strength (ES) therapy, and to determine the safety and tolerability of this agent in HIV-infected participants on stable antiretroviral therapy (ART). Participants were randomized 1:1 to Visbiome ES and placebo arms. Both arms initiated study treatment at Week 2 and took 1 sachet per day for the first 2 weeks and then 1 sachet twice daily for the next 22 weeks. All participants were followed for an additional 12 weeks off study product. The study clinic visits included Entry (Week 0), and Weeks 2, 6, 14, 25, 26, and 38. Plasma for the primary outcome was collected at Weeks 0, 2, 25, and 26. The evaluations of safety (clinical assessment for signs and symptoms, diagnoses, and laboratory tests) were done at Weeks 2, 6, 14, 26, and 38. Currently, the results are entered for the primary outcome measure and select secondary outcomes only. The results on the remaining secondary outcomes will be posted when they become available.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
DOUBLE
Enrollment
93
From week 2 to 4, participant will receive one sachet orally daily. From week 4 to 26, participant will receive one sachet orally twice daily.
From week 2 to 4, participant will receive one sachet orally daily. From week 4 to 26, participant will receive one sachet orally twice daily.
31788 Alabama CRS
Birmingham, Alabama, United States
UCLA CARE Center CRS (601)
Los Angeles, California, United States
701 University of California, San Diego AntiViral Research Center CRS
San Diego, California, United States
801 University of California, San Francisco HIV/AIDS CRS
San Francisco, California, United States
University of Colorado Hospital CRS (6101)
Aurora, Colorado, United States
Northwestern University CRS (2701)
Chicago, Illinois, United States
Rush University Medical Center (2702)
Chicago, Illinois, United States
Johns Hopkins Adult AIDS CRS (201)
Baltimore, Maryland, United States
Washington University CRS (2101)
St Louis, Missouri, United States
31786 New Jersey Medical School Clinical Research Center CRS
Newark, New Jersey, United States
...and 15 more locations
Change in sCD14 From Baseline to Week 25/26
Baseline is defined as the average of the Entry and Week 2 values. Week 25/26 is defined as the average of the Week 25 and Week 26 values. Absolute change was calculated as the value at Week 25/26 minus the value at Baseline.
Time frame: Weeks 0, 2, 25, and 26
Change in IL-6 From Week 2 to Week 26
IL-6 data are not available as of June, 2018. These data are based on assays which are to be tested in batch to minimize variability. Due to batch testing, shipment of samples for testing could not begin until after the study follow-up completion, which was 3 months after the primary completion date. Please note that these secondary outcomes were not included in the primary analysis report. There are many outcomes in this study and the labs had to give priority to the assays planned to be included in the primary manuscript.
Time frame: Weeks 2 and 26
Change in IP-10 From Week 2 to Week 26
All values were log10 transformed prior to calculating change and conducting analyses. Absolute change was calculated as the value at Week 26 minus the value at Week 2. Mean changes were exponentiated to be back on the untransformed scale and corresponds to a mean fold change.
Time frame: Weeks 2 and 26
Change in sCD163 From Week 2 to Week 26
sCD163 data are not available as of June, 2018. These data are based on assays which are to be tested in batch to minimize variability. Due to batch testing, shipment of samples for testing could not begin until after the study follow-up completion, which was 3 months after the primary completion date. Please note that these secondary outcomes were not included in the primary analysis report. There are many outcomes in this study and the labs had to give priority to the assays planned to be included in the primary manuscript.
Time frame: Weeks 2 and 26
Change in sTNF-RI From Week 2 to Week 26
sTNF-RI data are not available as of June, 2018. These data are based on assays which are to be tested in batch to minimize variability. Due to batch testing, shipment of samples for testing could not begin until after the study follow-up completion, which was 3 months after the primary completion date. Please note that these secondary outcomes were not included in the primary analysis report. There are many outcomes in this study and the labs had to give priority to the assays planned to be included in the primary manuscript.
Time frame: Weeks 2 and 26
Change in Oxidized LDL From Week 2 to Week 26
Oxidized LDL data are not available as of June, 2018. These data are based on assays which are to be tested in batch to minimize variability. Due to batch testing, shipment of samples for testing could not begin until after the study follow-up completion, which was 3 months after the primary completion date. Please note that these secondary outcomes were not included in the primary analysis report. There are many outcomes in this study and the labs had to give priority to the assays planned to be included in the primary manuscript.
