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Evaluation of cinnamon extract effects on clbB gene expression and biofilm formation in Escherichia coli strains isolated from colon cancer patients

机译:评价肉桂提取物对来自结肠癌患者分离的大肠杆菌菌株中CLBB基因表达和生物膜形成的评价

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BACKGROUND:Colon cancer is one of the most common malignancies and the fourth leading cause of cancer-related mortality in the world. Colibactin, which is synthesized by the pks genomic island of E. coli interfere with the eukaryotic cell cycle. Cinnamon has an antimicrobial effect and considered as a colon cancer-preventing agent. The aim of the study was to evaluate the effects of cinnamon extract and cinnamaldehyde on clbB gene expression and biofilm formation in clinical isolates of E. coli.METHODS:Thirty E. coli carrying pks gene were isolated from the colon cancer patients, inflammatory bowel disease and healthy subjects. Antibiotic susceptibility was evaluated by disk diffusion method and the minimum inhibitory concentration of cinnamon essential oil and cinnamaldehyde by microdilution broth method. In vitro biofilm formation of E.coli isolates was monitored using a microtiter plate method. The presence of clbB, clbA and clbQ genes in E.coli isolates were evaluated by PCR. The effect of cinnamaldehyde and cinnamon essential oil on clbB gene expression was evaluated by Real-Time PCR.RESULTS:The highest antibiotic resistance was obtained with 94.4% for ticarcillin-clavulanic acid, azithromycin, amoxicillin, and amikacin. The MIC for all clinical isolates was 32?μl/ml of cinnamon essential oil and the MIC of cinnamaldehyde was between 0.00002 to 0.03?μl/ml. After exposure of isolates to cinnamon extract and cinnamaldehyde, 40 and 13.3% were weakly biofilm producers, respectively. The frequencies of clbB, clbA, and clbQ genes were 23.3, 23.3, and 26.7%, respectively. The expression of clbB gene in the presence of the Sub-MIC concentration of cinnamon essential oil and cinnamaldehyde was decreased in 8 isolates compared to untreated isolates (p-value ?0.05).CONCLUSIONS:The antibacterial activity of cinnamaldehyde and cinnamon essential oil allows the use of these herbal compounds for treatment or supplements in infections caused by E. coli and in patients with suspected colorectal cancer.
机译:背景:结肠癌是世界上最常见的恶性肿瘤和世界上癌症相关死亡率的第四个主要原因之一。由大肠杆菌的PKS基因组岛合成的Coolibactin干扰真核细胞周期。肉桂具有抗微生物效果,并被视为癌症预防剂。该研究的目的是评估肉桂提取物和肉桂醛对大肠杆菌临床分离株中CLBB基因表达和生物膜形成的影响:从结肠癌患者中分离出三十大肠杆菌携带PKS基因,炎症性肠病和健康的科目。通过微量稀释肉汤法通过盘扩散法和肉桂精油和肉桂醛的最小抑制浓度评估抗生素敏感性。使用微量滴定板法监测体外生物膜形成大肠杆菌分离物。通过PCR评估大肠杆菌分离物中Clbb,clba和clbq基因的存在。通过实时PCR评估肉桂醛和肉桂精油对CLBB基因表达的影响。结果:获得最高的抗生素抗性,含有94.4%的TiCarcillin-Clavulanid酸,阿奇霉素,阿莫西林和Amikacin。所有临床分离株的MIC为32?μl/ ml桂香精油,肉桂醛的MIC为0.00002至0.03Ω·μl/ ml。在将分离物暴露于肉桂提取物和肉桂醛的情况下,40和13.3%分别是弱生物膜生产商。 CLBB,CLBA和CLBQ基因的频率分别为23.3,23.3和26.7%。与未处理的分离株相比,8分离株在桂香精油和肉桂醛的存在下的CLBB基因的表达减少(P值<0.05)。结论:肉桂醛和肉桂精油允许的抗菌活性这些草药化合物用于治疗或补充由大肠杆菌和疑似结肠直肠癌患者引起的感染。

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