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NCT Number: NCT06052436

Cell Therapy With Treg Cells Obtained From Thymic Tissue (thyTreg) to Control the Immune Hyperactivation Associated With COVID-19 and/or Acute Respiratory Distress Syndrome (THYTECH2)

The investigators developed a GMP protocol to isolate Treg cells from thymic tissue (thyTreg). The thyTreg cells are being evaluated in a Phase I/II clinical trial to evaluate the safety and efficacy of the adoptive transfer of autologous thyTreg to prevent rejection in heart transplant children (NCT04924491), with preliminary results indicating the feasibility and safety of the therapy.

In addition, thyTreg cells have shown low immunogenicity in the pre-clinical setting, indicating that allogeneic use of these thyTreg cells (allo-thyTreg) would have a low risk of adverse effects. These thyTreg cells could inhibit an excessive inflammation in SARS-CoV-2 infection, or ameliorate the immunological affection underlying Acute respiratory distress syndrome, improving life-threatening manifestations, restoring immune balance, and protecting affected tissues.

This clinical trial is an open-label Sequential Parallel Group Phase I/II study to evaluate the safety and efficacy of allogeneic thymus derived Tregs (thyTreg) (thyTreg) in controlling the immune dysregulation associated with SARS-CoV-2 infection and/or Acute Respiratory Distress Syndrome.

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Key information

Age range

18 year–65 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 1 / Phase 2

Primary location

Hospital General Universitario Gregorio Marañon

Madrid, 28007, Spain

Location status: Recruiting

Location contact

Ana Pita, MD

SUB_INVESTIGATOR

Beatriz Cózar Fernández, MsC

SUB_INVESTIGATOR

Carlos Pardo, MD PhD

SUB_INVESTIGATOR

Carmen Martínez Mata, MD

SUB_INVESTIGATOR

Diana Hernández-Flórez, PhD

SUB_INVESTIGATOR

Esther Bernaldo-de-Quirós, PhD

SUB_INVESTIGATOR

José Eugenio Guerrero Sanz, MD PhD

SUB_INVESTIGATOR

José Luis Vicario Moreno, PhD

SUB_INVESTIGATOR

Juan Miguel Gil-Jaurena, MD

SUB_INVESTIGATOR

Marjorie Pion, PhD

SUB_INVESTIGATOR

Marta Martínez-Bonet, PhD

SUB_INVESTIGATOR

María Abad Ferry, MsC

SUB_INVESTIGATOR

Mª Eugenia Fernández-Santos, PhD

SUB_INVESTIGATOR

Rafael Correa-Rocha, PhD

CONTACT

[email protected]

+34 915866455

Ramón Pérez-Caballero, MD PhD

SUB_INVESTIGATOR

Rocio López Esteban

SUB_INVESTIGATOR

Sergio Gil Manso, PhD

SUB_INVESTIGATOR

About this study

The immune system is the body's defense system against pathogens and other harmful agents, but it is also responsible for transplant rejection or autoimmune diseases. Another scenario of disproportionate immune response is the Immune Hyperactivation, an exaggerated systemic inflammatory response such as that caused by respiratory infections like COVID-19, a major cause of acute respiratory distress syndrome (ARDS) in critically ill patients.

The standard treatment to prevent these immune responses is the use of immunosuppressive and immunomodulatory therapy, which produces a pleotropic inhibition on the immune system and have a high cost. However, a widespread feeling among the scientific community is that only re-educating immune system to promote immune tolerance will decline the harmful immune responses without prejudice to the functional integrity of the immune system.

In the context of severe COVID-19 and ARDS, it has been shown that an alteration in the frequency and functionality of Tregs. In addition, it has been described that the increased oxygen therapy requirements is not due to the viral effect, but to the triggered immune hyperinflammation that can lead to multi-organ failure and death. Therefore, although the adoptive transfer of Treg is a promising cell therapy for the treatment of this type of disease, the characteristics of the patients make it unfeasible to obtain enough Treg from the patient to produce a therapeutic dose and, if achieved, the quality of these cells does not allow a prolonged therapeutic effect to be obtained over time.

Tregs are a subset of CD4+ T cells with suppressive function that maintain the immune system balance. Adoptive Treg cell therapy has shown efficacy in a variety of immune-mediated diseases in preclinical and clinical studies. To date, most of the clinical trials employing Treg cell therapy have been limited due to a small Treg numbers obtained (Treg cells represent less than 10% of CD4+ T cells) and the low quality of infused Treg (in terms of purity, survival, and suppressor capacity).

The investigators have developed an innovative Treg manufacturing protocol, that overcome the existing difficulties by employing a new source of cells, which is the thymic tissue routinely removed and discarded in paediatric cardiac surgeries. The protocol allows to produce massive amounts of thymus derived Treg cells (thyTreg), with improved survival, high suppressive capacity and suitable for therapeutic use.

