Mohamed Essam Hassan, Alghamdi Youssef Saeed, Mostafa Abdel-Hafez Salama, Soliman Mohamed Mohamed, Alotaibi Saad H, Hassan Magdy Yassin, Hany Nasr Al-Deen, Amer Hamada H
Department of Biology, Turabah University College, Taif University, Saudi Arabia.
Department of Microbiology, Faculty of Veterinary Medicine, Zagazig University, Zagazig, Egypt.
Dose Response. 2020 Jul 6;18(3):1559325820936189. doi: 10.1177/1559325820936189. eCollection 2020 Jul-Sep.
The aim of this study was to examine the effect of some natural compounds against multidrug-resistant bacteria.
Forty-three bacterial strains were collected. Disc diffusion and minimum inhibitory concentration (MIC) tests were carried out for natural compounds including quercetin, , , and . Scanning electron microscope analysis and bacterial DNA apoptosis assays were performed.
strains were resistant to imipenim, ampicillin, and penicillin. Most strains were resistant to amoxicillin, clavulanat, and ampicillin. Finally, tigecycline was effective with and was resistant to all antibiotics. Only had an antibacterial effect on . Most strains were sensitive to , , and quercetin. All examined natural extracts had no effect on . had no effect on any of the strains tested. Minimum inhibitory concentration and minimum bactericidal concentration values for examined plants against were 6.25 to 12, 1.6 to 3.2, and 9.12 to 18.24 mg/mL, respectively. was active against with an MIC of 12.5 mg/mL. Scanning electron microscope analysis performed after 24 and 48 hours of incubation showed bacterial strains with distorted shapes and severe cell wall damage. , quercetin, and showed clear fragmentations of DNA.
Current findings confirmed the beneficial effect of using natural products such as , quercetin, and as a promising therapy to overcome multidrug resistant bacteria.
本研究旨在考察某些天然化合物对多重耐药菌的作用。
收集了43株细菌菌株。对包括槲皮素等天然化合物进行了纸片扩散法和最低抑菌浓度(MIC)测试。进行了扫描电子显微镜分析和细菌DNA凋亡检测。
菌株对亚胺培南、氨苄西林和青霉素耐药。大多数菌株对阿莫西林、克拉维酸和氨苄西林耐药。最后,替加环素对有效,对所有抗生素耐药。只有对有抗菌作用。大多数菌株对、和槲皮素敏感。所有检测的天然提取物对均无作用。对所检测菌株均无作用。所检测植物对的最低抑菌浓度和最低杀菌浓度值分别为6.25至12、1.6至3.2和9.12至18.24mg/mL。对的MIC为每毫升12.5mg,具有活性。孵育24小时和48小时后进行的扫描电子显微镜分析显示,细菌菌株形状扭曲,细胞壁严重受损。、槲皮素和显示出明显的DNA片段化。
目前的研究结果证实了使用、槲皮素和等天然产物作为克服多重耐药菌的一种有前景的治疗方法的有益效果。