首页> 外文期刊>Cureus. >Antimicrobial and Anti-Biofilm Activities of Citrus sinensis and Moringa oleifera Against the Pathogenic Pseudomonas aeruginosa and Staphylococcus aureus
【24h】

Antimicrobial and Anti-Biofilm Activities of Citrus sinensis and Moringa oleifera Against the Pathogenic Pseudomonas aeruginosa and Staphylococcus aureus

机译:柑橘Sinensis和Moringa Oleifera的抗菌和抗生物膜活动对抗病原假单胞菌铜绿假单胞菌和金黄色葡萄球菌

获取原文
           

摘要

Context The plant Moringa oleifera Lam (Moringaceae), generally termed as drumstick tree, and Citrus sinensis Linn (Rutaceae) fruit have the ability to treat multiple human infections. A biofilm is none other than a complicated microbial community whose nature is greatly resistant to antimicrobial elements.?The development of biofilms in abiotic and biotic surfaces has a connection with?higher levels of mortality and morbidity. Along with that, it is regarded as a vital element of bacterial pathogenicity. Aim The present study evaluated the inhibitory effect and anti-biofilm activity of?Moringa oleifera (M. oleifera)?and?Citrus sinensis?(C. sinensis)?extracts against those of pathogenic?Pseudomonas aeruginosa (P. aeruginosa)?and?Staphylococcus?aureus (S. aureus). Materials and methods Two plant materials were collected from the local market of Tabuk city and two human pathogenic microbial strains were used in the study: S. aureus?and P. aeruginosa.?Further, a series of morphological, physiological, and conventional biochemical tests were performed to identify the selected microorganisms. In addition to this, the study conducted the following tests: antibiotic sensitivity test, extended-spectrum β-lactamase (ESβL), and methicillin-resistant Staphylococcus aureus (MRSA) production, biofilm formation in 96-well microtiter plates, minimum inhibitory concentration (MIC) determination, the effect of sub-MICs of C. sinensis extract and M. oleifera extract on the viability of test bacteria, and finally, measurement of the inhibition of biofilm. Results A remarkable result of the research is that the peel extract of C. sinensis and the flesh extract of M. oleifera efficiently inhibited biofilm formation by the addition of sub-inhibitory concentrations of (1/16 x MIC - 1/2 x MIC) MRSA?and ESBL, respectively. P. aeruginosa shows high resistance to piperacillin (85.0%). Similarly, the resistance of MRSA was also high (65%) against gentamycin and amikacin antibiotics. Regarding ESBL, 12 (60%) isolates showed confirmed positive and 45% of S. aureus showed MRSA activity. On observing the 12 ESβL-positive P. aeruginosa, it was found that five strains (PS1, PS4, PS6, PS8, and PS11) have formed strong biofilm, methicillin-resistant S. aureus while four strains showed strong biofilm activity (SA2, SA4, SA5, and SA8). The MIC of C.?sinensis extract and M. oleifera extract against strong biofilm producers had a range of 50-2000 μg/ml concentration?after overnight incubation. The study results revealed that the antibiofilm activity comparatively showed the extract of M. oleifera was better than?C. sinensis against the mixed culture (PS1+SA8, PS6+SA2, and PS8+SA4). Hence, it is recommended to use M. oleifera?as?an option to monitor the development of microbial biofilms or as a model for looking for better medicines. Conclusion The presence of antimicrobial activity found in M. oleifera and C. sinensis extracts offers convincing evidence of their likely action as antimicrobial metabolites against the studied microorganism. Anti-biofilm assay findings have shown that M. oleifera and C. sinensis extracts have effectively blocked MRSA and ESBL development in the biofilm matrix.
机译:背景上下植物辣木,植物林(Moringaceae),通常被称为鼓槌树,柑橘sinensis linn(芦酪菊)果实有能力治疗多种人类感染。生物膜不是一个复杂的微生物群落,其性质对抗微生物元素大大抗性。生物膜在非生物和生物表面的发育具有较高水平的死亡率和发病率。除此之外,它被认为是细菌致病性的重要因素。目的本研究评估了抑制效果和抗生物膜活性吗?Moringa Oleifera(M. Oleifera)?和?柑橘sinensis?(c。sinensis)?对致病性的蛋白质(C. sinensis)提取物(p. aeruginosa)?和?金黄色葡萄球菌(金黄色葡萄球菌)。材料和方法从塔布克市的当地市场收集了两种植物材料,在研究中使用了两种人类致病微生物菌株:S. aureus?和P. eruginosa.?further,一系列形态,生理和传统的生化测试进行以鉴定所选微生物。除此之外,该研究还进行了以下测试:抗生素敏感性试验,扩展光谱β-内酰胺酶(ESβ1)和耐甲氧脲葡萄球菌(MRSA)生产,生物膜形成,在96孔微量滴定板中,最小抑制浓度( MIC)测定,C. sinensis提取物和M. Oleifera提取物对试验细菌的活力的影响,最后,测量生物膜的抑制。结果研究的显着结果是,通过添加(1/16 X MIC - 1/2 X MIC),C. sinensis和M.Oleifera的肉提取物的剥离提取物和M. Oleifera的肉提取物有效地抑制生物膜形成MRSA?和ESBL分别。 P.铜绿假单胞菌表现出高潜力的哌啶素(85.0%)。同样,对庆大霉素和Amikacin抗生素的MRSA的抗性也高(65%)。关于ESBL,12(60%)分离物显示证实阳性和45%的金黄色葡萄球菌显示MRSA活性。在观察12ESβL阳性P.铜绿假单胞菌上,发现有五种菌株(PS1,PS4,PS6,PS8和PS11)形成了强大的生物膜,耐甲氧西林的金黄色葡萄球菌,而四种菌株显示出强烈的生物膜活性(SA2, SA4,SA5和SA8)。 C.?sinensis萃取物和M. Oleifera提取物的MIC抗强生物膜生产商的浓度为50-2000μg/ ml浓度为50-2000μg/ mL浓度。过夜孵育后。研究结果表明,抗抗血丝活性相对显示,o油脂的提取物优于Δc。对混合培养的SINENSIS(PS1 + SA8,PS6 + SA2和PS8 + SA4)。因此,建议使用M. Oleifera?作为一种选择要监测微生物生物膜或寻找更好药物的模型的选择。结论M. Oleifera和C.Inensis提取物中发现的抗菌活性的存在提供了令人信服的令人信服的证据,其可能是针对研究的微生物的抗微生物代谢物。抗生物膜测定结果表明,M. Oleifera和C.Inensis提取物有效地阻断了生物膜基质中的MRSA和ESBL展开。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号