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Not yet recruiting NCT07738562

Dipyridamole for Early-Onset Preeclampsia: A Pilot Study of Feasibility, Pharmacokinetics, and Biological Effects

Phase I / Phase II Interventional Preeclampsia (PE) Hypertension ,Pregnancy

For patients and families

In plain language

An automatic summary of structured registry data. It is an orientation aid, not a substitute for the official protocol or a physician assessment.

What is being studied
The protocol lists: Dipyridamole 75 MG.
Who it may be relevant to
Registry conditions: Preeclampsia (PE), Hypertension ,Pregnancy. Basic parameters: from 18 years · Female.
What needs checking
Age, condition and sex are only basic indicators. Prior treatment, laboratory values and other mandatory requirements appear in the eligibility criteria below.
Where it takes place
Israel
Next step
Save the trial, show it to the treating physician, and confirm current recruitment with the study center. Costs, documents and travel →

Overview

Early-onset preeclampsia (PE), defined as preeclampsia presenting before 34 weeks of gestation, is a severe placental disorder associated with significant maternal and perinatal morbidity. There is currently no disease-modifying treatment; management relies on close surveillance and delivery, frequently resulting in extreme prematurity. Recent laboratory research identified ferroptosis, a form of iron-dependent regulated cell death driven by lipid peroxidation, as a key mechanism of placental injury in early-onset preeclampsia. A high-throughput drug screen identified dipyridamole, an approved oral antiplatelet and vasodilatory agent, as a potent ferroptosis inhibitor in primary human trophoblast cultures (EC50 = 0.146 µM), acting through mechanisms independent of its known phosphodiesterase-inhibitory pharmacology. In preeclamptic placental explants, dipyridamole markedly reduced release of sFlt-1, a central mediator of the maternal syndrome. Dipyridamole carries an established pregnancy safety record supported by randomized trials and a Cochrane meta-analysis of antiplatelet agents in pregnancy. This is a prospective, single-center, open-label pilot study using a sequential, fixed dose-escalation design. The study will enroll 15 hospitalized pregnant women with early-onset preeclampsia (gestational age 26+0 to 33+6 weeks) and an elevated sFlt-1/PlGF ratio (≥85), for whom expectant management is clinically appropriate. Enrollment proceeds through a staged sentinel design with safety gates reviewed by an independent Safety Monitoring Committee. Participants receive oral dipyridamole added to standard clinical care, using a fixed dose-escalation protocol (75 mg twice daily on Day 1, escalating over 2-3 days to a target dose of 75 mg four times daily, 300 mg/day total). Standard obstetric care continues unchanged, determined entirely on clinical grounds, independent of study participation. The primary objective is to evaluate the feasibility and clinical implementability of the dipyridamole treatment protocol within routine inpatient obstetric care. Secondary objectives include characterizing the pharmacokinetics of dipyridamole during pregnancy, assessing tolerability, and evaluating longitudinal circulating angiogenic biomarkers (sFlt-1 and PlGF). Exploratory objectives include assessment of placental markers of oxidative stress and ferroptosis-related pathways in tissue obtained at delivery. Study drug is administered during the antepartum period only and discontinued before delivery. This pilot study is not designed to establish clinical efficacy, but to provide the pharmacokinetic, tolerability, and biological data required to design a subsequent randomized trial.

Detailed description

Study Type: Single-center, open-label, pilot interventional study evaluating an approved medication (dipyridamole) in an off-label indication.

Background and Rationale:

Early-onset preeclampsia (PE), typically presenting before 34 weeks of gestation, is the most severe phenotype of hypertensive pregnancy disease and a leading cause of maternal and perinatal morbidity. Once clinically established, there is no disease-modifying therapy; management relies almost exclusively on close surveillance and timely delivery, frequently resulting in extreme prematurity. Early-onset PE is increasingly recognized as a primarily placental disorder, driven by defective placentation, chronic ischemia-reperfusion injury, progressive trophoblast damage, and maladaptive stress responses, in contrast to late-onset disease, which is more strongly influenced by maternal cardiovascular and metabolic susceptibility.

