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Safety and Efficacy of (α1Proteinase Inhibitor, α1PI) in HIV Disease

Safety and Efficacy of Prolastin®-C (α1Proteinase Inhibitor, α1PI) in Human Immunodeficiency Virus-Infected Subjects

Status
Terminated
Phases
Phase 2Phase 3
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT01731691
Enrollment
12
Registered
2012-11-22
Start date
2012-04-30
Completion date
2014-07-31
Last updated
2020-08-31

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

HIV Disease

Brief summary

Our primary objective is to further characterize the mechanism by which alpha-1PI regulates CD4 counts. HIV-1 infected patients will be initiated on PROLASTIN®-C (Alpha-1 Proteinase Inhibitor \[Human\], Grifols Biotherapeutics Inc.) or placebo. Uninfected volunteers will be untreated and will be monitored for comparison.

Detailed description

This study protocol is designed to investigate the benefit of a well-tolerated, FDA approved biological product that has been extensively used in a different patient population. For more than 20 years, α1proteinase inhibitor (α1PI or α1antitrypsin) therapy has been the standard treatment for people with insufficient α1PI blood levels. This disorder, also known as α1antitrypsin deficiency, was previously thought to be caused only as an inherited trait due to the gene PIzz. Recent evidence shows that it can also be an acquired disease. Specifically, individuals with HIV-1 disease have been found to have severely low α1PI blood levels (Bristow et al., 2001; Bristow et al., 2010; Bristow et al., 2012). Many people with the inherited version of α1PI deficiency eventually develop emphysema, and among individuals with HIV-1 disease, 90% have acquired α1PI deficiency. Whether they go on to develop emphysema is still unresolved. HIV-1 infected individuals are the first patient population identified so far in which severe α1PI deficiency is acquired through infection rather than being inherited. It was found that a decrease in α1PI blood levels is directly correlated to a decrease in CD4 lymphocytes (Bristow et al., 2001; Bristow et al., 2012): In a pilot study to determine whether α1PI therapy might benefit the CD4 counts in HIV-1 infected patients (Clinicaltrials.gov NCT01370018), HIV-1 patients with infection-related α1PI deficiency received weekly α1PI therapy (120mg/kg) for a period of 8 weeks and results were compared with those of patients having the inherited version of α1PI deficiency who were simultaneously receiving weekly α1PI therapy (60mg/kg). None of the patients in the study had ever previously received α1PI therapy. It was found that CD4 cells rose to normal levels following 2 weeks of intravenous α1PI therapy with no adverse effects observed in the HIV-1 patients (n=3) or the control group of HIV-1 uninfected, α1PI deficiency patients (n=2). The new crop of CD4 cells were functional, capable of fighting infection, and appeared to be generated from bone marrow-derived stem cells (Bristow et al., 2010). As a bonus, it was found in the HIV-1 patients that LDL levels (bad cholesterol) decreased and HDL levels (good cholesterol) increased {Bristow et al., in review). The information gained from the initial pilot study will be incorporated into this study design to further characterize the mechanism of lymphocyte renewal and to increase the number of patients observed. Only minor modifications to the pilot protocol are proposed including the sample size, addition of volunteers not receiving therapy, and a double-blind design: Ten (10) HIV-1 infected patients will be dosed with PROLASTIN®-C (Grifols Therapeutics Inc.), five (5) will be dosed with placebo, and five (5) uninfected volunteers not receiving therapy will be monitored. It has been observed that CD4 counts and cholesterol levels are correlated and that there is cyclic variation in individuals with and without HIV. To examine whether there are differences due to HIV infection in cyclic variation of CD4 counts, cholesterol levels, and other values monitored during this study, five (5) volunteers, who do not have HIV, will be included in the study for blood collection only. In a previous study, we determined that in individuals with abnormally low active α1PI levels, CD4 counts exhibit sinusoidal cycling with 23 day periodicity. Wave form appearance of CD4 cells with a peak every 23 days is a pattern that is indicative of adult thymopoiesis. We showed that in response to α1PI therapy, HIV infected and uninfected individuals exhibited an increased CD4 counts axis of oscillation, but no change in periodicity. In contrast, one uninfected individual who was not receiving therapy, exhibited no change in the axis of oscillation, but periodicity was 27 days. Human adult thymopoiesis is not well characterized, and based on these results, we have two hypotheses. One hypothesis is that in response to α1PI therapy, thymopoiesis will increase, manifested by an increased axis of oscillation and increased numbers of recent thymic emigrants. In the proposed study, we will perform weekly TREC analysis which measures recent thymic emigrants and is definitive for thymopoiesis. We will test whether the changes in TREC numbers corresponds with changes in the CD4 counts axis of oscillation in HIV infected individuals receiving α1PI therapy as compared with HIV infected individuals with abnormally low active α1PI levels not on α1PI therapy, and HIV uninfected individuals with normal active α1PI levels not on α1PI therapy. The second hypothesis is that in individuals with abnormally low active α1PI levels, the periodicity of CD4 counts is shorter than in individuals with normal active α1PI levels. Although we will measure periodicity in only 5 individuals with normal active α1PI levels and 15 with abnormal active α1PI levels, this will allow us to determine whether active α1PI is a linear determinate of periodicity or whether there are other variables that regulate periodicity. In an 8-week study, only 2 periods can be observed. Thus, following an 8-week regimen of therapy, one study subject may be asked to continue for a second 8-week regimen of therapy to allow the observation of 5 periods. In addition to these two primary hypotheses regarding CD4 counts, we have found that HDL and LDL levels are linearly dependent on the balance of active and inactive α1PI levels (manuscript in review). This phenomenon is due the transport of HDL and LDL by CD4 cells. We found that in HIV infected individuals with abnormally low active α1PI and abnormally high inactive α1PI, HDL and LDL increased or decreased differently from individuals with normal active α1PI. Based on these results, our hypothesis is that in HIV infected individuals with abnormally low active α1PI receiving α1PI therapy, LDL levels will decrease and HDL levels will increase as active α1PI levels increase in contrast to HIV uninfected individuals with normal active α1PI levels not on therapy and in contrast to HIV infected individuals with abnormally low active α1PI levels not on therapy. Prolastin-C treatment will be given weekly for eight (8) to sixteen (16) weeks by intravenous infusion. Blood will be collected immediately prior to each infusion. As in the previous study, complete blood count, lymphocyte phenotype, extended lymphocyte phenotype, lymphocyte function; HIV-1 viral load, lipid levels, blood chemistry, and markers of inflammation will be measured. The present study will also include measurements for HIV-1 tropism and markers for recent thymic emigrants.

