Nafiseh Farazandehnia, Farzaneh Sotoudegan, Abbas Akhavan Sepahy, Mohamad Reza Fazeli
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The minimum inhibitory concentration (MIC) of sumac extract was determined on S. aureus obtained from hospitalized patients, as well as an assessment of biofilm-formation and the release of bacterial intracellular compounds. in vivo experimentation involved injecting bacteria (10<sup>8</sup> cfu/ml) into mice, which subsequently manifested indicators of symptoms of infection, and the number of bacteria within their bloodstream was quantified. The Sumac extract demonstrated strong antioxidant properties at concentrations of 1000 mg/ml. Furthermore, the agar tests for the gram staining, mannitol, coagulase, and DNase revealed that 190 cultured bacteria samples were identified as Staphylococcus aureus. These bacteria were resistant to clindamycin, ciprofloxacin, and methicillin antibiotics, but sensitive to erythromycin and penicillin antibiotics. Additionally, the bacteria displayed significant methicillin resistance and formed a strong biofilm (65.78%). The sumac extract showed a MIC range of 125-1000 µg/ml against Staphylococcus aureus. Treatment with concentrations above the MIC was found to prevent the formation of biofilm and increase the release of bacterial intracellular compounds. Sumac extract led to a decrease in bacterial count in the blood of mice and reduced signs of infection. 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引用次数: 0
摘要
该研究旨在通过体外和体内研究,评估苏木水提取物对耐甲氧西林金黄色葡萄球菌的抗氧化和抗菌特性。苏木提取物通过浸泡法获得,并采用 DPPH 自由基清除法测定其抗氧化性。体内实验包括向小鼠注射细菌(108 cfu/ml),小鼠随后表现出感染症状,并对其血液中的细菌数量进行量化。浓度为 1000 毫克/毫升的黄栌提取物具有很强的抗氧化性。此外,革兰氏染色、甘露醇、凝固酶和 DNase 琼脂测试显示,190 个培养细菌样本被鉴定为金黄色葡萄球菌。这些细菌对克林霉素、环丙沙星和甲氧西林抗生素耐药,但对红霉素和青霉素抗生素敏感。此外,这些细菌对甲氧西林有明显的耐药性,并形成了很强的生物膜(65.78%)。苏木萃取物对金黄色葡萄球菌的 MIC 范围为 125-1000 µg/ml。用高于 MIC 的浓度处理可防止生物膜的形成,并增加细菌胞内化合物的释放。黄栌提取物可减少小鼠血液中的细菌数量,并减轻感染症状。黄栌提取物对耐药性微生物具有强大的抗氧化和抗菌作用,这表明它有可能成为未来研究中治疗耐药性感染的一种有前途的化合物。
Antibacterial and antioxidant properties of sumac extract on methicillin-resistant Staphylococcus aureus.
The research aimed to evaluate the antioxidative and antibacterial characteristics of aqueous sumac extract on methicillin-resistant Staphylococcus aureus through in-vitro and in-vivo study. Sumac extract has been obtained through the soaking method, and its antioxidant properties were gauged using the DPPH free radical scavenging method. The minimum inhibitory concentration (MIC) of sumac extract was determined on S. aureus obtained from hospitalized patients, as well as an assessment of biofilm-formation and the release of bacterial intracellular compounds. in vivo experimentation involved injecting bacteria (108 cfu/ml) into mice, which subsequently manifested indicators of symptoms of infection, and the number of bacteria within their bloodstream was quantified. The Sumac extract demonstrated strong antioxidant properties at concentrations of 1000 mg/ml. Furthermore, the agar tests for the gram staining, mannitol, coagulase, and DNase revealed that 190 cultured bacteria samples were identified as Staphylococcus aureus. These bacteria were resistant to clindamycin, ciprofloxacin, and methicillin antibiotics, but sensitive to erythromycin and penicillin antibiotics. Additionally, the bacteria displayed significant methicillin resistance and formed a strong biofilm (65.78%). The sumac extract showed a MIC range of 125-1000 µg/ml against Staphylococcus aureus. Treatment with concentrations above the MIC was found to prevent the formation of biofilm and increase the release of bacterial intracellular compounds. Sumac extract led to a decrease in bacterial count in the blood of mice and reduced signs of infection. Sumac extract demonstrated powerful antioxidant and antibacterial effects against resistant microorganisms, suggesting its potential as a promising compound for the treatment of resistant infections in future research.
期刊介绍:
AMB Express is a high quality journal that brings together research in the area of Applied and Industrial Microbiology with a particular interest in ''White Biotechnology'' and ''Red Biotechnology''. The emphasis is on processes employing microorganisms, eukaryotic cell cultures or enzymes for the biosynthesis, transformation and degradation of compounds. This includes fine and bulk chemicals, polymeric compounds and enzymes or other proteins. Downstream processes are also considered. Integrated processes combining biochemical and chemical processes are also published.