Time frame: Weeks 2 and 26
Change in Kynurenine to Tryptophan Ratio From Week 2 to Week 26
Fold change was calculated as the value at Week 26 divided by the value at Week 2.
Time frame: Weeks 2 and 26
Change in D-dimer From Week 2 to Week 26
All values were log10 transformed prior to calculating change and conducting analyses. Absolute change was calculated as the value at Week 26 minus the value at Week 2. Mean changes were exponentiated to be back on the untransformed scale and corresponds to a mean fold change.
Time frame: Weeks 2 and 26
Change in LPS From Week 2 to Week 26
LPS data are not available as of June, 2018. These data are based on assays which are to be tested in batch to minimize variability. Due to batch testing, shipment of samples for testing could not begin until after the study follow-up completion, which was 3 months after the primary completion date. Please note that these secondary outcomes were not included in the primary analysis report. There are many outcomes in this study and the labs had to give priority to the assays planned to be included in the primary manuscript.
Time frame: Weeks 2 and 26
Change in LBP From Week 2 to Week 26
LBP data are not available as of June, 2018. These data are based on assays which are to be tested in batch to minimize variability. Due to batch testing, shipment of samples for testing could not begin until after the study follow-up completion, which was 3 months after the primary completion date. Please note that these secondary outcomes were not included in the primary analysis report. There are many outcomes in this study and the labs had to give priority to the assays planned to be included in the primary manuscript.
Time frame: Weeks 2 and 26
Change in CD4+ Cell Count From Week 2 to Week 26.
Absolute change was calculated as the value at Week 26 minus the value at Week 2.
Time frame: Weeks 2 and 26
Change in CD4+/CD8+ Ratio From Week 2 to Week 26.
Fold change was calculated as the value at Week 26 divided by the value at Week 2.
Time frame: Weeks 2 and 26
Change in %CD14++CD16- From Week 2 to Week 26.
Absolute change was calculated as the value at Week 26 minus the value at Week 2.
Time frame: Weeks 2 and 26
Change in %CD14++CD16+ From Week 2 to Week 26
Absolute change was calculated as the value at Week 26 minus the value at Week 2.
Time frame: Weeks 2 and 26
Change in %CD14lowCD16hi From Week 2 to Week 26
%CD14lowCD16hi data are not available as of June, 2018. These data are based on assays which are to be tested in batch to minimize variability. Due to batch testing, shipment of samples for testing could not begin until after the study follow-up completion, which was 3 months after the primary completion date. Please note that these secondary outcomes were not included in the primary analysis report. There are many outcomes in this study and the labs had to give priority to the assays planned to be included in the primary manuscript.
Time frame: Weeks 2 and 26
Change in %CD4+CD38+ From Week 2 to Week 26.
%CD4+CD38+ data are not available as of June, 2018. These data are based on assays which are to be tested in batch to minimize variability. Due to batch testing, shipment of samples for testing could not begin until after the study follow-up completion, which was 3 months after the primary completion date. Please note that these secondary outcomes were not included in the primary analysis report. There are many outcomes in this study and the labs had to give priority to the assays planned to be included in the primary manuscript.
Time frame: Weeks 2 and 26
Change in %CD4+HLA-DR+ From Week 2 to Week 26.
%CD4+HLA-DR+ data are not available as of June, 2018. These data are based on assays which are to be tested in batch to minimize variability. Due to batch testing, shipment of samples for testing could not begin until after the study follow-up completion, which was 3 months after the primary completion date. Please note that these secondary outcomes were not included in the primary analysis report. There are many outcomes in this study and the labs had to give priority to the assays planned to be included in the primary manuscript.
Time frame: Weeks 2 and 26
Change in %CD4+CD38+HLA-DR+ From Week 2 to Week 26.
Absolute change was calculated as the value at Week 26 minus the value at Week 2.
Time frame: Weeks 2 and 26
Change in %CD8+CD38+ From Week 2 to Week 26.
%CD8+CD38+ data are not available as of June, 2018. These data are based on assays which are to be tested in batch to minimize variability. Due to batch testing, shipment of samples for testing could not begin until after the study follow-up completion, which was 3 months after the primary completion date. Please note that these secondary outcomes were not included in the primary analysis report. There are many outcomes in this study and the labs had to give priority to the assays planned to be included in the primary manuscript.
Time frame: Weeks 2 and 26
Change in %CD8+HLA-DR+ From Week 2 to Week 26.
