HIV-infected people can have an increase in inflammation in their body organs, even after taking anti-HIV medicines. Sevelamer carbonate is used to bind phosphate in dialysis patients. It can also bind endotoxin in the gut and lowers endotoxin levels in the blood of dialysis patients. Sevelamer carbonate decreases the inflammation endotoxin causes in dialysis patients. A5296 is a phase II, single-arm study to evaluate the effect of 8 weeks of sevelamer carbonate administration on markers of microbial translocation and T-cell activation in the blood in chronically HIV-infected subjects not receiving ART.
HIV-infected people can have an increase in inflammation in their body organs, even after taking anti-HIV medicines. Inflammation is a normal body reaction to any infection. However, if inflammation lasts a long time like in HIV infection, it may lead to complications, such as heart disease, cancer, liver disease, and problems with thinking. Also, HIV-infected people with high inflammation have lower CD4+ T-cell counts (cells that fight infection). Many HIV researchers are studying the harmful effects of this prolonged inflammation and possible ways to prevent these complications. The increase in inflammation in HIV-infected people may be caused by HIV or by other factors such as parts of bacteria. These bacterial pieces, called endotoxins, do not cause harm in the intestine (gut). However, in HIV infection, there is damage to the gut that allows endotoxins to cross from the gut into the blood. These endotoxins then cause inflammation in the body. New research is focusing on strategies to reduce the levels of endotoxin as a way to decrease inflammation. A drug called sevelamer carbonate is used to bind phosphate in dialysis patients. However, sevelamer carbonate also binds endotoxin in the gut and lowers endotoxin levels in the blood of dialysis patients. Sevelamer carbonate also decreases the inflammation endotoxin causes in dialysis patients. This study will see if sevelamer carbonate can have the same effects in HIV-infected patients. A5296 is a phase II, single-arm study to evaluate the effect of 8 weeks of sevelamer carbonate administration on markers of microbial translocation as well as monocyte and T-cell activation in the blood in chronically HIV-infected subjects with CD4+ T-cell count ≥ 400 cells/mm3 not receiving ART. This study enrolled 40 subjects. To assess whether there is a persistent effect of study drug, subjects were observed for an additional 8 weeks off sevelamer carbonate and changes in biomarkers were monitored. As A5296 is a phase II study of biologic activity, the primary and secondary analyses are as-treated, limited to subjects who have data for baseline and week 8 and who remain on study treatment through week 8. For any subject who initiated antiretroviral treatment (ART), analyses only included data collected prior to the time ART was started.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
40
Patients will be administered two 800 mg tablets of Sevelamer carbonate orally three times a day for 8 weeks.
Alabama Therapeutics CRS (5801)
Birmingham, Alabama, United States
UCLA CARE Center CRS (601)
Los Angeles, California, United States
Ucsf Aids Crs (801)
San Francisco, California, United States
Harbor-UCLA Med. Ctr. CRS (603)
Torrance, California, United States
University of Colorado Hospital CRS (6101)
Aurora, Colorado, United States
Univ. of Miami AIDS CRS (901)
Miami, Florida, United States
Northwestern University CRS (2701)
Chicago, Illinois, United States
Massachusetts General Hospital ACTG CRS (101)
Boston, Massachusetts, United States
Washington University CRS (2101)
St Louis, Missouri, United States
AIDS Care CRS (1108)
Rochester, New York, United States
...and 5 more locations
Change in Endotoxin
Change in LPS from baseline to week 8, where baseline value is the average of pre-entry and entry values.
Time frame: baseline and Week 8
Change in Soluble CD14 (sCD14)
Change in soluble CD14 (sCD14) from baseline to week 8, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 8
Change in Endotoxin
Change in endotoxin from baseline to week 4, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 4
Change in Endotoxin
Change in endotoxin from week 8 to week 16
Time frame: week 8 and week 16
Change in sCD14
Change in sCD14 from baseline to week 4, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 4
Change in sCD14
Change in sCD14 from week 8 to week 16
Time frame: week 8 and week 16
Change in CD4+ T-cell Activation
Change from baseline to week 8 in CD4+ T-cell activation, defined as the %CD38+/HLA-DR+, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 8
Change in CD4+ T-cell Activation
Change from baseline to week 4 in CD4+ T-cell activation, defined as the %CD38+/HLA-DR+, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 4
Change in CD4+ T-cell Activation
Change from week 8 to week 16 in CD4+ T-cell activation, defined as the %CD38+/HLA-DR+
Time frame: week 8 and week 16
Change in CD8+ T-cell Activation
Change from baseline to week 4 in CD8+ T-cell activation, defined as the %CD38+/HLA-DR+, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 4
Change in CD8+ T-cell Activation
Change in CD8+ T-cell activation defined as the %CD38+/HLA-DR+ from baseline to week 8, where baseline is the average of pre-entry and entry
Time frame: Baseline and Week 8
Change in CD8+ T-cell Activation
Change in CD8+ T-cell activation defined as the %CD38+/HLA-DR+ from week 8 to week 16
Time frame: week 8 and week 16
Change in Proportion of Cycling CD8+
