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Published on: February 15, 2018
Bacillus subtilis-Derived Surfactin Alleviates Offspring Intestinal Inflammatory Injuries Through Breast Milk
Qi Zhang1, Shuang Xie1, Qiu Zhong1
1MOE Joint International Research Laboratory of Animal Health and Food Safety, College of Veterinary medicine, Nanjing Agricultural University, Weigang 1, Nanjing 210095, China.
Insights
Maternal consumption of surfactin enhances breast milk immunity, improving offspring gut health and development. This study reveals surfactin
Area of Science:
- Microbiology and Immunology
- Neonatal Health and Nutrition
- Gastrointestinal Physiology
Background:
- Enteric diseases significantly impact infant health, underscoring the critical role of early-life immunity and maternal protection.
- Surfactin, a peptide from Bacillus subtilis, possesses immunomodulatory effects, but its impact on offspring via maternal gut pathways remains unclear.
- This study investigates how maternal surfactin intake affects breast milk's immunological composition and subsequent neonatal intestinal health.
Purpose of the Study:
- To determine the effects of maternal surfactin supplementation on the immunological properties of breast milk.
- To evaluate the impact of surfactin-modified breast milk on neonatal intestinal development and immunity.
- To elucidate the mechanisms by which maternal surfactin influences offspring gut health.
Main Methods:
- Gravid mice received surfactin in drinking water from conception to 21 days postpartum.
- Cross-fostering experiments were performed to isolate the effects of breast milk.
- Neonatal intestinal morphology, immune cell populations, gene expression, and responses to Salmonella typhimurium and LPS were analyzed.
Main Results:
- Pups nursed by surfactin-supplemented dams exhibited increased body weight, improved intestinal villi length and crypt depth, and enhanced mucin and antimicrobial peptide gene expression.
- Cross-fostering demonstrated that surfactin-modified milk reduced intestinal damage, inflammation, and oxidative stress in pups challenged with Salmonella typhimurium.
- Surfactin in milk suppressed LPS-induced pro-inflammatory factors in macrophages and promoted a shift from M1 to M2 macrophage polarization, increasing anti-inflammatory cytokines like IL-4, IL-10, and TGF-β.
Conclusions:
- Maternal surfactin consumption beneficially modulates breast milk composition, enhancing neonatal gut immunity and development.
- Surfactin's immunomodulatory effects are transferable via breast milk, offering a potential nutritional strategy for infant health.
- Understanding maternal dietary interventions can optimize breast milk for improved infant gastrointestinal health and protection against enteric diseases.
Background:
Enteric and diarrheal diseases pose a significant threat to infant health, highlighting the importance of immune defenses in early life, especially maternal protection, in establishing a robust gastrointestinal environment. Surfactin, a bioactive peptide from Bacillus subtilis, has immunomodulatory properties, yet its influence on offspring via maternal gut interference is not fully understood. This study examines the effects of maternal surfactin consumption on breast milk's immunological properties and its consequent effects on neonatal intestinal health.
Methods:
Twenty-eight gravid mice were randomly categorized into two cohorts and were given surfactin or not in drinking water from one week after conception to 21 days postpartum. Cross-fostering experiments were conducted within 12 h after birth. Pups from the surfactin-supplemented dams were fostered and nursed by the control dams, while the pups from the control dams were nursed by the surfactin-supplemented dams.
Results:
The findings show that the pups from the surfactin-supplemented dams had increased body weight, improved intestinal morphology with longer villus and deeper crypts, the upregulation of genes related to mucins and antimicrobial peptides, and an increase in IgA+ and CD3+ T cells within the intestinal mucosa. Further, the cross-fostering experiments suggested that the pups nursed by the surfactin-supplemented dams gained more weight, had less intestinal damage, less inflammation, and lower oxidative stress levels induced by Salmonella typhimurium, indicating the immunological benefits of surfactin conveyed through breast milk. Additionally, the expression of pro-inflammatory factors, including nitric oxide, TNF-α, IL-1β, IL-6, MCP-1, and ROS, induced by LPS in the macrophages was significantly inhibited with milk from the surfactin-supplemented dam (MSD) treatment. Interestingly, the MSD treatment induced a shift in macrophage polarization from pro-inflammatory (M1-like) to anti-inflammatory (M2-like), evidenced by the decreased expression of IL-12p40 and iNOS and the increased expression of CD206, TGF-β, and Arg-1. In terms of mechanism, surfactin improved the contents of the anti-inflammatory factors IL-4, IL-10, and TGF-β in the breast milk.
Conclusions:
This research contributes to understanding how maternal interference can modulate breast milk composition, influence infant gastrointestinal development and immunity, and provide nutritional strategy insights.
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