Study of Combined GARP:TGF-β1/PD-1 Blockade as a Shock-and-kill Strategy in HIV-1 Cure

NCT07692932 · Status: NOT_YET_RECRUITING · Phase: NA · Type: INTERVENTIONAL · Enrollment: 100

Last updated 2026-07-09

No results posted yet for this study

Summary

The persistence of a reservoir of long-lived, latently infected cells carrying replication-competent proviral DNA constitutes the main barrier to Human Immunodeficiency Virus type 1 (HIV-1) cure. Recent research on HIV cure has focused strategies to "purge" the viral reservoir either to eradicate the infection or, at least, delay the time to viral recrudescence after antiretroviral treatment (ART) interruption. On the other hand, chronic HIV-1 infection is characterized by a dysfunctional state of CD8+ T cells.

A long-standing approach has been the establishment of latency reversal (LR) strategies, aiming to pharmacologically reactivate viral expression in latently infected cells, exposing them to clearance by CD8+ T cells or death through viral cytolysis. Strategies have also been developed to stimulate virus-specific CD8+ T cells. This global approach is called "shock-and-kill".

PD-1 blockade has been shown to be able to both facilitate LR and reverse CD8+ T cell dysfunction in HIV-1 ex vivo.

Clinical studies evaluating PD-(L)1 blockade in people living with HIV (PLWHIV) without cancer provide promising evidence for both immunologic and virologic response but also highlight the main limitations of immune checkpoint blockade (ICB) in PLWHIV: variable and transient responses to the treatment, and a safety concern. Combination with other ICB would be a relevant approach.

Anti-GARP:TGF-β1 monoclonal antibodies overcome resistance to anti-PD-1 immunotherapy in murine models of cancer, resulting from the increase in numbers or effector functions of anti-tumor CD8+ T cells. These findings have been subsequently translated into clinical research, with a phase I first-in-human study in patients with solid tumors.

In HIV-1 infection, TGF-β1 is involved in disease progression and pathogenesis, notably in the establishment of the reservoir. The inhibition of TGF-β1 receptor by its inhibitor (galunisertib) has been shown to increase LR in HIV ex-vivo as well as in a in-vivo model with SIV. In the simian model, galunisertib also enhanced anti-SIV immune response and decreased SIV reservoir size.

This study will assess, in an ex vivo model, whether the addition of GARP:TGF-β1 blockade to PD-1 blockade enhances the virologic and/or immunologic responses, in a shock-and-kill combined strategy.

Conditions

  • HIV -1 Infection

Interventions

OTHER

blood drawn

blood drawn

Sponsors & Collaborators

  • Cliniques universitaires Saint-Luc- Université Catholique de Louvain

    lead OTHER

Principal Investigators

  • Sophie Lucas, MD, PhD · Université Catholique de Louvain

  • Jean Cyr Yombi, MD · Cliniques universitaires Saint-Luc- Université Catholique de Louvain

Study Design

Allocation
NA
Purpose
BASIC_SCIENCE
Masking
NONE
Model
SINGLE_GROUP

Eligibility

Min Age
18 Years
Sex
ALL
Healthy Volunteers
No

Timeline & Regulatory

Start
2026-08-31
Primary Completion
2030-12-31
Completion
2030-12-31

Countries

  • Belgium

Study Locations

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Read the full study record

This page highlights key information. For complete eligibility criteria, study locations, investigator contacts, and the full protocol, visit the original record on ClinicalTrials.gov.

View NCT07692932 on ClinicalTrials.gov