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Completed

NCT Number: NCT04987489

A Study of Etavopivat in Patients With Thalassemia or Sickle Cell Disease

This clinical trial is a Phase 2 study that will evaluate the safety and clinical activity of etavopivat in patients with thalassemia or sickle cell disease and test how well etavopivat works to lower the number of red blood cell transfusions required and increase hemoglobin.

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Key information

About this study

Etavopivat is a potent, selective, orally bioavailable, small-molecule activator of pyruvate kinase red blood cell (PKR) being developed by Forma Therapeutics, Inc and is intended for use as a treatment for patients with sickle cell disease (SCD) or other inherited hemoglobinopathies or refractory anemias. This study is a multicenter, Phase 2, open-label, multiple-cohort study examining the safety and efficacy of etavopivat for the treatment of patients, age 12 to 65 years, with SCD or thalassemia. Three treatment cohorts based on the patients hemoglobinopathy (SCD or thalassemia) and transfusion requirements will be evaluated.

Who can participate

Healthy volunteers accepted: No

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

Inclusion criteria

  • Provision of consent
  • Female patients of childbearing potential must use acceptable methods of contraception, male patients are willing to use barrier methods of contraception

Cohort A (Sickle Cell Disease Transfusion Cohort)

  • Confirmed diagnosis of sickle cell disease
  • Chronically red blood cell transfused (sample or exchange [manual or via electrophoresis]) for primary stroke prevention or due to previous stroke. Chronic red blood cell transfusion is defined as: ≥ 6 red blood cell units in the previous 24 weeks before the first dose of study treatment and no transfusion-free period for > 35 days during that period
  • At least 24 months of chronic monthly red blood cell transfusions for secondary stroke prevention/treatment of primary stroke (initial completed overt clinical stroke with documented infarction on brain computed tomography [CT] or magnetic resonance imaging [MRI])
  • Prior to screening OR at least 12 months of chronic RBC transfusions for primary stroke prevention (abnormal TCD) prior to screening
  • Documented adequate monthly transfusions with average HbS ≤ 45% (the upper limit of the established academic community standard) for the previous 12 weeks of red blood cell transfusions before the first dose of study treatment

Cohort B (Thalassemia Transfusion Cohort)

  • Documented diagnosis of β-thalassemia, Hemoglobin E/ β-thalassemia or Hemoglobin H (α-thalassemia), or other thalassemia variant
  • Chronically transfused, defined as: ≥ 6 red blood cell units in the previous 24 weeks before the first dose of study treatment and no transfusion-free period for > 35 days during that period

Cohort C (Thalassemia Non-transfused Cohort)

  • Documented diagnosis of β-thalassemia, Hemoglobin E/ β-thalassemia or Hemoglobin H (α-thalassemia), or other thalassemia variant
  • Hemoglobin ≤ 10 g/dL

Exclusion criteria

  • Female who is breast feeding or pregnant
  • Hepatic dysfunction characterized by:
  • Alanine aminotransferase (ALT) > 4.0 × upper limit of normal (ULN)
  • Direct bilirubin > 3.0 × ULN
  • History of cirrhosis
  • Known human immunodeficiency virus (HIV) positivity
  • Active hepatitis B or hepatitis C infection
  • Severe renal dysfunction or on chronic dialysis
  • History of malignancy within the past 2 years prior to treatment Day 1 requiring systemic chemotherapy and/or radiation.
  • Patients with malignancy considered surgically cured are eligible (eg, non- melanoma skin cancer, cancer of the cervix in-situ, ductal carcinoma in situ [Stage 1], Grade 1 endometrial cancer)
  • History of unstable or deteriorating cardiac or pulmonary disease within 6 months prior to consent including but not limited to the following:
  • Unstable angina pectoris or myocardial infarction or elective coronary intervention
  • Congestive heart failure requiring hospitalization
  • Uncontrolled clinically significant arrhythmias
  • Symptomatic pulmonary hypertension

Treatment and study plan

Etavopivat tablets

Drug

Etavopivat 400 mg once daily

Other names: FT-4202

Primary outcomes

  1. Cohorts A: Proportion of patients with ≥ 20% reduction in red blood cell transfusions over a continuous 12-week treatment period versus baseline red blood cell transfusion history

    Time frame: 12 weeks

    Proportion of patients with ≥ 20% reduction in red blood cell transfusions over a continuous 12-week treatment period versus baseline red blood cell transfusion history