Prior laboratory research identified ferroptosis, a form of regulated cell death driven by iron-catalyzed peroxidation of membrane phospholipids, as a key mechanism of placental injury in early-onset PE. Human trophoblasts were shown to be uniquely vulnerable to ferroptosis due to their high iron content and intense oxidative metabolism. Using redox phospholipidomics, preeclamptic placentas were shown to accumulate specific hydroperoxy-phosphatidylethanolamine species characteristic of ferroptotic cell death; inducing ferroptosis in placental explants drove sFlt-1 release, and ferroptosis inhibitors reversed both tissue damage and sFlt-1 secretion. Multiple independent groups have since confirmed ferroptosis as a driver of placental injury in preeclampsia.

A high-throughput robotic screen of over 6,500 drugs and compounds, designed to identify pregnancy-safe ferroptosis inhibitors in primary human trophoblast cultures, identified dipyridamole as one of the most potent candidates (EC50 = 0.146 μM), acting independently of its known phosphodiesterase-inhibitory pharmacology. In preeclamptic placental explants, dipyridamole treatment led to a marked and reproducible reduction in sFlt-1 release, a central pathogenic mediator of the maternal syndrome.

From a safety perspective, dipyridamole has an established pregnancy safety record. It is classified as FDA Pregnancy Category B, and a Cochrane meta-analysis of antiplatelet agents in pregnancy confirmed that this drug class is safe and reduces preeclampsia, preterm birth, and small-for-gestational-age births.

Study Rationale Summary:

This study combines a defined molecular target (ferroptosis) with circulating biomarkers (sFlt-1/PlGF ratio) and Doppler parameters that can objectively track placental stress and treatment response, in a population with biomarker-confirmed placental dysfunction expected to deteriorate without intervention. If successful, this pilot would provide preliminary evidence supporting further evaluation of a disease-modifying therapy for established early-onset preeclampsia.

Study Design:

This is a prospective, single-center, open-label pilot study using a sequential, fixed dose-escalation design, evaluating the feasibility and clinical implementation of dipyridamole treatment in women with early-onset preeclampsia, including pharmacokinetic assessment, within standard obstetric care. The study is intentionally designed as a non-randomized pilot; its purpose is not to establish definitive clinical efficacy, but to assess real-world implementability, characterize pharmacokinetics and tolerability during pregnancy, and generate biological and clinical signals to inform the design of a subsequent randomized controlled trial.

Enrollment proceeds through a staged sentinel design: the first participant is enrolled and treated alone, with no further enrollment until she has completed treatment, delivered, and been assessed through the first 24 hours postpartum, and until the independent Safety Monitoring Committee has reviewed the complete safety data and recommended proceeding. Following a favorable review, two additional participants are enrolled, with a second safety gate before enrollment continues toward the planned sample size. This staged approach allows accumulated safety experience to govern each expansion of exposure.

All participants receive dipyridamole in addition to standard clinical management for early-onset preeclampsia, provided in accordance with established international and national guidelines. Study participation does not modify, delay, or replace any component of standard clinical care; decisions regarding antihypertensive therapy, treatment escalation, or delivery timing are made exclusively on clinical grounds by the treating team, independent of study participation. The dose-escalation scheme is fixed and identical for all participants; dosing is not individualized and accelerated escalation is not permitted.

Pharmacokinetic Sampling:

Pharmacokinetic blood samples are drawn, whenever possible, from the participant's existing indwelling intravenous catheter to minimize discomfort. Sparse sampling is performed during the dose-escalation phase, and after reaching the target dose each participant undergoes one intensive pharmacokinetic profiling day, provided maternal and fetal conditions allow a stable sampling window.

