4.7 Article

Action mode of cranberry anthocyanin on physiological and morphological properties of Staphylococcus aureus and its application in cooked meat

期刊

FOOD MICROBIOLOGY
卷 94, 期 -, 页码 -

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ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.fm.2020.103632

关键词

Staphylococcus aureus; Cranberry anthocyanin; Antimicrobial activity; Action mode; Application

资金

  1. open fund of the key laboratory of dairy science of the ministry of education at Northeast Agricultural University [KLDS-18-007]

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The study found that cranberry anthocyanin has effective antibacterial activity against Staphylococcus aureus and has the potential to be used as a natural preservative to inhibit the growth of food pathogens. Its antibacterial mechanism includes reducing intracellular ATP and soluble protein levels, disrupting cell membrane structure, and causing cytoplasmic leakage.
This study researched the action mode of cranberry anthocyanin (CA) against Staphylococcus aureus and the effect of CA on the counts of S. aureus and the quantity of cooked meat during storage. The antibacterial effect was assessed by minimum inhibitory concentration (MIC) and survival populations of S. aureus strains after CA treatments. The changes in intracellular adenosine 5'-triphosphate (ATP) concentration, cell membrane potential, content of bacterial protein and cell morphology were analyzed to reveal possible action mode. Application potentials of CA as antimicrobial agent were assessed during storage of cooked pork and beef. The result showed that the MIC of CA against S. aureus strains was 5 mg/mL. Approximately 8 log CFU/mL of S. aureus strains can be completely inhibited after treatment with 2.0 MIC of CA for 0.5 h. Treatments of CA resulted in lower intracellular ATP and soluble protein levels, damaged membrane structure and leakage of cytoplasmic. Application of CA on cooked pork and beef caused a significant decrease in S. aureus counts and pH values, and color-darkening compared with control samples. These findings demonstrated that CA played an effective antimicrobial against S. aureus and had a potential as natural preservative to inhibit the growth of food pathogens.

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