A translational proof of concept study in humans on the primary research question whether novel anti-human immunodeficiency virus (HIV) latency strategies, including a BAF inhibitor and a histone deacetylase inhibitor, result in HIV reservoir reduction in HIV patients on antiretroviral therapy.
The retrovirus HIV integrates as proviral DNA in the genome of cluster of differentiation (CD)4+ T cells. A subset form a reservoir of latently infected long-lived memory T-cells with nearly absent HIV-DNA transcription. This persistent latent HIV reservoir is the major obstacle for a cure. HIV latency is sustained by multiple host factors that restrict the viral promotor and expression of the viral genome. Latency reversing agents (LRA) can remove these restrictive components and mediate HIV latency reversal. LRA monotherapy with histone deacetylase inhibitors (HDACi) alone, including valproic acid, vorinostat, romidepsin, or panobinostat, reactivate HIV but seems insufficient to eliminate the reservoir in vivo. Our research group has identified the BAF complex as another repressive factor that maintains HIV latency. Pyrimethamine acts as an inhibitor of this BAF complex, is capable of reactivating HIV from latency at clinical tolerable concentrations, and acts synergistic with other LRA classes. This offers new opportunities for cure research. This is the first translational clinical study with BAF inhibitors and it assesses the potential synergism of 2 LRA with different modes of action on the reservoir in HIV patients. Primary objective: The longitudinal assessment of the effects of the BAF inhibitor pyrimethamine and of the HDACi valproic acid on the HIV reservoir in HIV patients on antiretroviral therapy. Study design: Open label 6 week randomized controlled intervention trial. Study population: Participants must be HIV infected, ≥18 years and on antiretroviral therapy with plasma HIV-RNA \<50 copies/mL and CD4+ T cell count ≥200 cells/mm3 at enrollment. The HIV-RNA was ≥10.000 copies/mL before antiretroviral therapy initiation. Intervention: Participants are randomized to either of 4 arms and receive valproic acid, pyrimethamine, both for 2 weeks, or no intervention. Total study duration is 6 weeks and includes a 2 week treatment period and a 4 week post-treatment period. Primary endpoint: The change in HIV reactivation in the reservoir in vivo at treatment initiation and at the end of treatment, measured as the change in cell associated HIV-RNA. The change in reactivation is compared between the treatment arms. Secondary endpoints: See below.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
28
Valproic acid (enteric) 30mg/kg, divided over 2 doses per day, orally on day 1-14.
Pyrimethamine 200mg once daily (QD) orally on day 1 and 100mg on day 2-14.
Erasmus MC
Rotterdam, Netherlands
Cell associated HIV-RNA
The change in cell associated HIV-RNA between treatment initiation (week 0) and at the end of study (week 6). The change wil be compared between the study arms.
Time frame: 6 week
Tat/rev induced limiting dilution assay (TILDA)
The change in TILDA between the groups between week 2 and week 0, between week 6 and week 2, and between week 6 and week 0 The change will be compared between the study arms.
Time frame: 6 week
Synergy
Potential synergism or additive effects of the administration of both drugs will be assessed by performing separate models including either both treatments or separate and subsequently investigating which model best predicts the outcome. the Bliss independence method to assess synergism will be performed. The combination therapy is considered synergistic if the difference and its 95% normal confidence interval (CI) were \>0.
Time frame: 6 week
Cell associated HIV-RNA
The change in cell associated HIV-RNA between and within the groups between week 2 and week 0, between week 6 and week 2, and between week 6 and week 0.
Time frame: 6 week
Cell associated HIV-DNA
The change in cell associated HIV-DNA between and within the groups between week 2 and week 0, between week 6 and week 2, and between week 6 and week 0.
Time frame: 6 week
Plasma HIV-RNA
The change in plasma HIV-RNA between and within the groups between week 2 and week 0, between week 6 and week 2, and between week 6 and week 0.
