HIV is characterized by frequent immune system activation. Early in the course of infection the body establishes an immune activation "set point" related to the amount of HIV in the blood stream. This set point affects the rate of CD4 cell loss. Without CD4 cells, or with very low levels of CD4 cells, the body cannot fight off illness. This is known as immunodeficiency. If left untreated HIV can lead to extreme immunodeficiency and AIDS. Evidence suggests that by decreasing the rate of immune system activation, immune deficiency progression could be prevented. The purpose of this study is to learn how well chloroquine can reduce the level of immune activation and to test the safety and tolerance of chloroquine in people infected with HIV.
HIV is characterized by persistent immune system activation, and early in the course of infection the body establishes an immune activation "set point" related to the amount of HIV in the blood stream. This set point affects the rate of CD4 cell loss. Without CD4 cells, or with very low levels of CD4 cells, the body cannot fight off illness. This is known as immunodeficiency. If left untreated HIV can lead to extreme immunodeficiency and AIDS. Immune system activation includes activating the CD8 cells. These cells attack body cells infected with viruses. Because of this, CD4 cells infected with HIV are frequently destroyed by CD8 cells. The purpose of this study is to learn how well chloroquine reduces the level of activation of CD8 cells in people infected with HIV. Increased activation of CD8 cells is thought to lead to a more severe path of disease in HIV infection. The constant immune activation observed in HIV- infected patients has also been linked to higher levels of byproducts from certain naturally occurring bacteria found in the gut that are known to be immune stimulants. By decreasing the stimulation from these byproducts with chloroquine treatment, HIV disease may be slowed. The purpose of this study was to learn how well chloroquine reduces the level of activation of CD8 cells and lowers the levels of bacteria byproducts in people infected with HIV, either off antiretroviral therapy (ART) (protocol version 1.0 dated December 17, 2008) or on-ART (protocol version 2.0 dated October 1, 2010). The off-ART (Arms A and B) and on-ART (Arms C and D) participants were enrolled during different time periods, and the study was designed to analyze the two study populations separately. This study also looked at how well chloroquine was tolerated and its safety in HIV- infected participants. Off-ART participants in the study were randomized with equal probability to one of two treatment arms: Arm A: Participants received 12 weeks of chloroquine treatment followed by 12 weeks of placebo Arm B: Participants received 12 weeks of placebo followed by 12 weeks of chloroquine On-ART participants in the study were randomized with equal probability to one of two treatment arms: Arm C: Participants received 12 weeks of chloroquine treatment followed by 12 weeks of placebo Arm D: Participants received 12 weeks of placebo followed by 12 weeks of chloroquine Study treatment was given once a day for a full 24 weeks. There was an additional 4 weeks of follow-up for purposes of safety. After treatment has started, participants were asked to come to the clinic on Weeks 4, 10, 12, 16, 22, and 24. At each visit participants were given enough study treatment to last until the next visit. Each visit lasted between 30 and 60 minutes. At most visits, participants had a physical exam, answered questions about any medications they were taking and how they are feeling, and had blood drawn for safety to assess CD4/CD8 cell counts and viral load. Some additional blood were also stored for immunology testing. At some visits, participants were asked questions about their medication and medical history, had pupils dilated, had a hearing test, and had an electrocardiogram (EKG). Some visits required participants to arrive fasting. Pregnancy tests were also conducted if the participant is able to become pregnant or if pregnancy was suspected.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
QUADRUPLE
Enrollment
70
Taken orally, once daily, at a dose of 250 mg for 12 weeks.
Taken orally, once daily for 12 weeks.
Alabama Therapeutics CRS (5801)
Birmingham, Alabama, United States
Ucsd, Avrc Crs (701)
San Diego, California, United States
University of Colorado Hospital CRS (6101)
Aurora, Colorado, United States
Georgetown University CRS (GU CRS) (1008)
Washington D.C., District of Columbia, United States
Johns Hopkins Adult AIDS CRS (201)
Baltimore, Maryland, United States
Massachusetts General Hospital ACTG CRS (101)
Boston, Massachusetts, United States
Washington University CRS (2101)
St Louis, Missouri, United States
Cornell CRS (7804)
New York, New York, United States
Unc Aids Crs (3201)
Chapel Hill, North Carolina, United States
Univ. of Cincinnati CRS (2401)
Cincinnati, Ohio, United States
...and 5 more locations
Change in Percent CD8 HLA-DR+/CD38+ From Baseline to Week 12
The baseline percent CD8 HLA-DR+/CD38+ (mean of pre-entry and entry percent CD8 HLA-DR+/CD38+) was subtracted from the mean of week 10 and week 12 percent CD8 HLA-DR+/CD38+.
Time frame: At pre-entry, entry, weeks 10 and 12
Change in Percent CD8 HLA-DR+/CD38+ From Start to End of the 12-week Chloroquine Treatment Period
For Arm A: Chloroquine then Placebo for off-ART participants and Arm C: Chloroquine then Placebo for on-ART participants, the baseline percent CD8 HLA-DR+/CD38+ (mean of pre-entry and entry percent CD8 HLA-DR+/CD38+) was subtracted from the mean of week 10 and week 12 percent CD8 HLA-DR+/CD38+. For Arm B: Placebo then Chloroquine for off-ART participants and Arm D: Placebo then Chloroquine for on-ART participants, the mean of week 10 and week 12 percent CD8 HLA-DR+/CD38+ was subtracted from the mean of week 22 and week 24 percent CD8 HLA-DR+/CD38+.