Interventions

BIOLOGICALα1 Proteinase Inhibitor

Prolastin-C treatment in HIV disease will be compared with placebo treatment in HIV disease and no treatment in uninfected volunteers.

DRUGPlacebos

Placebo treatment in HIV disease will be compared with Prolastin-C treatment in HIV disease and no treatment in uninfected volunteers.

Sponsors

AIDS Community Research Initiative of America
CollaboratorOTHER
Grifols Biologicals, LLC
CollaboratorINDUSTRY
Institute for Human Genetics and Biochemistry
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
BASIC_SCIENCE
Masking
TRIPLE (Subject, Investigator, Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
18 Years to 65 Years
Healthy volunteers
Yes

Inclusion criteria

1. HIV-1 patients must have confirmed HIV-1 disease, diagnosed using the standard criteria and be on antiretroviral therapy. Uninfected volunteers will be age and gender matched. 2. HIV-1 patients must have measurable disease, defined as HIV-1 infected patients on antiretroviral therapy with undetectable HIV RNA (\<1000 HIV RNA copies/ml) and CD4 counts more than 200 and less than 600 cells/uL. 3. Not have previously received α1PI augmentation therapy 4. Age at least 18 years and under 65 years 5. Capacity for and commitment to attend all protocol scheduled visits at ACRIA 6. Life expectancy of greater than 5 years 7. Patients must have lab values within the limits defined below: * WBC \>4,1000/uL * ANC \>1,000/uL * platelets \>100,000//uL * total bilirubin 2-12 mg/dL * AST(SGOT)/ALT(SGPT) \< or = 2.5 X upper limit of normal * creatinine Male : 0.50-1.30 mg/dL Female: 0.40-1.20 mg/dL 8. HIV-1 patients must have active α1PI below 11 uM (normal is 18-53 uM) 9. HIV-1 patients must have one year history (prior to the study) with CD4+ lymphocytes at levels greater than 200 and less than 400 cells/uL 10. HIV-1 patients must have absence of symptoms suggestive of HIV-1 disease progression 11. HIV-1 patients must have adequate suppression of virus (\<400 HIV RNA/mL) 12. HIV-1 patients must have a history of compliance with antiretroviral medication based on undetectable virus levels 13. No evidence of malignancy 14. The effects of Prolastin-C on the developing human fetus at the recommended therapeutic dose are unknown: At any time throughout the study, from the signing of the informed consent form until after the last study visit, all female and male subjects who are biologically capable of having children must agree and commit to use a reliable method of birth control. 15. Ability to understand and the willingness to sign a written informed consent document

