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CompletedNCT00788866POM-1Updated Oct 17, 2014

Impact of Maternal Pomegranate Juice on Brain Injury in Infants With Intrauterine Growth Restriction (IUGR)

An interventional study of Pomegranate Juice and Placebo in Intrauterine Growth Restriction, sponsored by Washington University School of Medicine. Completed at 1 site in United States. Open to female participants. Per ClinicalTrials.gov, last updated 2014-10-17.

Sponsored by Washington University School of Medicine · Not applicable, Interventional, and Prevention

Phase
Not applicable
Study type
Interventional
Enrollment
80
Allocation
Randomized
Sex
Female
01

Study summary

Infants with intrauterine growth restriction are known to be at increased risk for long term neurodevelopmental delay into adulthood. The main mechanism for this is likely decreased blood flow to the brain secondary to altered placental blood flow. Antioxidants may serve to protect the developing brain from this process. Animal studies have shown that pomegranate juice protects the fetal brain from injury in a model of stroke. This clinical trial is intended to evaluate if giving mothers pomegranate juice during the last several weeks of pregnancy can help protect intrauterine growth restricted babies' brains.

Read the detailed description

This study is divided into two separate phases.

Phase I evaluated if the antioxidants produced from pomegranate juice cross the placenta in normal healthy pregnancies. Twenty women were enrolled, 10 who will take 8 oz of pomegranate juice daily and then 10 others who will take 8 oz of placebo juice without pomegranate daily. Blood samples were first collected from the woman at the time enrollment and then from both the woman and the cord blood at the time of delivery. These blood samples were analyzed to measure the levels of antioxidant metabolites from the pomegranate juice. This phase was deigned to confirm placental transfer of antioxidant pomegranate metabolites. The results confirmed placenta transfer of pomegranate metabolites. Further, placental tissues from 12 patients (4 in the pomegranate group and 8 in the control group) were collected for analysis of oxidative stress. The preliminary in vivo results were extended to oxidative stress and cell death assays in vitro. Placental explants and cultured primary human trophoblasts were exposed to pomegranate juice or glucose (control) under defined oxygen tensions and chemical stimuli. We found decreased oxidative stress in term human placentas from women who labored after prenatal ingestion of pomegranate juice compared with apple juice as control. Moreover, pomegranate juice reduced in vitro oxidative stress, apoptosis, and global cell death in term villous explants and primary trophoblast cultures exposed to hypoxia, the hypoxia mimetic cobalt chloride, and the kinase inhibitor staurosporine. Punicalagin, but not ellagic acid, both prominent polyphenols in pomegranate juice, reduced oxidative stress and stimulus-induced apoptosis in cultured syncytiotrophoblasts.

Phase II focuses on pregnancies with intrauterine growth restriction. If they meet entry criteria, then woman will be enrolled and randomized into 1 of 2 groups.

Treatment group: Expecting mothers in this group will start a daily regimen of 8 oz glass of pomegranate juice. They will keep a daily diary documenting their compliance. They will continue this daily intake up until delivery of their infant.

Placebo group: These women will start a daily regimen of an 8 oz of pomegranate free juice placebo that matches taste, calories, and appearance to regular pomegranate juice but lacks polyphenols. They will also keep a diary of daily intake to help ensure compliance similar to the treatment group. They too will continue to take the placebos up until the time they deliver.

Both groups: All women will be followed up on a weekly basis to assess compliance. A detailed diet history will be collected from the women at the time of enrollment, midway through the 3rd trimester and at the time of delivery. Furthermore, all women will have a detailed social history collected at the time of enrollment. Upon delivery, cord blood will be collected and sent for ellagic acid, a polyphenic component. All placental material will be sent for formal pathological exam and analyzed for markers of placental injury.

If clinically stable, the infants will receive MRI evaluations to evaluate for possible brain injury.

02

Conditions studied

  • Intrauterine Growth Restriction

Keywords

  • Neuroprotection
  • Antioxidants
  • Neonatal brain injury
  • Pomegranate juice
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In context

Brain Injuries

2,113 studies on the registry are indexed under Brain Injuries; 385 are open to participants now.

This study's enrollment of 80 is above the median of 48 across 1,331 interventional studies indexed under Brain Injuries.

Browse Brain Injuries studies →

Lead sponsor

Washington University School of Medicine is the lead sponsor of 1,765 studies on the registry; 271 are open to participants now.

