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Dopamine vs. Norepinephrine for Hypotension in Neonates With Pulmonary Hypertension (DONE)

Dopamine vs. Norepinephrine in Term and Late Preterm Neonates With Hypoxemic Respiratory Failure and Systemic Hypotension Due to Pulmonary Hypertension: A Pilot Trial

Status
Recruiting
Phases
Phase 4
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07322133
Acronym
DONE
Enrollment
30
Registered
2026-01-07
Start date
2026-10-30
Completion date
2027-06-30
Last updated
2026-08-18

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Hypotension and Shock, Hypoxemic Respiratory Failure, Pulmonary Hypertension of the Newborn (PPHN)

Keywords

Pulmonary Hypertension, Systemic Hypotension, Vasopressor

Brief summary

This pilot randomized clinical trial compares dopamine and norepinephrine as first-line vasoactive therapies in term and late preterm neonates with pulmonary hypertension associated with hypoxemic respiratory failure and systemic hypotension. Systemic hypotension is a common and clinically significant complication of persistent pulmonary hypertension of the newborn (PPHN) and frequently requires vasopressor support to maintain adequate systemic perfusion. Dopamine is commonly used in this setting; however, prior animal experimental and clinical data suggest it may increase pulmonary vascular resistance, potentially worsening right ventricular afterload and hypoxemia. Norepinephrine may preferentially increase systemic vascular resistance with less effect on the pulmonary circulation. This study evaluates short-term hemodynamic and oxygenation responses following initiation of dopamine or norepinephrine.

Detailed description

Persistent pulmonary hypertension of the newborn (PPHN) is a serious cardiopulmonary disorder characterized by sustained elevation of pulmonary vascular resistance, leading to right-to-left shunting, impaired oxygenation, and increased morbidity and mortality. In addition to hypoxemic respiratory failure, many infants with PPHN develop systemic hypotension. Management of systemic hypotension in this population is complex, as vasoactive medications may have differing effects on systemic and pulmonary circulations. Dopamine is widely used as first-line therapy for neonatal hypotension because of its dose-dependent dopaminergic and adrenergic effects. However, both animal models and clinical observations suggest that dopamine may increase pulmonary vascular resistance in neonates with PPHN. Norepinephrine, a predominantly alpha-adrenergic agonist with modest beta-adrenergic activity, may provide more selective augmentation of systemic vascular resistance while exerting less influence on pulmonary vascular tone. Despite the increasing clinical use of norepinephrine in neonatal intensive care units, there are no prospective trials comparing dopamine and norepinephrine in neonates with PPHN. This is a single-center, cluster-randomized, pilot clinical trial enrolling term and late preterm neonates with hypoxemic respiratory failure, echocardiographic evidence of pulmonary hypertension, and systemic hypotension that persists despite initial fluid resuscitation. Eligible infants are assigned by time-based cluster randomization to receive either dopamine or norepinephrine as first-line vasoactive therapy, consistent with standard clinical practice in the neonatal intensive care unit. Informed consent is obtained for research-specific procedures, including serial targeted neonatal echocardiography, while vasoactive medication use follows established clinical protocols.

Interventions

Infants meeting the inclusion criteria who are randomized to dopamine arm will receive dopamine infusion starting at 5 mcg/kg/min, titrated to mean arterial pressure targets based on gestational age, max dose 20 mcg/kg/min.

DRUGNorepinephrine

Infants meeting the inclusion criteria who are randomized to norepinephrine arm will receive norepinephrine infusion starting at 0.02 mcg/kg/min, titrated to mean arterial pressure targets based on gestational age, max dose 1 mcg/kg/min.

Sponsors

University of California, Davis
Lead SponsorOTHER
Children's Miracle Network
CollaboratorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
SINGLE (Subject)

Eligibility

Sex/Gender
ALL
Age
No minimum to 28 Days
Healthy volunteers
No

Inclusion criteria

1. Postmenstrual age \> 34 6/7 weeks and Postnatal age ≤ 28 days 2. On respiratory support (Invasive mechanical ventilation, NIPPV, CPAP, HFNC ≥ 2 LPM) and FiO2 ≥ 0.3 3. Echocardiographic evidence of pulmonary hypertension 4. Mean arterial pressure below the threshold for gestational age despite a 10-20 mL/kg fluid bolus Permissible Comorbidities: CDH, trisomy 21, HIE on hypothermia, PDA, PFO/ASD, VSD \< 2 mm

Exclusion criteria

1. Gestational age \< 32 weeks 2. Severe hypoxic respiratory failure (OI \> 35 or SpO2 \< 75% on 100% FiO2 for \> 60 minutes) 3. Lethal anomalies (e.g., trisomy 13 or 18) 4. Complex congenital heart disease beyond specified criteria

Design outcomes

Primary

MeasureTime frameDescription
SAP/PAP ratioWithin 30 hours of vasopressor initiation.Ratio of systemic arterial pressure to pulmonary arterial pressure (SAP/PAP)
LV Cardiac outputWithin 30 hours of vasopressor initiationLeft Ventricular Cardiac Output calculated with echocardiography
Oxygenation IndicesWithin 30 hours of vasopressor initiationFiO₂ (fraction of inspired oxygen), SpO₂ (peripheral oxygen saturation), PaO₂ (arterial oxygen partial pressure), OI (oxygenation index), OSI (oxygen saturation index)

Secondary

MeasureTime frameDescription
Use of inhaled nitric oxide (iNO)Within 30 hours of vasopressor initiation
Need for additional vasoactive agentsWithin 30 hours of vasopressor initiation
Echocardiographic markers of heart functionWithin 30 hours of vasopressor initiationRight ventricle and Left ventricle function

Countries

United States

Contacts

CONTACTSolomon P Tatagiri, MBBS
solomontp@gmail.com916-734-8672
PRINCIPAL_INVESTIGATORDeepika Sankaran, MD

UC Davis Health

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Aug 19, 2026