%CD8+HLA-DR+ data are not available as of June, 2018. These data are based on assays which are to be tested in batch to minimize variability. Due to batch testing, shipment of samples for testing could not begin until after the study follow-up completion, which was 3 months after the primary completion date. Please note that these secondary outcomes were not included in the primary analysis report. There are many outcomes in this study and the labs had to give priority to the assays planned to be included in the primary manuscript.
Time frame: Weeks 2 and 26
Change in %CD8+CD38+HLA-DR+ From Week 2 to Week 26.
Absolute change was calculated as the value at Week 26 minus the value at Week 2.
Time frame: Weeks 2 and 26
Change in %CD4+CD28-CD57+ From Week 2 to Week 26.
Absolute change was calculated as the value at Week 26 minus the value at Week 2.
Time frame: Weeks 2 and 26
Change in %CD8+CD28-CD57+ From Week 2 to Week 26.
Absolute change was calculated as the value at Week 26 minus the value at Week 2.
Time frame: Weeks 2 and 26
Change in Chao1 Richness Index From Week 2 to Week 26.
Absolute change was calculated as the value at Week 26 minus the value at Week 2. Chao1 is a diversity index that reflects how many different quantifiable types (species, individuals, items, etc…) there are in a dataset (see Chao reference). Chao1 diversity is a richness measure which quantifies how many different types there are in a given dataset. The Chao 1 index can range from 1 to infinity as it is constrained only by the number of types defined as measurable. The greater a value is, the more diverse it is but only in direct comparison to groups considering the same parameters. That is, diversity indices are relative to the community (cohort or ecosystem) studied in part due to the definition of the "types" that are considered.
Time frame: Weeks 2 and 26
Change in Shannon Diversity Index From Week 2 to Week 26.
Absolute change was calculated as the value at Week 26 minus the value at Week 2. Shannon is a diversity index that reflects how many different quantifiable types (species, individuals, items, etc…) there are in a dataset (see Lemos and Magurran references). The Shannon index is an estimator of richness and evenness. It quantifies uncertainty (entropy) within a dataset. The Shannon Index ranges from 0-5. The greater a value is, the more diverse it is but only in direct comparison to groups considering the same parameters. That is, diversity indices are relative to the community (cohort or ecosystem) studied in part due to the definition of the "types" that are considered.
Time frame: Weeks 2 and 26
Change in Chao1 Richness Index From Week 26 to Week 38.
Absolute change was calculated as the value at Week 38 minus the value at Week 26. Chao1 is a diversity index that reflects how many different quantifiable types (species, individuals, items, etc…) there are in a dataset (see Chao reference). Chao1 diversity is a richness measure which quantifies how many different types there are in a given dataset. The Chao 1 index can range from 1 to infinity as it is constrained only by the number of types defined as measurable. The greater a value is, the more diverse it is but only in direct comparison to groups considering the same parameters. That is, diversity indices are relative to the community (cohort or ecosystem) studied in part due to the definition of the "types" that are considered.
Time frame: Weeks 26 and 38
Change in Shannon Diversity Index From Week 26 to Week 38.
Absolute change was calculated as the value at Week 38 minus the value at Week 26. Shannon is a diversity index that reflects how many different quantifiable types (species, individuals, items, etc…) there are in a dataset (see Lemos and Magurran references). The Shannon index is an estimator of richness and evenness. It quantifies uncertainty (entropy) within a dataset. The Shannon Index ranges from 0-5. The greater a value is, the more diverse it is but only in direct comparison to groups considering the same parameters. That is, diversity indices are relative to the community (cohort or ecosystem) studied in part due to the definition of the "types" that are considered.
Time frame: Weeks 26 and 38
Change in I-FABP From Week 2 to Week 26.
Absolute change was calculated as the value at Week 26 minus the value at Week 2.
Time frame: Weeks 2 and 26
Safety
Summary of the highest adverse event grade (0-5) for each participant. Protocol definition of Adverse Events: 1) signs and symptoms Grade ≥3 and any that led to a change in treatment regardless of grade; 2) new diagnoses; 3) Grade ≥3 lab values and any that led to a change in treatment or were associated with a diagnosis were recorded, regardless of grade. DAIDS AE Grading Table, Version 2.0 was used.
Time frame: Treatment dispensation to Week 38
Tolerability
Tolerability was successfully completing the protocol-defined treatment period.
Time frame: Treatment dispensation to Week 38
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