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Clinical Trials/NCT07745530
NCT07745530RecruitingNot Applicable

PLAQUAGE - Platelets Target the Circulating HIV Reservoir: Implications for Immunological Failure

Tourcoing Hospital1 site in 1 country90 target enrollmentStarted: April 1, 2025Last updated:
Conditions
Interventions

Trial Snapshot

Phase
Not Applicable
Status
Recruiting
Sponsor
Enrollment
90
Locations
1
Primary Endpoint
In vivo evaluation of the formation of platelet-PBMC conjugates enriched in latent or active reservoirs and of their transcriptional competence

Study Overview

Brief Summary

HIV/AIDS is a chronic disease that is difficult to eradicate because the virus persists as proviral DNA integrated into the host cells. Despite antiretroviral therapy, proviral DNA persists in lymphoid and myeloid reservoirs, whether circulating (memory CD4+ T cells) or tissue-based (macrophages). HIV reservoirs are highly heterogeneous, making it difficult to identify a specific biomarker or cell profile for a given reservoir. A distinctive feature of HIV reservoirs may be the selective interaction between reservoir cells and platelets. The presence of HIV in platelets could impact disease progression, particularly by triggering the reversal of HIV latency and leading to residual viral production. The frequency of platelets containing circulating virus in the blood is approximately 0.1% of the total platelet volume. Although seemingly negligible, this would represent a daily input of 10⁸ platelets harboring the virus. Furthermore, patients whose platelets contain HIV are primarily those with persistent immunological failure, known as "immunological non-responders" (InR).

The regulation of the size (number and frequency) of the HIV reservoir by platelets is not known. However, HIV-containing platelets form more conjugates with CD4+ T cells than HIV-free platelets. While HIV-containing platelets do not productively infect cells, they induce metabolic dysfunction in CD4+ T cells (aerobic glycolysis). Increased aerobic glycolysis is a hallmark of T cell activation and senescence.

This suggests an interconnection between the presence of the virus in platelets, the size of the reservoir, and immune dysfunction in HIV.

Study Design

Study Type
Observational
Observational Model
Cohort
Time Perspective
Prospective

Eligibility Criteria

Ages
18 Years to — (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • Adult patients living with HIV with an undetectable viral load for more than 2 years
  • Beneficiary of a social security scheme or rightful claimant;
  • Patients able to read and understand the information sheet;
  • Having signed the consent form.

Exclusion Criteria

  • being unable to give free and informed consent;
  • pregnant or breastfeeding woman;
  • being under guardianship, curatorship, or a protection mandate;

Arms & Interventions

Immunological non-responders 1

Experimental

Immunological non-responders (<500 CD4+ T cells/µL, undetectable viral load for >2 years) with a CD4+ T cell nadir below 100.

Intervention: blood sampling (Other)

Immunological responders

Experimental

Immunological responders (>500 CD4+ T cells/µL, undetectable viral load for >2 years)

Intervention: blood sampling (Other)

Immunological non-responders 2

Experimental

Immunological non-responders (<500 CD4+ T cells/µL, undetectable viral load for >2 years) with a CD4+ T cell nadir between 200 and 500

Intervention: blood sampling (Other)

Outcomes

Primary Outcomes

In vivo evaluation of the formation of platelet-PBMC conjugates enriched in latent or active reservoirs and of their transcriptional competence

Time Frame: at enrollment

In vivo evaluation of the formation of platelet-PBMC conjugates enriched in latent or active reservoirs, correlated with immune status through the following parameters: Frequency of CD4+ T lymphocytes associated with platelets and/or platelet components, Frequency of platelet-associated CD4+ T cells carrying HIV RNA, and ex vivo HIV reactivation; Number of integrated HIV provirus copies in CD4+ T cells associated or not with platelets. Monitoring of the transcriptional competence of platelet-associated reservoirs ex vivo, and the capacity of platelets to reactivate these reservoirs (latency reversal) in vitro based on the following criterion: Frequency of J-Lat GFP+ cells (indicating a reactivated provirus in this reporter cell) after coculture with platelets obtained from individuals of the different experimental groups.

Secondary Outcomes

No secondary outcomes reported

Investigators

Sponsor
Tourcoing Hospital
Sponsor Class
Other
Responsible Party
Sponsor

Study Sites (1)

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