Time frame: 6 week
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Histone deacetylation
The change in the level of histone acetylation between and within the groups between week 0 and week 2, and between week 2 and week 6.
Time frame: 6 week
Expression of BAF subunits
The change in the level of expression between and within the groups between week 0 and week 2, and between week 2 and week 6.
Time frame: 6 week
Immunological functionality
The change of the functionality of innate immune cells, HIV specific CD4+ and CD8+ T cells and HIV specific B-cells between and within the groups between week 0 and week 2, and between week 2 and week 6.
Time frame: 6 week
Immunological cytotoxicity
The change of the cytotoxicity of innate immune cells, HIV specific CD4+ and CD8+ T cells and HIV specific B-cells between and within the groups between week 0 and week 2, and between week 2 and week 6.
Time frame: 6 week
Immunological phenotype
The change of the phenotype of innate immune cells, HIV specific CD4+ and CD8+ T cells and HIV specific B-cells between and within the groups between week 0 and week 2, and between week 2 and week 6.
Time frame: 6 week
Reservoir biomarkers
The correlations between clinical markers, markers of the viral reservoir (HIV-DNA, HIV-RNA), frequency and functionality of immune cells, cytokines, and level of acetylation/BAF expression with the change in reservoir (cell asociated-HIVRNA and TILDA) within and between the treatment arms
Time frame: 6 week
In vivo/ex vivo reservoir reactivation correlation
The correlation between ex vivo/in vitro (primary CD4 T cells, and cell line based) LRA efficacy, assessed using the size of the reservoir as measured by TILDA, HIV-DNA, HIV-RNA and level of acetylation/BAF expression after stimulation by pyrimethamine, valproic acid or both, and this will be correlated to these observed reservoir measurements outcomes in vivo at week 2 and week 6.
Time frame: 6 week
Incidence of Treatment-Emergent Adverse Events
The clinical and biochemical adverse events will be assessed by the Common Toxicity Criteria.
Time frame: 6 week
Plasma HIV-RNA
The proportion of subjects with plasma HIV-RNA \>=20, \>=50, \>=200 at weeks 0, weeks 2 and week 6.
Time frame: 6 week
Pharmacokinetics of dolutegravir
Plasma concentrations Cmax dolutegravir will be measured using validated methods in patients receiving these medications. The pharmacokinetic profiles of the dolutegravir will be assessed in relation to the primary endpoint and use of valproic acid.
Time frame: 6 week
Pharmacokinetics of dolutegravir
Plasma concentrations Ctrough dolutegravir will be measured using validated methods in patients receiving these medications. The pharmacokinetic profiles of the dolutegravir will be assessed in relation to the primary endpoint and use of valproic acid.
Time frame: 6 week
Pharmacokinetics of valproic acid
Plasma concentrations Ctrough of valproic acid will be measured using validated methods in patients receiving these medications. The total and free (nonprotein-bound) plasma concentrations of valproic acid will be measured. The pharmacokinetic profiles of the investigational medical products will be assessed in relation to the primary endpoint.
Time frame: 6 week
Pharmacokinetics of valproic acid
Plasma concentrations Cmax of valproic acid will be measured using validated methods in patients receiving these medications. The total and free (nonprotein-bound) plasma concentrations of valproic acid will be measured. The pharmacokinetic profiles of the investigational medical products will be assessed in relation to the primary endpoint.
Time frame: 6 week
Pharmacokinetics of pyrimethamine
Plasma concentrations Cmax of pyrimethamine will be measured using validated methods in patients receiving this medication. The pharmacokinetic profiles of the investigational medical products will be assessed in relation to the primary endpoint.
Time frame: 6 week
Pharmacokinetics of pyrimethamine
Plasma concentrations Ctrough of pyrimethamine will be measured using validated methods in patients receiving this medication. The pharmacokinetic profiles of the investigational medical products will be assessed in relation to the primary endpoint.
Time frame: 6 week