Of its 324 completed or terminated interventional studies of FDA-regulated products, 212 (65%) have results posted.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
Child (0–17), Adult (18–64), Older adult (65+)
Sexes eligible
Female
Accepts healthy volunteers
No

Eligibility criteria

Phase I:

Inclusion Criteria:

  • Healthy expecting mothers two weeks from their expected due dates
  • No evidence of IUGR
  • No evidence of fetal problems

Phase II:

Inclusion Criteria:

  1. Expecting mother with a fetal diagnosis of intrauterine growth restriction (IUGR) defined by estimated fetal weight \<10th percentile for gestational age
  2. 24 - 34 weeks gestation

Exclusion Criteria:

  1. Major congenital abnormalities
  2. Known fetal chromosomal disorder
  3. Maternal illicit drug use
  4. Maternal IV and Hepatitis C infection
  5. Premature rupture of membranes
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Study design

Phase
Not applicable
Primary purpose
Prevention
Allocation
Randomized
Intervention model
Single group
Masking
Double (Care provider, Investigator)
Enrollment
80 participants (actual)

Study arms

  • Experimental
    Pomegranate juice

    This arm with receive 8oz of pomegranate juice per day.

    Dietary Supplement: Pomegranate Juice

  • Placebo comparator
    Placebo

    This group will take 8oz of placebo juice that lacks pomegranate daily

    Dietary Supplement: Placebo

Interventions

  • Dietary supplementPomegranate Juice

    8 oz of pomegranate juice daily vs placebo juice identical in all respects except pomegranate

  • Dietary supplementPlacebo

    Juice that matches the makeup of pomegranate in regards to sugar, vitamin C, etc. The only difference is that it lacks pomegranate juice.

06

What researchers measure

Primary outcomes

  1. CNS injury at term by MR Imaging

    1. Qualitative MRI injury- white matter injury (WMI) and gray matter injury (GMI) 2. Brain Metrics on MR imaging 3. Diffusion- apparent diffusion coefficient (ADC) and fractional anisotropy (FA) 4. Spectroscopy- lactate and NAA levels in the basal ganglia 5. Advanced MRI development indices - brain volumes, surface based morphology (SBM, folding indices)

    Time frame: 36 - 41 weeks (post delivery)

Secondary outcomes

  1. Placental morphology: weight and size

    Time frame: At birth

  2. Gestational age at delivery

    Time frame: At birth

  3. Birth weight

    Time frame: At birth

  4. Ellagic acid levels from cord blood

    Time frame: To discharge

  5. Dubowitz neurologic exam at term

    Time frame: To discharge

  6. Time to full oral feeds

    Time frame: To discharge

  7. ROP

    Time frame: To discharge

  8. NEC

    Time frame: To discharge

  9. Length of ventilatory support

    Time frame: To discharge

  10. Time to discharge

    Time frame: To discharge

  11. Placental micrography: number of villi, vasculature, collagen content

    Time frame: At birth

  12. Placental immunohistochemistry: proliferation, apoptosis and differentiation

    Time frame: At birth

  13. Placental: immunoassays: HSP90, lipid hydroperoxide, nitrotyrosine assay, paraoxonase 1 expression, superoxide dismutases

    Time frame: At birth

  14. Placental RNA microarray

    Time frame: At birth

  15. Umbilical cord gases

    Time frame: At birth

  16. Pregnancy complications: preeclampsia

    Time frame: At birth

  17. Neonatal wellbeing: APGAR scores, need for resuscitation

    Time frame: At birth

Other outcomes

  1. Maternal compliance

    1. Daily dietary report 2. Increase in polyphenol levels

    Time frame: To delivery

  2. Analysis both by 'intention to treat' and 'as treated'

    Time frame: To discharge

07

Study locations

1 site
  • St Louis Children's Hospital
    St Louis, Missouri 63110, United States
08

References and documents

Publications

  • Matthews LG, Smyser CD, Cherkerzian S, Alexopoulos D, Kenley J, Tuuli MG, Nelson DM, Inder TE. Maternal pomegranate juice intake and brain structure and function in infants with intrauterine growth restriction: A randomized controlled pilot study. PLoS One. 2019 Aug 21;14(8):e0219596. doi: 10.1371/journal.pone.0219596. eCollection 2019. PubMed 31433809 ↗
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Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Oct 17, 2014, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
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Registry details

Key details

Study ID
NCT00788866
Lead sponsor
Washington University School of Medicine
Collaborators
POM Wonderful LLC, University of California, Los Angeles
Responsible party
Methodius Tuuli, MD, MPH (Assistant Professor, Washington University Early Recognition Center) — Principal investigator
First posted
Nov 11, 2008
Start date
Dec 2008
Primary completion
Oct 2014
Completion
Oct 2014
Last update
Oct 17, 2014

Study contacts

Michael Nelson, MD, MPH
principal investigator · Washington University School of Medicine

Oversight

Data monitoring committee
No
View the source record on ClinicalTrials.gov ↗

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