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苦参提取物的超声辅助提取、抗生物膜活性及其对……的作用机制

Ultrasonic-assisted extraction, anti-biofilm activity, and mechanism of action of Ku Shen () extracts against .

作者信息

Zhao Yanan, Guo Siya, Li Shuge, Ye Enjun, Wang Wenfang, Wang Tong, Wen Ying, Guo Lei

机构信息

Jiangsu Key Laboratory of Marine Bioresources and Environment, Co-Innovation Center of Jiangsu Marine Bio-Industry Technology, Jiangsu Ocean University, Lianyungang, China.

College of Kangda, Nanjing Medical University, Lianyungang, China.

出版信息

Front Microbiol. 2024 Mar 26;15:1379341. doi: 10.3389/fmicb.2024.1379341. eCollection 2024.

Abstract

The objective of this study is to optimize the ultrasonic-assisted extraction process of Ku Shen () extracts (KSE) against and explore their anti-biofilm activity and mechanism of action. The ultrasonic-assisted extraction process of KSE optimized by single factor experiment, Box-Behnken design and response surface methodology was as follows: 93% ethanol as solvent, liquid/material ratio of 30 mL/g, ultrasonic power of 500 W, extraction temperature of 80°C and time of 30 min. Under these conditions, the diameter of inhibition circle of KSE was 15.60 ± 0.17 mm, which had no significant difference with the predicted value. The yield of dried KSE is 32.32 ± 0.57% and the content of total flavonoids in KSE was 57.02 ± 5.54%. The minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) of KSE against were 0.25 and 0.5 mg/mL, respectively. Crystal violet staining, Congo red plate, spectrophotometry, CCK-8 and scanning electron microscopy were used to investigate the activity and mechanism of action of KSE against biofilm. The results showed that the sub-MIC of KSE could significantly inhibit biofilm formation, reduce the synthesis of polysaccharide intercellular adhesin (PIA) and the secretion of extracellular DNA. In addition, the inhibition rate of biofilm formation and clearance rate of mature biofilm of 1.0 mg/mL KSE were 85.32 and 74.04%, and the reduction rate of metabolic activity of developing and mature biofilm were 77.98 and 74.46%, respectively. These results were confirmed by visual images obtained by scanning electron microscopy. Therefore, KSE has the potential to further isolate the anti-biofilm agent and evaluate it for the preservation process of aquatic products.

摘要

本研究的目的是优化苦参提取物(KSE)对[具体菌种未给出]的超声辅助提取工艺,并探究其抗生物膜活性及作用机制。通过单因素实验、Box-Behnken设计和响应面法优化的KSE超声辅助提取工艺如下:以93%乙醇为溶剂,液料比为30 mL/g,超声功率为500 W,提取温度为80℃,时间为30 min。在此条件下,KSE的抑菌圈直径为15.60±0.17 mm,与预测值无显著差异。干燥KSE的得率为32.32±0.57%,KSE中总黄酮含量为57.02±5.54%。KSE对[具体菌种未给出]的最小抑菌浓度(MIC)和最小杀菌浓度(MBC)分别为0.25和0.5 mg/mL。采用结晶紫染色、刚果红平板法、分光光度法、CCK-8法和扫描电子显微镜研究KSE对[具体菌种未给出]生物膜的活性及作用机制。结果表明,KSE的亚抑菌浓度可显著抑制生物膜形成,减少胞间多糖黏附素(PIA)的合成及细胞外DNA的分泌。此外,1.0 mg/mL KSE对生物膜形成的抑制率和对成熟生物膜的清除率分别为85.32%和74.04%,对生长中及成熟生物膜代谢活性的降低率分别为77.98%和74.46%。扫描电子显微镜获得的直观图像证实了这些结果。因此,KSE有潜力进一步分离抗生物膜剂并评估其在水产品保鲜过程中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d5b/11003267/1b6d3ed84b7e/fmicb-15-1379341-g001.jpg

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