CClinicalTrials.gg
RecruitingNCT07816601Updated Sep 11, 2026

Donor Breast Milk 2

An interventional study of Ferrous Sulfate Oral Product in Iron Deficiency Anemia, sponsored by AdventHealth. Recruiting at 1 site in United States. Open to participants aged 29 Weeks to 33 Weeks. Per ClinicalTrials.gov, last updated 2026-09-11.

Sponsored by AdventHealth · Not applicable, Interventional, and Treatment

Phase
Not applicable
Study type
Interventional
Enrollment
17
Allocation
Not applicable
Ages
29 Weeks to 33 Weeks
Sex
All
01

Study summary

The goal of this clinical trial is to determine the serum ferritin level and hematocrit level in very preterm infants receiving donor breast milk(DBM) with an early iron supplementation protocol . The main questions it aims to answer are: Does earlier iron supplementation provide increased ferritin levels at 14 and 28 days of life in subjects fed primarily donor breast milk?

Iron supplementation will be implemented when the infant achieves 80ml/kg/day of enteral feeds, as contrasted to the current protocol of full feeds (140 to 160ml/kg/day), the latter usually by Day 14 of life.

At day of life(DOL) 14 (± 4 days), a blood sample will be obtained for serum ferritin determination. Similarly, a second blood draw would be performed at day of life 28 (± 4 days) or prior to discharge, whichever comes earlier

Read the detailed description

In preterm and low birth weight (LBW) infants, moderate-certainty evidence indicates that feeding with commercial infant formula compared with donor breast milk (DBM), either as a supplement to maternal expressed breast milk (MBM) or as a sole diet, results in higher rates of weight gain, linear growth, and head growth but is associated with a higher risk of developing necrotizing enterocolitis (NEC)1-5. Despite the decreased incidence of NEC, DBM has been shown to be inferior to MBM in terms of overall growth. This is attributed to the fact that DBM contains significantly less protein, fat and energy than the milk provided by the mothers of preterm infants. Hence, it is considered standard of care to supplement MBM and DBM with commercial fortifiers.

Yet, considering the extraordinarily high morbidity and mortality, along with the significant economic burden, associated with NEC, the current standard of care is to provide DBM, initially unfortified and subsequently fortified, in lieu of formula in cases where MBM is unavailable or contraindicated. Such DBM, provided by local milk banks are pasteurized prior to shipment, according to standard protocols. Evidence exists for significantly lower iron content in post-pasteurized DBM as compared to pre-pasteurized DBM.

Results from a prospective observation clinical study in 2024 at Advent Health for Children in 34 very preterm infants randomized to receive either DBM or MBM and adjusted for duration of cord clamping, fortification progression and iron supplementation practice, demonstrate that very preterm infants fed DBM have a significantly lower ferritin level at 2 weeks (178.47 vs. 230.06 ng/ml, p=0.04) and hematocrit at 4 weeks (27.41 vs. 32.05%, p= 0.03) (Pulickal et. al. PAS 2025) These reduced levels of serum ferritin and hematocrit levels in DBM fed infants would be important as evidence suggests that iron levels have a correlation with neurodevelopmental outcome. A post-hoc analysis of 692 infants enrolled in the PENUT study of the NRN of the NICHD demonstrated a positive association between iron dose at 60 days and cognitive outcomes at 2 years 9. Similarly, data from a single center tertiary center showed that delayed cord clamping in term infants was associated with higher ferritin levels and greater brain myelination at 4 months of age 10. This was further supported in a study of 540 preterm and term infants in Nepal that showed delayed cord clamping increased ferritin levels and decreased the incidence of anemia at 8 months and 12 months 11.

An opportunity exists for appropriate clinical intervention with earlier iron supplementation based on the results of our study. Optimizing the timing of iron supplementation in DBM fed infants could attenuate the differences in hematological parameters and possibly contribute to improved neuro-developmental outcome by avoiding iron deficiency at a critical stage of infants' neurodevelopment.

The investigational component of this research is: Iron supplementation ( Ferrous sulfate, 2-4 mg/kg/day depending on the infant's body weight) will be implemented early ( approximately 4-6 days of life) when the infant achieves 80ml/kg/day of enteral feeds, as contrasted to the current protocol of full feeds (140 to 160ml/kg/day), the latter usually by Day 14 of life. At DOL 14 (± 4 days), a blood sample (0.5 mL) will be obtained for serum ferritin and hematocrit determination. Similarly, a second blood draw would be performed at DOL 28 (± 4 days) or prior to discharge, whichever comes earlier, for serum ferritin and hematocrit determination. These samples will be obtained from routine clinical blood draws thus minimizing pain and discomfort. The hematocrit may be part of standard clinical care involving routine weekly monitoring.

02

Conditions studied

  • Iron Deficiency Anemia

Keywords

  • preterm infant
  • neonate
  • ferritin
  • iron supplementation
  • donor breast milk
  • maternal breast milk
  • low birth weight
03

Who can participate

Ages eligible
29 Weeks to 33 Weeks
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

  • 1. All preterm infants born between 29.0-32.6 weeks of gestational age and admitted to the NICU at Advent Health for Children 2. Infants likely to be receiving DBM between 5 to 14 days of life 3. Infants receiving >50% of the feeding volume by DBM will be considered to have received DBM.

