数字农科院2.0

Drug Resistance Modulation of Dairy MRSA through Berberine, Artesunate and Quercetin in Combination with β-Lactams

文献类型: 外文期刊

作者: Ahmad, Saad;Aqib, Amjad Islam;Ghafoor, Muzafar;Shoaib, Muhammad;ul Haq, Shahbaz;Ataya, Farid Shokry;Jianxi, Li

作者机构:

关键词: Key Artesunate;Berberine;Quercetin;S. aureus;Drug resistance;Resistance modulation

期刊名称: PAKISTAN VETERINARY JOURNAL

ISSN: 0253-8318

年卷期: 2024 年 44 卷 2 期

页码:

收录情况: SCIE(2024版)

摘要: The continued use of antibiotics is bringing extensive resistance in methicillinresistant Staphylococcus aureus (MRSA) of dairy animals and demands inclusion of non-antibiotic sources in treatment protocols. The current study aims to explore antibacterial potential of berberine (BR), artesunate (AR), and quercetin (QT) and extent of their resistance modulation capacity in combination with beta-lactam antibiotics against MRSA. For this study, a total of 674 milk samples from dairy cows were collected for isolation of MRSA and thereafter phytochemicals (drugs) alone and in combination with beta-lactams (penicillin, oxacillin, cefoxitin, ampicillin) were evaluated against MRSA. The synergy testing showed all synergistic effects except AR with penicillin which was additive effect. The synergism of antibiotics and phytochemicals was further confirmed by time-kill assay. The killing kinetics revealed a zero bacterial count at 16h of incubation in all combinations. Additionally, the killing synergy showed a significant decline i.e. less than 60% in case of BR in combination with oxacillin and penicillin at the initial 2h of incubation followed by AR and QT in combination with ampicillin. The study thus revealed potential antibacterial effects of berberine, artesunate, and quercetin along with significant resistance modulation in terms of highly synergistic combinations with antibiotics focused on novel insights into alternatives to antimicrobials to pave the road for antimicrobial stewardship against ailments like mastitis.

分类号:

  • 相关文献

[1]用黄柏做原料以40%乙醇提制盐酸小蘖硷注射液. 董万超. 1981

[2]Inflammatory Response of Peripheral Blood Mononuclear Cells Post Intramammary Challenge with Staphylococcus aureus in Dairy Cows. Liu, Li,Yuan, Zhengrong,Chen, Cui,Zhang, Limin,Chen, Xiaojie,Liu, Xidong,Gao, Xue,Li, Junya,Gao, Huijiang,Zhang, Lupei,Xu, Shangzhong. 2012

[3]Mechanism of Synergy between Piceatannol and Ciprofloxacin against Staphylococcus aureus. Mengyan Shi,Yubin Bai,Yanhua Qiu,Xinxin Zhang,Zikang Zeng,Lingling Chen,Fusheng Cheng,Jiyu Zhang. 2022

[4]Glabridin pharmacodynamic activity toward Gram-positive bacterial infections. Chan Chen,Rui Sun,Tianle Pan,Lian Liu,Wenqiang Tang,Mi Wang,Lifang Zhang,Chenzhong Fei,Yingchun Liu. 2025

[5]Oleanolic acid-taxifolin self-assembled nanoparticles for effective treatment of S. aureus infections by inhibiting its internalization and reproduction. Niuniu Yang,Aoxue Zhang,Yaoyao Zhang,Dongmei Chen,Shuyu Xie. 2025

[6]Dual-FRET platform based on dsDNA-functionalized Ti3C2Tx MXene for highly sensitive detection of bacteria. Langjin Zhang,Yingwen Wang,Yubing Jiao,Min Mao,Weiliang Xiong,Yingjie Zhang,Youning Wang,Songbai Zhang,Wei Zhang,Jinguang Yang. 2025

[7]Synthesis, Antimicrobial Activities, and Model of Action of Novel Tetralone Derivatives Containing Aminoguanidinium Moiety. Qing Jie Zhang,Yu Xi Li,Wen Bo Ge,Li Xia Bai,Xiao Xu,Ya Jun Yang,Xi Wang Liu,Jian Yong Li. 2025

[8]Synthesis and Cytotoxicity Evaluation of 13-n-Alkyl Berberine and Palmatine Analogues as Anticancer Agents. Zhang, Lei,Li, Jingjing,Li, Naisan,Wang, Jing,Wang, Yongbin,Yao, Qizheng,Ma, Fei,Ma, Fei,Yao, Shining,Wang, Xiuzhen. 2012

