Bacterial Contamination of Mechanically Extracted Breast Milk
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Summary
The study provides evidence that these bacteria are in the breast milk directly after emission, and if procedures after extraction cause an increase of bacterial contamination, high concentrations of bacteria are frequently observed in expressed breast milk.
- Type
- article
- Published
- 2013-06-13
- Cited by
- 14
- References
- 40
- OpenAlex
- https://openalex.org/W23765708
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:25685077
Keywords
Biology
References
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- Gram-negative bacilli in human milk feedings: quantitation and clinical consequences for premature infants.
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- Recommendations for Handling of Mother's Own Milk
- Bacteriological Screening of Donor Human Milk Before and After Holder Pasteurization
- Contaminated breast milk: A source of Klebsiella bacteremia in a newborn intensive care unit.
- Bacterial Contamination of Human Milk: Container Type and Method of Expression
Cited by
- Coagulase-negative staphylococci in gut of preterm neonates and in breast milk of their mothers
- Impact of Neonatal Intensive Care Unit Admission on Bacterial Colonization of Donated Human Milk
- Maternal adherence to guidance on breast milk collection process.
- Higher intake of coagulase-negative staphylococci from maternal milk promotes gut colonization with mecA-negative Staphylococcus epidermidis in preterm neonates
- Genetic relatedness of Gram-negative bacteria colonizing gut and skin of neonates and mother’s own milk
- Effect of Target Fortification on Osmolality and Microbiological Safety of Human Milk Over Time.
- Profiling potentially pathogenic bacteria from neonatal feeding tubes and sepsis cases
- Bacillus cereus spores and Staphylococcus aureus sub. aureus vegetative cells inactivation in human milk by high-pressure processing
- Expressed Breast Milk Contamination in Neonatal Intensive Care Unit
- Identification of Sensitive Raw Materials at A Milk Preparation Room of A Neonatal Intensive Care Unit in the Canselor Tuanku Muhriz Hospital
- Identification of Serratia marcescens in a mother's expressed breast milk
- Deciphering the Mechanism by Which Carbon Dioxide Extends the Shelf Life of Raw Milk: A Microbiomics- and Metabolomics-Based Approach
- PHMT_A_311632 307..313
- Microbial contamination of medicines, medical devices, cosmetics, child and personal care products: a comprehensive review of secondary contamination risks in home-use settings
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