Exclusion criteria

Exclusion Criteria:

  1. Death prior to completion of participation or extremis with likelihood of death prior to completion of participation in the study
  2. Blood transfusion as determined by clinical team during the study
  3. Major congenital anomaly or genetic syndrome and major surgical GI conditions that preclude feeding
04

Study design

Phase
Not applicable
Primary purpose
Treatment
Allocation
Not applicable
Intervention model
Single group
Masking
None (open label)
Enrollment
17 participants (estimated)

Study arms

  • Experimental
    Very preterm infants

    Drug: Ferrous Sulfate Oral Product

Interventions

  • DrugFerrous Sulfate Oral Product

    Dietary Supplement

05

What researchers measure

Primary outcomes

  1. To determine the serum ferritin(ng/ml) level in very preterm infants receiving DBM with an early iron supplementation protocol.

    To determine the serum ferritin(ng/ml) level in very preterm infants receiving DBM with an early iron supplementation protocol.

    Time frame: At 14 days of life(+/- 4 days) and at 28 days of life(+/- 4 days)

  2. To determine the hematocrit level(%) in very preterm infants receiving DBM with an early iron supplementation protocol

    To determine the hematocrit level(%) in very preterm infants receiving DBM with an early iron supplementation protocol

    Time frame: At 14 days of life(+/- 4 days) and at 28 days of life(+/- 4 days)

06

Study locations

1 of 1 sites recruiting
  • AdventHealth Orlando
    Orlando, Florida 32803, United States
    Recruiting
07

References and documents

Publications

  • Kc A, Rana N, Malqvist M, Jarawka Ranneberg L, Subedi K, Andersson O. Effects of Delayed Umbilical Cord Clamping vs Early Clamping on Anemia in Infants at 8 and 12 Months: A Randomized Clinical Trial. JAMA Pediatr. 2017 Mar 1;171(3):264-270. doi: 10.1001/jamapediatrics.2016.3971. PubMed 28114607 ↗
  • Mercer JS, Erickson-Owens DA, Deoni SCL, Dean DC 3rd, Collins J, Parker AB, Wang M, Joelson S, Mercer EN, Padbury JF. Effects of Delayed Cord Clamping on 4-Month Ferritin Levels, Brain Myelin Content, and Neurodevelopment: A Randomized Controlled Trial. J Pediatr. 2018 Dec;203:266-272.e2. doi: 10.1016/j.jpeds.2018.06.006. Epub 2018 Jul 6. PubMed 30473033 ↗
  • German KR, Vu PT, Comstock BA, Ohls RK, Heagerty PJ, Mayock DE, Georgieff M, Rao R, Juul SE; PENUT Consortium. Enteral Iron Supplementation in Infants Born Extremely Preterm and its Positive Correlation with Neurodevelopment; Post Hoc Analysis of the Preterm Erythropoietin Neuroprotection Trial Randomized Controlled Trial. J Pediatr. 2021 Nov;238:102-109.e8. doi: 10.1016/j.jpeds.2021.07.019. Epub 2021 Jul 27. PubMed 34324880 ↗
  • Mohd-Taufek N, Cartwright D, Davies M, Hewavitharana AK, Koorts P, McConachy H, Shaw PN, Sumner R, Whitfield K. The effect of pasteurization on trace elements in donor breast milk. J Perinatol. 2016 Oct;36(10):897-900. doi: 10.1038/jp.2016.88. Epub 2016 Jun 2. PubMed 27253894 ↗
  • Mannel R, Peck JD. Outcomes Associated With Type of Milk Supplementation Among Late Preterm Infants. J Obstet Gynecol Neonatal Nurs. 2018 Jul;47(4):571-582. doi: 10.1016/j.jogn.2017.11.005. Epub 2017 Dec 27. PubMed 29287170 ↗
  • Stoltz Sjostrom E, Ohlund I, Tornevi A, Domellof M. Intake and macronutrient content of human milk given to extremely preterm infants. J Hum Lact. 2014 Nov;30(4):442-9. doi: 10.1177/0890334414546354. Epub 2014 Aug 12. PubMed 25117506 ↗
  • Hard AL, Nilsson AK, Lund AM, Hansen-Pupp I, Smith LEH, Hellstrom A. Review shows that donor milk does not promote the growth and development of preterm infants as well as maternal milk. Acta Paediatr. 2019 Jun;108(6):998-1007. doi: 10.1111/apa.14702. Epub 2019 Jan 25. PubMed 30565323 ↗
  • Quigley M, Embleton ND, McGuire W. Formula versus donor breast milk for feeding preterm or low birth weight infants. Cochrane Database Syst Rev. 2019 Jul 19;7(7):CD002971. doi: 10.1002/14651858.CD002971.pub5. PubMed 31322731 ↗
  • Arslanoglu S, Ziegler EE, Moro GE; World Association of Perinatal Medicine Working Group On Nutrition. Donor human milk in preterm infant feeding: evidence and recommendations. J Perinat Med. 2010 Jul;38(4):347-51. doi: 10.1515/jpm.2010.064. PubMed 20443660 ↗
  • Section on Breastfeeding. Breastfeeding and the use of human milk. Pediatrics. 2012 Mar;129(3):e827-41. doi: 10.1542/peds.2011-3552. Epub 2012 Feb 27. PubMed 22371471 ↗

Individual participant data

Plan to share: No

08

Registry details

Key details

Study ID
NCT07816601
Lead sponsor
AdventHealth
Responsible party
Sponsor
First posted
Sep 11, 2026
Start date
May 6, 2026
Primary completion
Nov 2027 (estimated)
Completion
Dec 2027 (estimated)
Last update
Sep 11, 2026

Study contacts

Anoop Pulickal, MD, PhD
Contact
Anoop.Pulickal.MD@adventhealth.com
407-303-2528
Deborah Ruth, RN
Contact
deborah.ruth@adventhealth.com
407-303-9186

Oversight

Data monitoring committee
No
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

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