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Diet Modulates the High Sensitivity to Systemic Infection in Newborn Preterm Pigs
by
Nguyen, Duc Ninh
, Moodley, Arshnee
, Thymann, Thomas
, Brunse, Anders
, Bæk, Ole
, Sangild, Per Torp
in
Animal models
/ Animals
/ Animals, Newborn
/ Baby foods
/ Bacteremia
/ Bacteriology
/ Birth
/ Catheters
/ Cattle
/ Cesarean Section
/ Clinical outcomes
/ Coagulase
/ Colostrum
/ Colostrum - metabolism
/ Diarrhea
/ Diet
/ Digestive system
/ Disease Models, Animal
/ Disseminated infection
/ Enteral feeding
/ Enteral nutrition
/ Enterocolitis - immunology
/ Experiments
/ Gastrointestinal tract
/ Hematology
/ Hogs
/ Humans
/ Immune clearance
/ Immune system
/ immunity
/ Immunity (passive)
/ Immunoglobulins
/ Immunology
/ infant
/ Infant Formula
/ Infant, Premature
/ Infants
/ Intestine
/ Intestines - pathology
/ Leukocytes (neutrophilic)
/ Lymphocytes T
/ Milk
/ Necrotizing enterocolitis
/ Neonates
/ Neutrophil Activation
/ Newborn babies
/ Nosocomial infections
/ Nutrition
/ Parenteral nutrition
/ Phagocytes
/ Physical activity
/ Plasma
/ Postpartum period
/ Premature babies
/ Premature Birth - immunology
/ preterm
/ Sepsis
/ Staphylococcal Infections - immunology
/ Staphylococcus epidermidis - physiology
/ Swine
2020
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Diet Modulates the High Sensitivity to Systemic Infection in Newborn Preterm Pigs
by
Nguyen, Duc Ninh
, Moodley, Arshnee
, Thymann, Thomas
, Brunse, Anders
, Bæk, Ole
, Sangild, Per Torp
in
Animal models
/ Animals
/ Animals, Newborn
/ Baby foods
/ Bacteremia
/ Bacteriology
/ Birth
/ Catheters
/ Cattle
/ Cesarean Section
/ Clinical outcomes
/ Coagulase
/ Colostrum
/ Colostrum - metabolism
/ Diarrhea
/ Diet
/ Digestive system
/ Disease Models, Animal
/ Disseminated infection
/ Enteral feeding
/ Enteral nutrition
/ Enterocolitis - immunology
/ Experiments
/ Gastrointestinal tract
/ Hematology
/ Hogs
/ Humans
/ Immune clearance
/ Immune system
/ immunity
/ Immunity (passive)
/ Immunoglobulins
/ Immunology
/ infant
/ Infant Formula
/ Infant, Premature
/ Infants
/ Intestine
/ Intestines - pathology
/ Leukocytes (neutrophilic)
/ Lymphocytes T
/ Milk
/ Necrotizing enterocolitis
/ Neonates
/ Neutrophil Activation
/ Newborn babies
/ Nosocomial infections
/ Nutrition
/ Parenteral nutrition
/ Phagocytes
/ Physical activity
/ Plasma
/ Postpartum period
/ Premature babies
/ Premature Birth - immunology
/ preterm
/ Sepsis
/ Staphylococcal Infections - immunology
/ Staphylococcus epidermidis - physiology
/ Swine
2020
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Diet Modulates the High Sensitivity to Systemic Infection in Newborn Preterm Pigs
by
Nguyen, Duc Ninh
, Moodley, Arshnee
, Thymann, Thomas
, Brunse, Anders
, Bæk, Ole
, Sangild, Per Torp
in
Animal models
/ Animals
/ Animals, Newborn
/ Baby foods
/ Bacteremia
/ Bacteriology
/ Birth
/ Catheters
/ Cattle
/ Cesarean Section
/ Clinical outcomes
/ Coagulase
/ Colostrum
/ Colostrum - metabolism
/ Diarrhea
/ Diet
/ Digestive system
/ Disease Models, Animal
/ Disseminated infection
/ Enteral feeding
/ Enteral nutrition
/ Enterocolitis - immunology
/ Experiments
/ Gastrointestinal tract
/ Hematology
/ Hogs
/ Humans
/ Immune clearance
/ Immune system
/ immunity
/ Immunity (passive)
/ Immunoglobulins
/ Immunology
/ infant
/ Infant Formula
/ Infant, Premature
/ Infants
/ Intestine
/ Intestines - pathology
/ Leukocytes (neutrophilic)
/ Lymphocytes T
/ Milk
/ Necrotizing enterocolitis
/ Neonates
/ Neutrophil Activation
/ Newborn babies
/ Nosocomial infections
/ Nutrition
/ Parenteral nutrition
/ Phagocytes
/ Physical activity
/ Plasma
/ Postpartum period
/ Premature babies
/ Premature Birth - immunology
/ preterm
/ Sepsis
/ Staphylococcal Infections - immunology
/ Staphylococcus epidermidis - physiology
/ Swine
2020
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Diet Modulates the High Sensitivity to Systemic Infection in Newborn Preterm Pigs
Journal Article
Diet Modulates the High Sensitivity to Systemic Infection in Newborn Preterm Pigs
2020
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Overview
Preterm infants are born with an immature immune system, limited passive immunity, and are at risk of developing bacteremia and sepsis in the postnatal period. We hypothesized that enteral feeding, with or without added immunoglobulins, improves the clinical response to systemic infection by coagulase negative staphylococci.
Using preterm cesarean delivered pigs as models for preterm infants, we infused live
(SE, 5 × 10
colony forming units per kg) systemically 0-3 days after birth across five different experiments. SE infection responses were assessed following different gestational age at birth (preterm vs. term), enteral milk diets (bovine colostrum, infant formula with or without added porcine plasma) and with/without systemic immunoglobulins. Pigs infected with SE were assessed 12-48 h for clinical variables, blood bacteriology, chemistry, hematology, and gut dysfunction (intestinal permeability, necrotizing enterocolitis lesions).
Adverse clinical responses and increased mortality were observed in preterm vs. term pigs, when infected with SE just after birth. Feeding bovine colostrum just after birth improved blood SE clearance and clinical status (improved physical activity and intestinal structure, fewer bone marrow bacteria), relative to pigs fed infant formula. A few days later, clinical responses to SE bacteremia (hematology, neutrophil phagocytic capacity, T cell subsets) were less severe, and less affected by different milk diets, with or without added immunoglobulins.
Prematurity increases the sensitivity of newborn pigs to SE bacteremia, potentially causing sepsis. Sensitivity to systemic SE infection decreases rapidly in the days after preterm birth. Both age and diet (parenteral nutrition, colostrum, milk, formula) may influence gut inflammation, bacterial translocation and systemic immune development in the days after birth in preterm newborns.
Publisher
Frontiers Media SA,Frontiers Media S.A
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