Exclusion criteria

1. Recent illness that will prevent the patient from participating in required study activities 2. Patients receiving other investigational agents 3. Patients with known malignancies 4. History of allergic reactions attributed to compounds of similar chemical or biologic composition to Prolastin-C 5. IgA deficient patients 6. Patients with ≥1000 HIV-1 RNA copies/ mL 7. Patients with \>600 CD4 cells/uL 8. Uncontrolled illness including, but not limited to, ongoing or active infection, myeloid dysplastic syndrome, anemia, bone marrow failure, DiGeorge Syndrome, thymic disorders, or psychiatric illness/social situations that would limit compliance with study requirements 9. Pregnant and breastfeeding women 10. Refusal to give informed consent

Design outcomes

Primary

MeasureTime frameDescription
CD4 Counts9 weeks after initiation of treatmentIt has been observed that CD4 counts and cholesterol levels are correlated and that there is cyclic variation in individuals with and without HIV.
CD89 weeks after initiation of treatmentIt has been observed that CD4 counts and cholesterol levels are correlated and that there is cyclic variation in individuals with and without HIV.
CD4/CD8 Ratio9 weeks after initiation of treatmentIt has been observed that CD4 counts and cholesterol levels are correlated and that there is cyclic variation in individuals with and without HIV.
Alpha-1 Proteinase Inhibitorweekly for 8 weeks
sj/betaTrec Ratioweekly for 8 weeks
High Density Lipoprotein (HDL)weekly for 8 weeks
Low Density Lipoprotein (LDL)weekly for 8 weeks

Countries

United States

Participant flow

Recruitment details

Volunteers were recruited by ACRIA by placing advertisements in neighborhood publications. A total of 227 patients were interviewed as potential candidates. The first study candidate was screened on January 14, 2013 and the first HIV+ subject was randomized (treatment/placebo) on April 25, 2013.

Pre-assignment details

Of the 21 potential subjects screened, 12 (57%) reached the baseline visit. All 12 were enrolled and all completed the study.

Participants by arm

ArmCount
α1 Proteinase Inhibitor in HIV Disease
α1Proteinase Inhibitor (120mg/kg Prolastin-C) weekly for 8 weeks α1 Proteinase Inhibitor: Prolastin-C treatment in HIV disease will be compared with placebo treatment in HIV disease and no treatment in uninfected volunteers. The subjects in the HIV+ groups (Prolastin-C and Placebo) were not comparable to those in the HIV- group.
3
Placebo in HIV Disease
Placebos weekly for 8 weeks Placebos: Placebo treatment in HIV disease will be compared with Prolastin-C treatment in HIV disease and no treatment in uninfected volunteers. The subjects in the HIV+ groups (Prolastin-C and Placebo) were not comparable to those in the HIV- group.
5
Uninfected Controls
Blood collection only for 8 weeks The subjects in the HIV+ groups (Prolastin-C and Placebo) were not comparable to those in the HIV- group.
4
Total12

Baseline characteristics

CharacteristicTotalUninfected Controlsα1 Proteinase Inhibitor in HIV DiseasePlacebo in HIV Disease
Age, Categorical
<=18 years
0 Participants0 Participants0 Participants0 Participants
Age, Categorical
>=65 years
0 Participants0 Participants0 Participants0 Participants
Age, Categorical
Between 18 and 65 years
12 Participants4 Participants3 Participants5 Participants
Age, Continuous46 years
STANDARD_DEVIATION 13
32 years
STANDARD_DEVIATION 10
54 years
STANDARD_DEVIATION 5
52 years
STANDARD_DEVIATION 7
CD4491 cells/uL
STANDARD_DEVIATION 193
651 cells/uL
STANDARD_DEVIATION 239
365 cells/uL
STANDARD_DEVIATION 116
438 cells/uL
STANDARD_DEVIATION 108
CD4/CD8 Ratio0.99 Ratio
STANDARD_DEVIATION 0.82
2.00 Ratio
STANDARD_DEVIATION 0.58
0.42 Ratio
STANDARD_DEVIATION 0.17
0.53 Ratio
STANDARD_DEVIATION 0.18
CD8711 cells/uL
STANDARD_DEVIATION 363
324 cells/uL
STANDARD_DEVIATION 53
958 cells/uL
STANDARD_DEVIATION 340
872 cells/uL
STANDARD_DEVIATION 271
Ethnicity (NIH/OMB)
Hispanic or Latino
4 Participants2 Participants0 Participants2 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
8 Participants2 Participants3 Participants3 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants0 Participants
HDL60 mg/dL
STANDARD_DEVIATION 12
58 mg/dL
STANDARD_DEVIATION 10
55 mg/dL
STANDARD_DEVIATION 14
65 mg/dL
STANDARD_DEVIATION 14
LDL85 mg/dL
STANDARD_DEVIATION 14
83 mg/dL
STANDARD_DEVIATION 20
89 mg/dL
STANDARD_DEVIATION 1.5
83 mg/dL
STANDARD_DEVIATION 16
Region of Enrollment
United States
12 participants4 participants3 participants5 participants
Sex: Female, Male
Female
3 Participants1 Participants1 Participants1 Participants
Sex: Female, Male
Male
9 Participants3 Participants2 Participants4 Participants
α1 Proteinase Inhibitor15 uM
STANDARD_DEVIATION 8
21 uM
STANDARD_DEVIATION 10
14 uM
STANDARD_DEVIATION 4
12 uM
STANDARD_DEVIATION 6

