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Amnioinfusion for Intrauterine Neuroprotection

Amnioinfusion for Intrauterine Neuroprotection: A Pilot Randomized Controlled Trial

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05513690
Enrollment
26
Registered
2022-08-24
Start date
2022-06-15
Completion date
2024-07-01
Last updated
2022-08-29

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

Conditions

Lactic Acidemia

Keywords

Umbilical cord gases, Neonatal neurologic morbidity, Amnioinfusion

Brief summary

Hypoxic ischemic encephalopathy (HIE), a serious brain injury in infants, occurs in 2-9 per 1,000 infants after delivery. Up to 60% of infants diagnosed with HIE die and 25% of the survivors have long-term neurologic deficits. Risk factors for HIE include abnormal fetal heart tracings and intrauterine infection. Therapeutic whole-body cooling of infants with HIE is standard of care after delivery, with only 7-9 at-risk infants needing to be treated to prevent one infant from suffering long-term neurologic deficits. However, animal studies show that therapeutic cooling may be more beneficial when given in utero at the time of an insult, rather than after delivery. Though therapeutic cooling in utero has yet to be explored in humans, an established in utero fluid delivery system during labor-amnioinfusion-provides a unique opportunity for in utero intervention. We propose a pilot randomized controlled trial to test the feasibility and preliminary effects of room temperature amnioinfusion on tissue injury including HIE.

Detailed description

Hypoxic ischemic encephalopathy (HIE), a serious brain injury in infants, occurs in 2-9 per 1,000 infants after delivery. Up to 60% of infants diagnosed with HIE die and 25% of the survivors have long-term neurologic deficits. Risk factors for HIE include abnormal fetal heart tracings and intrauterine infection. In addition, maternal fever is associated with a four to five-fold increased risk of HIE. Two phases leading to HIE are recognized: neuronal death from cellular hypoxia and further injury from exhaustion of energy stores. Therapeutic cooling of infants with HIE provides neuroprotection by reducing metabolic demands and suppressing toxic processes. Studies show that whole-body cooling of infants reduces the risk of neurologic motor and cognitive deficits with brain imaging suggesting that human infants who are cooled earlier have a greater benefit. Moreover, animal studies show that brain cooling may be more beneficial when given in utero at the time of an insult during the first phase of cellular hypoxia, rather than after delivery. Though therapeutic cooling in utero has yet to be explored in humans, an established in utero fluid delivery system-amnioinfusion- provides a unique opportunity for in utero intervention. Amnioinfusion (AI), the administration of fluid via an intrauterine catheter inserted through the cervix, is a common intervention during labor to improve fetal heart tracings and reduce cesarean delivery. Introduced in 1983, it used warm saline due to a theoretical concern for fetal shock from cold fluids. Subsequent studies showed no advantage of warm fluids, and fluids at room temperature (\ 25oC) have become standard. AI can lower in utero temperature by 1.0°C (36.4°C versus 37.4°C, P\<0.01). This 1.0°C degree of cooling has been associated a 6% reduction in brain energy utilization which could be protective against neurological injury. This suggests that AI can be leveraged to lower in utero and fetal temperatures to protect against neurologic injury. Expanding the indication for AI is a novel approach to reduce neurologic injury in utero. However, there is a gap in the acceptability and efficacy of amnioinfusion for this indication. To fill this gap, we propose a pilot randomized controlled trial to test the feasibility and effects of amnioinfusion with fluids at room temperature on infants at high risk for neurologic injury including HIE.

Interventions

PROCEDUREAmnioinfusion at room temperature (intervention arm)

Routine amnioinfusion and intrauterine temperature probe sensor

Sponsors

Foundation for Society of Maternal-Fetal Medicine
CollaboratorUNKNOWN
Women and Infants Hospital of Rhode Island
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Intervention model description

Amnioinfusion for intrapartum risk factors for neurologic morbidity versus no amnioinfusion.