Time frame: For Arms A and C: Pre-entry, entry, weeks 10 and 12. For Arms B and D: Weeks 10, 12, 22 and 24
Change in Percent CD8 HLA-DR+/CD38+ From Week 12 to Week 24
The mean of week 10 and week 12 percent CD8 HLA-DR+/CD38+ is subtracted from the mean of the week 22 and week 24 percent CD8 HLA-DR+/CD38+
Time frame: At Weeks 10, 12, 22 and 24
Change in Percent CD8 HLA-DR+/CD38+ From Baseline to Week 24 in Arm A and Arm C
The baseline percent CD8 HLA-DR+/CD38+ (mean of pre-entry and entry percent CD8 HLA-DR+/CD38+) was subtracted from the mean of week 22 and week 24 percent CD8 HLA-DR+/CD38+.
Time frame: At Pre-entry, entry, Weeks 22 and 24
Change in Total CD4 T Cell Count From Baseline to Week 12
Baseline CD4 count (mean of pre-entry and entry CD4 count) is subtracted from the mean of week 10 and week 12 CD4 count
Time frame: At pre-entry, entry, weeks 10 and 12
Number of Participants With Events Grade 3 or Higher
Events included signs and symptoms, laboratory abnormalities and/or clinical events grade 3 or higher which were described by site clinician blinded to the treatment arm as definitely or possibly related to the study treatment.
Time frame: From start of study treatment to study completion at week 28
HIV-1 RNA Copies/mL at Study Entry for Off-ART Participants
Results reported are for HIV-1 RNA (copies/mL) at study entry for off-ART participants.
Time frame: At Entry
HIV-1 RNA Copies/mL at Weeks 12 and 24 for Off-ART Participants
Results reported are for HIV-1 RNA (copies/mL) at week 12 and week 24 for off-ART participants.
Time frame: At weeks 12 and 24
HIV-1 RNA Copies/mL at Study Entry for On-ART Participants
Results reported are for HIV-1 RNA at study entry for on-ART participants.
Time frame: At Entry
HIV-1 RNA Copies/mL at Week 12 for On-ART Participants
Results reported are for HIV-1 RNA at week 12 for on-ART participants.
Time frame: At week 12
HIV-1 RNA Copies/mL at Week 24 for On-ART Participants
Results reported are for HIV-1 RNA at week 24 for on-ART participants.
Time frame: At week 24
Percent CD8 CD38+ at Baseline
Baseline CD8 CD38+ is computed as the mean of pre-entry and entry CD8 CD38+.
Time frame: At pre-entry and entry
Percent CD8 CD38+ at Week 12
Results reported are the week 12 percentage of CD8 expressing CD38+.
Time frame: At Week 12
Percent CD8 CD38+ at Week 24
Results reported are the week 24 percentage of CD8 expressing CD38+.
Time frame: At Week 24
Percent CD4 HLA-DR+/CD38+ at Baseline
Baseline CD4 HLA-DR+/CD38+ is computed as the mean of pre-entry and entry CD4 HLA-DR+/CD38+.
Time frame: At pre-entry and entry
Percent CD4 HLA-DR+/CD38+ at Week 12
Results reported are the week 12 percentage of CD4 expressing HLA-DR+/CD38+.
Time frame: At Week 12
Percent CD4 HLA-DR+/CD38+ at Week 24
Results reported are the week 24 percentage of CD4 expressing HLA-DR+/CD38+.
Time frame: At Week 24
IL-6, Soluble TNF-rI (sTNF-rI) and D-dimer at Baseline
Baseline IL-6, sTNF-rI and D-dimer were computed as the mean of pre-entry and entry IL-6, sTNF-rI and D-dimer, respectively.
Time frame: At pre-entry and entry
IL-6, Soluble TNF-rI (sTNF-rI) and D-dimer at Week 12
Results reported are the week 12 IL-6, sTNF-rI and D-dimer.
Time frame: At week 12
IL-6, Soluble TNF-rI (sTNF-rI) and D-dimer at Week 24
Results reported are the week 24 IL-6, sTNF-rI and D-dimer.
Time frame: At week 24
Soluble CD14 (sCD14) at Baseline
Baseline sCD14 was computed as the mean of pre-entry and entry sCD14.
Time frame: At pre-entry and entry
Soluble CD14 (sCD14) at Week 12
Results reported are the week 12 sCD14.
Time frame: At week 12
Soluble CD14 (sCD14) at Week 24
Results reported are the week 24 sCD14.
Time frame: At week 24
Fasting Lipopolysaccharides (LPS) at Entry
Results reported are for entry fasting LPS.
Time frame: At entry
Fasting Lipopolysaccharides (LPS) at Week 12
Results reported are the week 12 fasting LPS.
Time frame: At week 12
Fasting Lipopolysaccharides (LPS) at Week 24
Results reported are the week 24 fasting LPS.
Time frame: At week 24
Percent Activation Levels of Plasmacytoid Dendritic Cells (pDC) and Myeloid Dendritic Cells (mDC) at Baseline
Baseline percent activation levels of pDC were computed as the mean of pre-entry and entry percent activation levels of pDC. Similarly, baseline percent activation levels of mDC were computed as the mean of pre-entry and entry percent activation levels of mDC.
Time frame: At pre-entry and entry
Percent Activation Levels of Plasmacytoid Dendritic Cells (pDC) and Myeloid Dendritic Cells (mDC) at Week 12
Results reported are the week 12 percent activation levels of pDC and mDC.
Time frame: At week 12
Percent Activation Levels of Plasmacytoid Dendritic Cells (pDC) and Myeloid Dendritic Cells (mDC) at Week 24
Results reported are the week 24 percent activation levels of pDC and mDC.
Time frame: At week 24
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