Change from baseline to week 4 in cycling CD8+ , defined as the %Ki67+, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 4
Change in Proportion of Cycling CD8+
Change from baseline to week 8 in cycling CD8+ , defined as the %Ki67+, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 8
Change in Proportion of Cycling CD8+
Change from week 8 to week 16 in cycling CD8+ , defined as the %Ki67+
Time frame: from week 8 to week 16
Change in Proportion of Cycling CD4+
Change from baseline to week 4 in cycling CD4+ , defined as the %Ki67+, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 4
Change in Proportion of Cycling CD4+
Change from baseline to week 8 in cycling CD4+ , defined as the %Ki67+, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 8
Change in Proportion of Cycling CD4+
Change from week 8 to week 16 in cycling CD4+ , defined as the %Ki67+
Time frame: week 8 and week 16
Change in Blood Phosphate Levels
Change in blood phosphate levels from baseline to week 4, where baseline value is the average of pre-entry and entry
Time frame: from baseline to week 4
Change in Blood Phosphate Levels
Change in blood phosphate levels from baseline to week 8
Time frame: Baseline to Week 8
Change in Blood Phosphate Levels
Change in blood phosphate levels from week 8 to week 16
Time frame: from week 8 to week 16
Change in log10 HIV RNA Levels
Change in log10 HIV RNA levels from baseline to week 4, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 4
Change in log10 HIV RNA Levels
Change in log10 HIV RNA levels from baseline to week 8, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 8
Change in log10 HIV RNA Levels
Change in log10 HIV RNA levels from week 8 to week 16
Time frame: week 8 and week 16
Change in CD4+ T-cell Counts
Change in CD4+ T-cell counts from baseline to week 4, where baseline is the average of pre-entry and entry
Time frame: baseline and week 4
Change in CD4+ T-cell Counts
Change in CD4+ T-cell counts from baseline to week 8, where baseline is the average of pre-entry and entry
Time frame: baseline and week 8
Change in CD4+ T-cell Counts
Change in CD4+ T-cell counts from week 8 to week 16
Time frame: week 8 and week 16
Change in IL-6
Changes in levels of systemic inflammation marker IL-6 from baseline to week 4, where baseline is the average of pre-entry and entry
Time frame: baseline and week 4
Change in IL-6
Changes in levels of systemic inflammation marker IL-6 from baseline to week 8, where baseline is the average of pre-entry and entry
Time frame: baseline and week 8
Change in IL-6
Changes in levels of systemic inflammation marker IL-6 from week 8 to week 16
Time frame: week 8 and week 16
Change in C-reactive Protein (CRP)
Changes in levels of systemic inflammation marker CRP from baseline to week 4, where baseline is the average of pre-entry and entry
Time frame: baseline and week 4
Change in CRP
Changes in levels of systemic inflammation marker CRP from baseline to week 8, where baseline is the average of pre-entry and entry
Time frame: Baseline and Week 8
Change in CRP
Changes in levels of systemic inflammation marker CRP from week 8 to week 16, where baseline is the average of pre-entry and entry
Time frame: week 8 and week 16
Change in D-dimer
Change in levels of coagulation biomarker d-dimer from baseline to week 4, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 4
Change in D-dimer
Change in levels of coagulation biomarker d-dimer from baseline to week 8, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 8
Change in D-dimer
Change in levels of coagulation biomarker d-dimer from week 8 to week 16
Time frame: week 8 and week 16
Change in Tissue Factor
Change in levels of coagulation biomarker tissue factor from baseline to week 4, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 4
Change in Tissue Factor
Change in levels of coagulation biomarker tissue factor from baseline to week 8, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 8
Change in Tissue Factor
Change in levels of coagulation biomarker tissue factor from week 8 to week 16
Time frame: week 8 and week 16
Change in Total Cholesterol
Change in total cholesterol from baseline to week 8, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 8
Change in Total Cholesterol
Change in total cholesterol from week 8 to week 16
Time frame: week 8 and week 16
Change in LDL Cholesterol
Change in fasting LDL cholesterol from baseline to week 8, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 8
Change in LDL Cholesterol
Change in fasting LDL cholesterol from week 8 to week 16
Time frame: week 8 and week 16
Change in HDL Cholesterol
Change in fasting HDL cholesterol from baseline to week 8, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 8
Change in HDL Cholesterol
Change in fasting HDL cholesterol from week 8 to week 16
Time frame: from week 8 to week 16
Change in Non-HDL Cholesterol
Change in non-HDL cholesterol from baseline to week 8, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 8
Change in Non-HDL Cholesterol
Change in non-HDL cholesterol from week 8 to week 16
Time frame: week 8 and week 16
Change in Fasting Glucose
Change in fasting glucose from baseline to week 8, where baseline value is the average of pre-entry and entry
Time frame: baseline and week 8
Change in Fasting Glucose
Change in fasting glucose from week 8 to week 16
Time frame: week 8 and week 16
Primary Adverse Events
Number of subjects experiencing primary adverse events, defined as all reported Grade ≥ 2 signs and symptoms, Grade ≥ 2 laboratory abnormalities and other serious adverse events (SAEs)
Time frame: baseline and week 16
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