Eligibility

Sex/Gender
FEMALE
Age
18 Years to No maximum
Healthy volunteers
Yes

Inclusion criteria

* Maternal age \>18 years old * Singleton * Term gestational age at time of admission (\>37 weeks 0 days);

Exclusion criteria

* Major fetal anomaly * Active substance or alcohol use * Contraindications to intrauterine pressure catheter placement (e.g. placental previa, human immunodeficiency virus, Hepatitis C) * Fetal growth restriction * Inability to consent

Design outcomes

Primary

MeasureTime frameDescription
Umbilical artery lactateWithin 15 minutes of deliveryCord blood lactate at the time of delivery

Secondary

MeasureTime frameDescription
Number of eligible patients who consent to studyThroughout study completion, an average of 1 yearNumber of patients approached and consented
Ottawa Decisional self-efficacy scaleScale collected once from date of delivery following randomization until hospital discharge but within the first weekThe Decisional Self-Efficacy Scale measures self-confidence or belief in one's ability to make decisions, including participate in shared decision making will be compared between arms. The scale consists of 11 questions on a five-point Likert scale from 0 to 5. Scores range from 0 (not at all confident) to 100 (very confident). A score of 0 means extremely low self efficacy and a score of 100 means extremely high self efficacy.
Labour Agentry ScaleScale collected once from date of delivery following randomization until hospital discharge but within the first weekLabour Agentry Scale, an instrument measuring expectancies and experiences of personal control during childbirth will be compared between arms. The Labour Agentry Scale consists of 29 short affirmative statements (e.g. 'I felt confident' and 'I felt tense'). Respondents were asked to rate each statement on a seven-point Likert scale from 1 (representing rarely) to 7 (representing almost always). Possible total scores for the Labour Agentry Scale range from 29 (indicating feelings of control rarely) to 203 (reflecting feelings of control almost always).
Intrauterine temperature10-minute intervals from date/time of randomization until date/time of delivery, assessed only until fetus is delivered or end of second stage of labor.Temperature of uterus
Neonatal core temperatureWithin 10 minutes of birthCore temperature

Other

MeasureTime frameDescription
Montevideo units10-minute intervals from date/time of randomization until date/time of delivery, assessed only until fetus is delivered or end of second stage of labor.Calculated from intrauterine pressure catheter
Number of patients with composite and individual neonatal morbidityCollected following delivery and/or within 6 weeks postpartumNeonatal death, neonatal respiratory distress syndrome, supplemental oxygen, mechanical ventilation, intubation, sepsis confirmed by culture, hypoxic-ischemic encephalopathy, seizures, Apgar score \<5, and neonatal intensive care unit admission
Number of patients with composite and individual maternal morbidityCollected following delivery and/or within 6 weeks postpartumAmniotic fluid embolism, acute respiratory distress syndrome, pulmonary edema, intubation, post-partum hemorrhage, blood transfusion, hysterectomy, disseminated intravascular coagulation, endometritis, chorioamnionitis, and sepsis.
Number of patients with placental pathology availableFor all patients who are randomization until date/time of delivery of placenta up to 6 weeks or 36 days after delivery.Pathologic lesions
Electronic fetal monitoring10-minute intervals from date/time of randomization until date/time of delivery, assessed only until fetus is delivered or end of second stage of labor.Electronic fetal monitoring recordings will be obtained with external and internal monitors, as clinically indicated. Five elements of the electronic fetal monitoring recording will be extracted using the strict and unambiguous definitions from the Eunice Kennedy Shriver National Institute of Child Health and Human Development (NICHD) criteria and then used to categorize the electronic fetal monitoring recordings into 1 of the 3 accepted categories: I, II, or III, as well as quantitatively and semi-quantitatively. The percent of each of the five categories, individual 5 elements will be collected. This methodology has been previously validated/used and published. https://pubmed.ncbi.nlm.nih.gov/29408586/.

Countries

United States

Contacts

Primary ContactSue Elmore, MS,CRRP
selmore@carene.org401-274-1122

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026