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Mechanism and antibacterial activity of vine tea extract and dihydromyricetin against *Staphylococcus aureus*

Food Science and Technology

Mechanism and antibacterial activity of vine tea extract and dihydromyricetin against *Staphylococcus aureus*

H. Liang, K. He, et al.

Discover the antibacterial power of vine tea extract and its active component, dihydromyricetin! This innovative research conducted by Haiyun Liang, Keke He, Ting Li, Shumei Cui, Meng Tang, Shaoyi Kang, Wei Ma, and Liya Song uncovers how these compounds effectively combat *Staphylococcus aureus* and show potential as food preservatives.

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~3 min • Beginner • English
Abstract
Vine tea (Ampelopsis grossedentata) has been approved as a new food ingredient in 2013. Both vine tea extract (VTE) and its active ingredient, 2R, 3R-Dihydromyricetin (DMY), showed good antibacterial activity. The mechanism of VTE and DMY against Staphylococcus aureus were evaluated by morphology observation, cell membrane and wall assay, protein assay, and DNA assay in this study. The results of SEM and TEM revealed that the VTE and DMY changed the morphology of S. aureus. The leakage of AKPase and β-galactosidase in treated groups demonstrated that the membrane integrity of S. aureus was disrupted. Meanwhile, the results of protein assay showed that VTE and DMY inhibited the expression of total proteins, and decreased activities of a few energy metabolism enzymes, total ATPase. Moreover, spectral and competitive analysis revealed that VTE and DMY interacted with DNA by groove and intercalation binding. Finally, the suspension experiments of Chinese cabbage and barley showed that inhibitors had strong inhibitory effect on bacteria growth. Overall, the results suggested that VTE and DMY may be potential food preservatives for inhibiting pathogen.
Publisher
Scientific Reports
Published On
Oct 29, 2020
Authors
Haiyun Liang, Keke He, Ting Li, Shumei Cui, Meng Tang, Shaoyi Kang, Wei Ma, Liya Song
Tags
Vine tea
Dihydromyricetin
Antibacterial
Staphylococcus aureus
Food preservatives
Membrane integrity
Protein expression
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