[9]Novel Inhibitors of an Insect Pest Chitinase: Design and Optimization of 9-O-Aromatic and Heterocyclic Esters of Berberine. Ling Zhu,Lei Chen,Xusheng Shao,Jiagao Cheng,Qing Yang,Xuhong Qian. 2021

[10]Anticancer Effects and Mechanisms of Berberine from Medicinal Herbs: An Update Review. Ruo Gu Xiong,Si Yu Huang,Si Xia Wu,Dan Dan Zhou,Zhi Jun Yang,Adila Saimaiti,Cai Ning Zhao,Ao Shang,Yun Jian Zhang,Ren You Gan,Hua Bin Li. 2022

[11]Berberine Ameliorates Ccl4-Induced Liver Injury I.n Rats Through Regulation O f The Nrf2-Keap1-Are And P53 Signaling Pathways. Han, CY, Sun, TT, Xv, GP, Wang, SS, Gu, JG, Liu, CY. 2019

[12]Inhibition of Haemophilus parasuis by berberine and proteomic studies of its mechanism of action. Yue Jia,Changqi Hao,Qin Yang,Wanjiang Zhang,Gang Li,Siguo Liu,Xin Hua. 2021

[13]Cationic fructan-based pH and intestinal flora dual stimulation nanoparticle with berberine for targeted therapy of IBD. Li H.,Yang W.,Wu X.,Tian L.,Zhang W.,Tian H.,Liang X.,Huang L.,Guo L.,Li X.,Gao W.. 2024

[14]Alginate/sodium carboxymethyl cellulose nanocomposite hydrogels loaded with berberine-rosmarinic acid nanoparticles: pH-responsive release for enhanced acid stability and colon-targeted delivery. Xiaoyang Xia,Zhen Zhang,Zhixiong He,Zhenxia Xu,Li Chen,Fenghong Huang,Xia Xiang. 2025

[15]Integrated Antioxidants, Nanoparticle, and Antifreeze Protein Strategies Synergistically Enhance Cryotop Vitrification Outcomes of Porcine Parthenogenetic Embryos. Jesse Oluwaseun Ayantoye,Baigao Yang,Jianhua Dong,Xiaoyi Feng,Muhammad Shahzad,Hubdar Ali Kolachi,Pengcheng Wan,Hongmei Pan,Xueming Zhao. 2025

[16]An updated review of isoquinoline alkaloids: Biological activity and mode of action, structural modifications, and agricultural applications. Xiaorong Yang,Tong Bu,Yuchao Ma,Xiaoyan Yu,Zile Gong,Jing Wang,Xueyan Liu,Janar Jenis,Hongwei Hu,Xiaolou Miao,Xiaofei Shang. 2025

[17]Rna-Seq Transcriptome Analysis Of Rice P.rimary Roots Reveals The R ole Of Flavonoids In Regulating The Rice Primary Root Growth. Wang, Lei,Xu, Miaoyun,Xu, Yu,Zou, Junjie,Zheng, Hongyan,Zong, Xuefeng,Zou, Junjie,Xu, Yu. 2019

[18]A comparison of acidic and enzymatic hydrolysis of rutin. Wang, Jun,Zhao, Lu-Lu,Sun, Guo-Xia,Liang, Yao,Wu, Fu-An,Wu, Fu-An,Chen, Zhong-li,Cui, Shi-ming,Chen, Zhong-li,Cui, Shi-ming. 2011

[19]Characterization and biodistribution in vivo of quercetin-loaded cationic nanostructured lipid carriers. Liu, Liang,Tang, Yuhan,Gao, Chao,Li, Yanyan,Chen, Shaodan,Xiong, Ting,Li, Juan,Du, Min,Liu, Liegang,Yao, Ping,Liu, Liang,Tang, Yuhan,Gao, Chao,Li, Yanyan,Chen, Shaodan,Xiong, Ting,Li, Juan,Du, Min,Liu, Liegang,Yao, Ping,Liu, Liang,Gong, Zhiyong,Chen, Hong.

[20]Quercetin Inhibits The Proliferation And A.flatoxins Biosynthesis Of Aspergillus F lavus. Li, XM, Li, ZY, Wang, YD, Wang, JQ, Yang, PL. 2019

作者其他论文 更多>>