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
EG002
affected / at risk
deaths
Total, all-cause mortality
0 / 30 / 50 / 4
other
Total, other adverse events
0 / 30 / 50 / 4
serious
Total, serious adverse events
0 / 30 / 50 / 4

Outcome results

Primary

Alpha-1 Proteinase Inhibitor

Time frame: weekly for 8 weeks

ArmMeasureValue (MEAN)Dispersion
α1 Proteinase Inhibitor in HIV DiseaseAlpha-1 Proteinase Inhibitor13.7 micromolStandard Deviation 3.4
Placebo in HIV DiseaseAlpha-1 Proteinase Inhibitor13.6 micromolStandard Deviation 4.1
Uninfected ControlsAlpha-1 Proteinase Inhibitor19 micromolStandard Deviation 9.5
Primary

CD4/CD8 Ratio

It has been observed that CD4 counts and cholesterol levels are correlated and that there is cyclic variation in individuals with and without HIV.

Time frame: 9 weeks after initiation of treatment

ArmMeasureValue (MEAN)Dispersion
α1 Proteinase Inhibitor in HIV DiseaseCD4/CD8 Ratio0.41 RatioStandard Deviation 0.18
Placebo in HIV DiseaseCD4/CD8 Ratio0.48 RatioStandard Deviation 0.14
Uninfected ControlsCD4/CD8 Ratio2.20 RatioStandard Deviation 0.55
Primary

CD4 Counts

It has been observed that CD4 counts and cholesterol levels are correlated and that there is cyclic variation in individuals with and without HIV.

Time frame: 9 weeks after initiation of treatment

ArmMeasureValue (MEAN)Dispersion
α1 Proteinase Inhibitor in HIV DiseaseCD4 Counts326 cells/uLStandard Deviation 103
Placebo in HIV DiseaseCD4 Counts437 cells/uLStandard Deviation 180
Uninfected ControlsCD4 Counts649 cells/uLStandard Deviation 141
Primary

CD8

It has been observed that CD4 counts and cholesterol levels are correlated and that there is cyclic variation in individuals with and without HIV.

Time frame: 9 weeks after initiation of treatment

ArmMeasureValue (MEAN)Dispersion
α1 Proteinase Inhibitor in HIV DiseaseCD8848 cells/uLStandard Deviation 202
Placebo in HIV DiseaseCD8946 cells/uLStandard Deviation 365
Uninfected ControlsCD8302 cells/uLStandard Deviation 61
Primary

High Density Lipoprotein (HDL)

Time frame: weekly for 8 weeks

ArmMeasureValue (MEAN)Dispersion
α1 Proteinase Inhibitor in HIV DiseaseHigh Density Lipoprotein (HDL)49.29 mg/dLStandard Deviation 6.21
Placebo in HIV DiseaseHigh Density Lipoprotein (HDL)63.14 mg/dLStandard Deviation 14.51
Uninfected ControlsHigh Density Lipoprotein (HDL)61.13 mg/dLStandard Deviation 10.4
Primary

Low Density Lipoprotein (LDL)

Time frame: weekly for 8 weeks

ArmMeasureValue (MEAN)Dispersion
α1 Proteinase Inhibitor in HIV DiseaseLow Density Lipoprotein (LDL)90.67 mg/dLStandard Deviation 9.21
Placebo in HIV DiseaseLow Density Lipoprotein (LDL)77.23 mg/dLStandard Deviation 25.19
Uninfected ControlsLow Density Lipoprotein (LDL)75.19 mg/dLStandard Deviation 15.32
Primary

sj/betaTrec Ratio

Time frame: weekly for 8 weeks

ArmMeasureValue (MEAN)Dispersion
α1 Proteinase Inhibitor in HIV Diseasesj/betaTrec Ratio353.52 sj/beta ratioStandard Deviation 353.54
Placebo in HIV Diseasesj/betaTrec Ratio271.19 sj/beta ratioStandard Deviation 414.34
Uninfected Controlssj/betaTrec Ratio375.96 sj/beta ratioStandard Deviation 357.81

Source: ClinicalTrials.gov · Data processed: Feb 20, 2026