Zinc Oxide Quantum Dots May Provide a Novel Potential Treatment for Antibiotic-Resistant IStreptococcus agalactiae/I in ILama glama/I

Streptococcus agalactiae is a significant pathogen that can affect both human beings and animals. The extensive current use of antibiotics has resulted in antibiotic resistance. In our previous research, we found that zinc oxide quantum dots (ZnO QDs) had inhibitory effects on antibiotic-resistant m...

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Veröffentlicht in:Molecules (Basel, Switzerland) Switzerland), 2023-06, Vol.28 (13)
Hauptverfasser: Zhou, Ziyao, Zhang, Ting, Chen, Yixin, Zhou, Xiaoxiao, Zhong, Yalin, Liu, Haifeng, Zhong, Zhijun, Hu, Yanchun, Liao, Fei, Wang, Xianxiang, Peng, Guangneng
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Sprache:eng
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Zusammenfassung:Streptococcus agalactiae is a significant pathogen that can affect both human beings and animals. The extensive current use of antibiotics has resulted in antibiotic resistance. In our previous research, we found that zinc oxide quantum dots (ZnO QDs) had inhibitory effects on antibiotic-resistant microorganisms. In this study, a strain of Streptococcus agalactiaeWJYT1 with a broad antibiotic-resistant spectrum was isolated and identified from Lama glama at Sichuan Agricultural University Teaching Animal Hospital. The genome for the resistance and virulence genes was analyzed. Additionally, the antibacterial effects and anti-virulence mechanism of ZnO QDs for S. agalactiaeWJYT1 were investigated. The results showed that the genome of S. agalactiaeWJYT1 is 1,943,955 bp, containing 22 resistance genes and 95 virulence genes. ZnO QDs have a good antibacterial effect against S. agalactiaeWJYT1 by reducing bacterial growth and decreasing the expression of virulence genes, including bibA, hylB, sip, and cip, which provides a novel potential treatment for S. agalactiae.
ISSN:1420-3049
1420-3049
DOI:10.3390/molecules28135115