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首页> 外文期刊>Phytochemical Analysis >Characterisation and screening of antimicrobial essential oil components against clinically important antibiotic-resistant bacteria using thin layer chromatography-direct bioautography hyphenated with GC-MS, LC-MS and NMR
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Characterisation and screening of antimicrobial essential oil components against clinically important antibiotic-resistant bacteria using thin layer chromatography-direct bioautography hyphenated with GC-MS, LC-MS and NMR

机译:用薄层色谱 - 直接生物构建与GC-MS,LC-MS和NMR键合的临床重要抗生素抗菌细菌对临床重要抗生素抗菌细菌的表征及筛选

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Introduction The antimicrobial activity of many essential oils (EOs) is well established, indicating that EOs may be a source of compounds for antimicrobial drug development. Thin layer chromatography-direct bioautography (TLC-DB) can quickly identify antimicrobial components in complex mixtures and can be applied to the screening of EOs for lead compounds. Objectives This study aimed to identify antimicrobial components of oregano, rosewood and cumin EOs against antibiotic-sensitive and -resistant bacteria using TLC-DB and a multi-faceted approach of GC-MS, LC-MS and NMR techniques to characterise bioactive compounds. The study also aimed to quantify the antimicrobial activity of bioactive compounds in order to evaluate their potential for the development of therapies against antibiotic-resistant bacteria. Materials and Methods EOs were eluted on TLC plates and sprayed with a suspension of Staphylococcus aureus, Enterococcus faecium, Escherichia coli or Pseudomonas aeruginosa (antibiotic-sensitive and -resistant isolates). Zones of inhibition, visualised with iodonitrotetrazolium chloride, were subject to GC-MS, LC-MS and NMR to characterise the bioactive compounds. Results Seven compounds were identified from the three EOs using GC-MS, while LC-MS and NMR failed to detect the presence of any further non-volatile or heat labile compounds. Carvacrol was most antimicrobial compound identified, with minimum inhibitory concentrations ranging 0.99-31.62 mM. Conclusion The identified antimicrobial compounds present in oregano, rosewood and cumin EOs including carvacrol may be candidates for the development of novel antimicrobial therapies against antibiotic-resistant bacteria.
机译:引言许多精油(EOS)的抗菌活性很好,表明EOS可以是抗微生物药物发育的化合物来源。薄层色谱 - 直接生物构建(TLC-DB)可以快速识别复杂混合物中的抗微生物组分,并且可以应用于EOS的eOS用于铅化合物。本研究的目标旨在使用TLC-DB鉴定对抗生素敏感和 - 抗生素细菌的抗微生物组分和GC-MS,LC-MS和NMR技术的多刻度方法,以表征生物活性化合物。该研究还旨在量化生物活性化合物的抗微生物活性,以评估它们对抗菌抗菌细菌疗法的潜力的潜力。材料和方法在TLC板上洗脱EOS,并用金黄色葡萄球菌,肠球菌,大肠杆菌或假单胞菌铜绿假单胞菌(抗生素敏感和抗生素分离株)喷洒。用碘硝基二唑氯化钡可视化的抑制区均受GC-MS,LC-MS和NMR的特征,以表征生物活性化合物。结果使用GC-MS从三个EOS鉴定出7种化合物,而LC-MS和NMR未能检测到存在任何进一步的非挥发性或热不稳定化合物。爬行动物是最多的抗微生物化合物,最小抑制浓度范围为0.99-31.62mm。结论俄勒冈州,葡萄红和孜然EOS存在的鉴定的抗微生物化合物可以是开发针对抗生素抗菌细菌的新型抗菌疗法的候选者。

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