Safety Oversight:

Safety oversight is provided by an independent Safety Monitoring Committee comprising five members: an external maternal-fetal medicine specialist, a neonatologist, a hematologist with expertise in coagulation and bleeding risk, a specialist in internal medicine and clinical pharmacology, and an independent epidemiologist/biostatistician. The Committee is independent of the conduct of the study and reviews all serious adverse events, all events meeting a stopping-rule trigger, and cumulative safety data. It governs the staged sentinel enrollment gates and conducts scheduled safety reviews after the first 5 and first 10 participants complete treatment, in addition to any ad hoc reviews triggered by safety events. Final clinical decisions remain with the treating team, with maternal and fetal safety taking priority.

Postpartum follow-up continues to six weeks and includes documentation of adverse events, blood pressure and antihypertensive requirement, readmission, postpartum hemorrhage, infection or surgical complication, and hemoglobin.

Interventions

  • Drug Dipyridamole 75 MG
    Oral dipyridamole 75 mg tablets, administered via a fixed structured dose escalation across the sequential arms described above (75 mg twice daily → three times daily → four times daily). The escalation schedule is identical for all participants; dosing is not individualized and accelerated escalation is not permitted.

Primary outcome measures

  • Protocol Feasibility [Time frame: From enrollment through delivery (estimated 1-5 weeks per participant)]
Secondary outcome measures (12)
  • Peak Plasma Concentration (Cmax) of Dipyridamole [Time frame: Pre-dose through 6-8 hours post-dose on the intensive PK profiling day (after reaching target dose or highest tolerated dose)]
  • Incidence of Dipyridamole-Related Adverse Events [Time frame: From first drug administration until six weeks postpartum]
  • Change in Serum Soluble fms-Like Tyrosine Kinase-1 (sFlt-1) [Time frame: Daily for the first 7 days, then every 72 hours until delivery]
  • Change in Maternal Blood Pressure [Time frame: From treatment initiation until delivery (estimated 1-5 weeks)]
  • Pregnancy Latency from Treatment Initiation to Delivery [Time frame: From first dose through delivery (estimated 1-5 weeks)]
  • Uterine Artery Pulsatility Index (UtA-PI) [Time frame: From enrollment through delivery (estimated 1-5 weeks)]
  • Trough Plasma Concentration (Ctrough) of Dipyridamole [Time frame: From treatment initiation through delivery (estimated 1-5 weeks)]
  • Area Under the Plasma Concentration-Time Curve (AUC) of Dipyridamole [Time frame: Pre-dose through 6-8 hours post-dose on the intensive PK profiling day]
  • Apparent Oral Clearance (CL/F) of Dipyridamole [Time frame: From treatment initiation through the intensive PK profiling day (estimated 1-5 weeks)]
  • Terminal Elimination Half-Life (t½) of Dipyridamole [Time frame: Calculated from PK samples collected on the intensive PK profiling day (up to 6-8 hours post-dose)]
  • Need for Initiation or Escalation of Antihypertensive Therapy [Time frame: From treatment initiation until delivery (estimated 1-5 weeks)]
  • Overall Antihypertensive Medication Burden [Time frame: From treatment initiation until delivery (estimated 1-5 weeks)]

Eligibility criteria

  • Age ≥ 18 years
  • Singleton pregnancy
  • Established early-onset preeclampsia, with or without severe features, with gestational age from 26+0 to 33+6 weeks at enrollment, confirmed by best obstetric estimate
  • Hospitalization for maternal and/or fetal surveillance
  • Expectant management deemed appropriate by the treating clinical team at the time of enrollment
  • sFlt-1/PlGF ratio ≥85 at screening
  • Confirmed viable fetus without a known or suspected major structural or chromosomal anomaly
  • Baseline platelet count ≥100,000/µL
  • Ability to provide written informed consent

Exclusion criteria

  • Immediate indication for delivery at time of screening, including uncontrolled severe hypertension, eclampsia, HELLP syndrome, or severe fetal compromise
  • Active maternal bleeding or clinically significant bleeding disorder
  • Therapeutic-dose anticoagulation (e.g., enoxaparin >1 mg/kg/day)
  • Known hypersensitivity or contraindication to dipyridamole
  • Multiple gestation
  • Known major fetal anomaly or chromosomal abnormality
  • Baseline thrombocytopenia, platelet count <100,000/µL
  • Hemodynamically significant maternal cardiac disease
  • Significant maternal comorbidity that, in the investigator's judgment, precludes safe participation
  • Inability to comply with study procedures

Criteria are shown verbatim from the registry (in English). Final eligibility is always assessed by the study center.

