乳香(Boswellia serrata Roxb.)和薄荷(Mentha piperita Linn.精油对阴道居民的抗菌和毒性作用。

Mirjana A Bogavac, Tamara M Perić, Jovana Mišković, Maja Karaman
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摘要

研究了沉香(Boswellia serrata Roxb)和薄荷(Mentha piperita L.)的商用精油(EOs)对阴道细菌和白色念珠菌分离物的抗菌潜力和安全性。环氧乙烷的抗菌活性是通过双稀释微孔板试验进行研究的。盐水虾试验用于测定毒性,而环氧乙烷化学成分的测定则使用了 GS-MS。获得的最小抑菌浓度(MIC)和最小杀菌浓度(MBC)表明,薄荷精油(EO)对多重耐药铜绿假单胞菌分离物具有活性(MIC/MBC 为 6.25 µL/mL),而对其他分离物的 MIC 和 MBC 值则在较高浓度(25-50 µL/mL)时才达到。根据毒性检测,沉香环氧乙烷的半数致死浓度为 3.07 µL/mL,而薄荷环氧乙烷在较低浓度(0.5 µL/mL)下显示出较高的毒性,半数致死浓度无法确定。沉香对绿脓杆菌的抗菌潜力最高。虽然毒性试验表明薄荷环氧乙烷对水生甲壳类动物 Artemia salina 的卵有很高的毒性,但仍建议进一步测试环氧乙烷的毒性,例如对健康细胞系的毒性。根据气相色谱/质谱分析,薄荷环氧乙烷中含量最高的成分是含氧碳氢化合物 L-薄荷酮(20.86%)和薄荷醇(31.86%),建议对它们进行进一步的抗菌和毒性研究。
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Antimicrobial and Toxic Effects of Boswellia serrata Roxb. and Mentha piperita Linn. Essential Oils on Vaginal Inhabitants.

Commercial essential oils (EOs) of incense, Boswellia serrata Roxb, and mint, Mentha piperita L., were investigated against vaginal bacterial and Candida albicans isolates for antimicrobial potential and safety use. The antimicrobial activity of EOs was investigated through a double-dilution micro-plate assay. A brine shrimp assay was used for the determination of toxicity, while the determination of the chemical composition of EOs was carried out using GS-MS. Obtained minimal inhibitory (MIC) and minimal bactericidal concentration (MBC) point to the activity of mint essential oil (EO) against the multi-resistant P. aeruginosa isolate (MIC/MBC at 6.25 µL/mL), while MIC and MBC values for other isolates were reached at higher concentrations (25-50 µL/mL). According to the toxicity assay, the incense EO reached the LC50 value at 3.07 µL/mL, while mint EO showed higher toxicity at lower concentrations (0.5 µL/mL) and the LC50 could not be determined. The highest antimicrobial potential was obtained for incense against P. aeruginosa. Although the toxicity assay showed high toxicity of mint EO to the eggs of aquatic crustaceans Artemia salina, further testing of EO toxicity is proposed, for example on healthy cell-lines. According to the GC/MS spectrometry, the most represented components of mint EO were the oxygenated hydrocarbons L-menthone (20.86%) and menthol (31.86%), and they could be proposed for further antimicrobial and toxicity investigation.

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