  2. Cohorts B: Proportion of patients with ≥ 20% reduction in red blood cell transfusions over a continuous 12-week treatment period versus baseline red blood cell transfusion history

    Time frame: 12 weeks

    Proportion of patients with ≥ 20% reduction in red blood cell transfusions over a continuous 12-week treatment period versus baseline red blood cell transfusion history

  3. Cohort C: Hemoglobin response rate at Week 12 (increase of ≥ 1.0 g/dL from baseline)

    Time frame: 12 weeks

    Hemoglobin response rate at Week 12 (increase of ≥ 1.0 g/dL from baseline)

Secondary outcomes

  1. Cohort A: Proportion of patients with ≥ 33% reduction in red blood cell transfusion over a continuous 12-week treatment period versus baseline red blood cell transfusion history

    Time frame: 12 weeks

    Proportion of patients with ≥ 33% reduction in red blood cell transfusion over a continuous 12-week treatment period versus baseline red blood cell transfusion history

  2. Cohort B: Proportion of patients with ≥ 33% reduction in red blood cell transfusion over a continuous 12-week treatment period versus baseline red blood cell transfusion history

    Time frame: 12 weeks

    Proportion of patients with ≥ 33% reduction in red blood cell transfusion over a continuous 12-week treatment period versus baseline red blood cell transfusion history

  3. Cohort A: Reduction in red blood cell transfusions over 12 weeks

    Time frame: 12 weeks

    Reduction in red blood cell transfusions over 12 weeks

  4. Cohort A: Reduction in red blood cell transfusions over 24 weeks

    Time frame: 24 weeks

    Reduction in red blood cell transfusions over 24 weeks

  5. Cohort A: Reduction in red blood cell transfusions over 48 weeks

    Time frame: 48 weeks

    Reduction in red blood cell transfusions over 48 weeks

  6. Cohort B: Reduction in red blood cell transfusions over 12 weeks

    Time frame: 12 weeks

    Reduction in red blood cell transfusions over 12 weeks

  7. Cohort B: Reduction in red blood cell transfusions over 24 weeks

    Time frame: 24 weeks

    Reduction in red blood cell transfusions over 24 weeks

  8. Cohort B: Reduction in red blood cell transfusions over 48 weeks

    Time frame: 48 weeks

    Reduction in red blood cell transfusions over 48 weeks

  9. Cohort C: Hemoglobin response rate at Week 24 (increase of ≥ 1.0 g/dL from baseline).

    Time frame: 24 weeks

    Hemoglobin response rate at Week 24 (increase of ≥ 1.0 g/dL from baseline).

  10. Cohort C: Hemoglobin response rate at Week 48 (increase of ≥ 1.0 g/dL from baseline).

    Time frame: 48 weeks

    Hemoglobin response rate at Week 48 (increase of ≥ 1.0 g/dL from baseline).

  11. Change from baseline in hemoglobin over 12 weeks

    Time frame: 12 weeks

    Change from baseline in hemoglobin over 12 weeks

  12. Change from baseline in hemoglobin over 24 weeks

    Time frame: 24 weeks

    Change from baseline in hemoglobin over 24 weeks

  13. Change from baseline in hemoglobin over 48 weeks

    Time frame: 48 weeks

    Change from baseline in hemoglobin over 48 weeks

  14. Changes in serum ferritin levels at 12 weeks versus baseline

    Time frame: 12 weeks

    Changes in serum ferritin levels at 12 weeks versus baseline

  15. Changes in serum ferritin levels at 24 weeks versus baseline

    Time frame: 24 weeks

    Changes in serum ferritin levels at 24 weeks versus baseline

  16. Changes in serum ferritin levels at 48 weeks versus baseline

    Time frame: 48 weeks

    Changes in serum ferritin levels at 48 weeks versus baseline

  17. Changes in liver iron concentration at 48 weeks versus baseline

    Time frame: 48 weeks

    Changes in liver iron concentration at 48 weeks versus baseline

Sponsors and collaborators

Lead sponsor

Forma Therapeutics, Inc.

Industry

Registry information

Official study title

A Phase 2 Open-Label Study to Evaluate Safety and Clinical Activity of Etavopivat in Patients With Thalassemia or Sickle Cell Disease

Acronym: GLADIOLUS

Important dates

Study start
2022
Primary completion
2025
Study completion
2025
First posted
Aug 3, 2021
Registry last updated
Dec 16, 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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