Healthy volunteers: No

Study design

Allocation
Non-randomized
Model
Sequential
Masking
Open label
Primary purpose
Treatment

Study locations

Israel · 1 center
  • Hadassah University Medical Center — Jerusalem

Publications

  • Chen X, Shen J, Jiang X, Pan M, Chang S, Li J, Wang L, Miao M, Feng X, Zhang L, Shu G, Liu W, Xu F, Zhang W, Ding Z, Zong H, Liu W, Li D, Chen B, Shao M, Fei G, Zha X, Fan X. Characterization of dipyridamole as a novel ferroptosis inhibitor and its therapeutic potential in acute respiratory distress syndrome management. Theranostics. 2024 Oct 21;14(18):6947-6968. doi: 10.7150/thno.102318. eCollect PMID 39629132
  • Zhuang X, Shi S, Liu S, Jiao Y, Huang B, Yang Y, Yang L, Yang X, Wang H, Liang C, Song D, Yu H, Zou D, Sun Q, Yang S, Yin C, Li J, Liu Y, Min J, Wang F, Nian Y, Du L, Chu B. Dipyridamole Acts as Clinical Ferroptosis Inhibitor to Prevent from Tissue Injury. Adv Sci (Weinh). 2025 Jun;12(23):e2500566. doi: 10.1002/advs.202500566. Epub 2025 May 14. PMID 40365742
  • Edri T, Lianski S, Cohen SM, Beharier O. Placental ferroptosis in preeclampsia: An integrative and comprehensive review. J Reprod Immunol. 2026 Mar;174:104863. doi: 10.1016/j.jri.2026.104863. Epub 2026 Feb 16. PMID 41722450
  • Uzan S, Beaufils M, Breart G, Bazin B, Capitant C, Paris J. Prevention of fetal growth retardation with low-dose aspirin: findings of the EPREDA trial. Lancet. 1991 Jun 15;337(8755):1427-31. doi: 10.1016/0140-6736(91)93124-r. PMID 1675315
  • Beaufils M, Uzan S, Donsimoni R, Colau JC. Prevention of pre-eclampsia by early antiplatelet therapy. Lancet. 1985 Apr 13;1(8433):840-2. doi: 10.1016/s0140-6736(85)92207-x. PMID 2858710
  • Gestational Hypertension and Preeclampsia: ACOG Practice Bulletin, Number 222. Obstet Gynecol. 2020 Jun;135(6):e237-e260. doi: 10.1097/AOG.0000000000003891. PMID 32443079
  • ESPRIT Study Group; Halkes PH, van Gijn J, Kappelle LJ, Koudstaal PJ, Algra A. Aspirin plus dipyridamole versus aspirin alone after cerebral ischaemia of arterial origin (ESPRIT): randomised controlled trial. Lancet. 2006 May 20;367(9523):1665-73. doi: 10.1016/S0140-6736(06)68734-5. PMID 16714187
  • Park C, Alahari S, Ausman J, Liu R, Nguyen F, Sallais J, Post M, Caniggia I. Placental Hypoxia-Induced Ferroptosis Drives Vascular Damage in Preeclampsia. Circ Res. 2025 Feb 14;136(4):361-378. doi: 10.1161/CIRCRESAHA.124.325119. Epub 2025 Jan 23. PMID 39846172

Identifiers

NCT: NCT07738562 · Dipyridamole

Primary sources (government registries)

View this study on ClinicalTrials.gov ↗