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Published on: May 26, 2021
A Pilot Study of Human Milk to Reduce Intestinal Inflammation After Bone Marrow Transplant
Pooja Khandelwal1, Heidi Andersen2, Lindsey Romick-Rosendale3
11 Division of Bone Marrow Transplantation and Immune Deficiency, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio.
Insights
Human milk administration in children undergoing bone marrow transplant (BMT) significantly reduced intestinal inflammation markers. This suggests human milk is a valuable adjunct therapy post-BMT for pediatric patients.
Area of Science:
- Pediatric Hematology/Oncology
- Gastroenterology
- Immunology
Background:
- Bone marrow transplantation (BMT) in children can lead to significant intestinal inflammation.
- Early nutritional support is crucial for managing post-transplant complications.
- Human milk is known for its immunomodulatory and protective properties.
Purpose of the Study:
- To evaluate the impact of human milk administration on intestinal inflammation in pediatric BMT recipients.
- To compare the effects of human milk versus standard formula on gut health markers post-BMT.
Main Methods:
- A cohort of children aged 0-5 years undergoing BMT received either human milk or standard formula.
- Nutritional interventions were administered from day -3 to day +14 relative to BMT.
- Stool metagenomics, metabolomics, plasma cytokine levels, and T cell activation markers were analyzed.
Main Results:
- Human milk administration was associated with decreased plasma levels of IL-8, IL-10, and REG3α.
- Higher abundance of certain bacteria (e.g., Escherichia coli, Adenovirus) and specific fecal metabolites were observed in the control group.
- Reduced expression of CD69 on CD8+ T cells was noted in the human milk group compared to controls.
Conclusions:
- Early administration of human milk in pediatric BMT patients effectively lowers markers of intestinal inflammation.
- Human milk serves as a beneficial adjunct therapy, improving gut health outcomes after bone marrow transplantation.
Objective:
Human milk administration in the early peritransplant period would lower intestinal inflammation after bone marrow transplant (BMT).
Materials And Methods:
Children 0-5 years undergoing BMT received either a ready-to-feed human milk preparation designed for these children (Prolacta Bioscience, Duarte, CA) or standard formula. Babies breastfeeding at the time of BMT were also enrolled on the human milk arm. Human milk was administered from day -3 until day +14 after BMT. Metagenomic shotgun sequencing and metabolomics of stool, plasma cytokines, and regenerating islet-derived 3α (REG3α) levels were measured at enrollment and day +14. Human leukocyte antigen-DR isotype (HLA-DR), CD38, and CD69 expression on T cells were evaluated at day +21.
Results:
Forty-six children were enrolled, 32 received human milk (donor milk n = 23, breastfeeding babies n = 9), and 14 were controls who received standard feeds supervised by a BMT dietician. Twenty-four patients received at least 60% of goal human milk and were evaluable. Plasma interleukin (IL)-8 (p = 0.04), IL-10 (p = 0.02), and REG3α (p = 0.03) were decreased in the human milk cohort. Peripheral blood CD69+ CD8+ T cells were higher in controls (p = 0.01). Species abundance of Adenovirus (p = 0.00034), Escherichia coli (p = 0.0017), Cryptosporidium parvum (p = 0.0006), Dialister invisus (p = 0.01), and Pseudomonas aeruginosa (p = 0.05) from stool was higher in controls. Stool alanine, tyrosine, methionine, and the ratio of fecal alanine to choline and phosphocholine were higher in controls (p < 0.05). No difference was observed in stool propionate and butyrate levels as measures of short-chain fatty acids between the two cohorts.
Conclusions:
Administration of human milk resulted in decreased markers of intestinal inflammation and could be a valuable adjunct for patients after BMT.
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