The study will evaluate escalating doses of thyTreg administrated as a single IV dose. The study will include up to 2 cohorts of 4 to 8 subjects per each arm (control group and thyTreg group) followed for a total of 24 months. All subjects will receive standard of care treatment for COVID-19 or ARDS, including dexamethasone and other approved therapies from institutional guidelines.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Patient over 18 to 65 years of age
  • Patient Informed and non-opposed to the research by his medical doctor during hospitalization
  • Patient with clinical, radiological, gasometric and immunological criteria defined as:
  • Acute respiratory failure secondary to acute lung injury of noncardiogenic cause
  • Pulmonary abnormalities compatible with bilateral alveoloinsterstitial infiltrates by chest imaging (radiograph or scan)
  • PaO2/FiO2≤ 300 Presence of at least one of the following markers of inflammation: IL6 > 40 pg/ml or ferritin >300 ng/ml or CRP >3 mg/dl or increasing over the last 24 hours

Exclusion criteria

  • Pregnancy or breast feeding
  • Body mass index >35
  • Patients not expected to survive 48 hours after enrolment based on clinical assessment
  • Patients with an extracorporeal respiratory support
  • Neutropenia (absolute neutrophil count <1000/uL)
  • Thrombocytopenia (absolute neutrophil count <50000/uL)
  • Positive serology for HBV, HCV, or HIV at Screening
  • Life expectancy of less than 6 months due to other pathologies
  • History of significant underlying pulmonary disease requiring oxygen therapy prior to inclusion.
  • Patients with a history of autoimmune diseases
  • Patients with a history of hematopoietic neoplasia or oncology disease
  • Patients with a history of hematopoietic or solid organ transplant
  • Patients with a congenital or induced immunodeficiency
  • Patients received thymoglobulin, basiliximab or any anti-T-cell therapies within 6 moths prior to the screening visit
  • Patients received other cell therapy in the last 12 months
  • Patients received intravenous immunoglobulin (IVIg) within 5 moths prior to the screening visit
  • Patients who have participated or is participating in a clinical research study evaluating COVID-19 or ARDS within 30 days prior to the screening visit

Treatment and study plan

Allogeneic thyTreg 5.000.000

Biological

Treg lymphocytic cells, differentiated, allogeneic, of thymic tissue, expanded and stimulated with Interleukin (IL-) 2 (thyTreg)

Other names: Allogeneic thyTreg cells

Allogeneic thyTreg 10.000.000

Biological

Treg lymphocytic cells, differentiated, allogeneic, of thymic tissue, expanded and stimulated with Interleukin (IL-) 2 (thyTreg)

Other names: Allogeneic thyTreg cells

Primary outcomes

  1. 1. Incidence of infusion-related adverse events (safety) by type, frequency, severity, and causality

    Time frame: 24 months

Secondary outcomes

  1. Length of intensive care unit stay

    Time frame: 24 months

  2. Oxygenation improvement as assessed using PaO2/FiO2 and/or SaO2/FiO2

    Time frame: 24 months

  3. Change in clinical status as assessed using Sequential Organ Failure Assessment Score

    Time frame: 24 months

  4. Change in clinical status as assessed using Acute Physiology and Chronic Health disease Classification System (APACHE) III

    Time frame: 24 months

  5. Change in clinical status as assessed using Barthel score

    Time frame: 24 months

  6. Change in myocardial function as measured by mitral and tricuspid regurgitation using doppler echocardiography

    Time frame: 24 months

  7. Change in myocardial function as measured by mitral and tissue mitral doppler using doppler echocardiography

    Time frame: 24 months

  8. Change in myocardial function as measured by tricuspid and tissue tricuspid using doppler echocardiography

    Time frame: 24 months

  9. Change in SARS-CoV-2 positivity or etiology of ARDS assessed using diagnostics test

    Time frame: 24 months

  10. Change From Baseline in ferritin parameter

    Time frame: 24 months

  11. Change From Baseline in interleukin 6 (IL-6)

    Time frame: 24 months

  12. Change From Baseline in C-Reactive Protein (PCR)

    Time frame: 24 months

  13. Change From Baseline in Treg cells number in peripheral blood

    Time frame: 24 months

  14. Number of T cells, B cells, NK cells, monocytes, dendritic cells, and granulocytes in peripheral blood

    Time frame: 24 months

  15. Change From Baseline in cytokines levels of interferon gamma, tumor necrosis factor alpha and interleukins (IL-6 and IL-10).

    Time frame: 24 months

  16. Overall patient survival rate at 24 months

    Time frame: 24 months

Study contacts

Contact information is provided by the study sponsor or research team.

Diana Hernández Flórez, PhD

CONTACT

[email protected]

34 915866455

Marta Martínez-Bonet, PhD

CONTACT

[email protected]

34 915866455

Sponsors and collaborators

Lead sponsor

Hospital General Universitario Gregorio Marañon

Other

Collaborators

  • Instituto de Salud Carlos III

Registry information

Official study title

Open Phase I/IIa Clinical Trial to Evaluate the Safety and Efficacy of Allogenic Administration of Treg Cells Obtained From Thymic Tissue (thyTreg) to Control The Immune Hyperactivation Associated With COVID-19 and/or Acute Respiratory Distress Syndrome

Acronym: THYTECH2

Important dates

Study start
2023
Primary completion
2027
Study completion
2027
First posted
Sep 25, 2023
Registry last updated
Feb 3, 2025

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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