首页> 美国卫生研究院文献>Frontiers in Pharmacology >Antifungal Activity of Chitosan Nanoparticles Encapsulated With Cymbopogon martinii Essential Oil on Plant Pathogenic Fungi Fusarium graminearum
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Antifungal Activity of Chitosan Nanoparticles Encapsulated With Cymbopogon martinii Essential Oil on Plant Pathogenic Fungi Fusarium graminearum

机译:马齿ym柏精油包裹的壳聚糖纳米粒对植物病原真菌禾谷镰刀菌的抑菌活性。

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摘要

Application of synthetic fungicides in agricultural commodities has been restricted due to development of fungicide resistance fungi and deleterious impact on environment and health of farm animals and humans. Hence, there is an urge for development of mycobiocides, and the present study was undertaken to determine the antifungal activity of Cymbopogon martinii essential oil (CMEO) on post-harvest pathogen Fusarium graminearum. The CMEO was extracted by hydrodistillation and GC-MS chemical profile revealed the presence of 46 compounds and abundant was geraniol (19.06%). The minimum inhibitory concentration and minimum fungicidal concentration of CMEO were determined as 421.7 ± 27.14 and 618.3 ± 79.35 ppm, respectively. The scanning electron microscopic observation of CMEO exposed macroconidia was exhibited a detrimental morphology with vesicles, craters, protuberance, and rough surfaces related to control fungi. The CMEO induced the death of fungi through elevating intracellular reactive oxygen species and lipid peroxidation, and depleting ergosterol content. Regrettably, essential oils are highly volatile and become unstable and lose their biological features on exposure to light, heat, pH, moisture, and oxygen. To overcome these issues, chitosan encapsulated CMEO nanoparticles (Ce-CMEO-NPs) were prepared. The synthesized Ce-CMEO-NPs have spherical morphology with Zeta potential of 39.3–37.2 mV and their corresponding size was found in range of 455–480 nm. The Fourier transform infrared analysis confirmed that bio-active constituents of CMEO were well stabilized due to chitosan conjugation and successfully formed Ce-CMEO-NPs. The in vitro release assay observed that the release of CMEO is stabilized due to the complex formation with chitosan and thereby, increases the lifetime antifungal activity of CMEO by gradual release of antifungal constituents of Ce-CMEO-NPs. In conclusion, antifungal and antimycotoxin activities of CMEO and Ce-CMEO-NPs against F. graminearum were assessed in maize grains under laboratory conditions over a storage period of 28 days. Interestingly, Ce-CMEO-NPs were presented efficient and enhanced antifungal and antimycotoxin activities related to CMEO, and it could be due to perseverance of antifungal activity by controlled release of antifungal constituents from Ce-CMEO-NPs. The study concluded that Ce-CMEO-NPs could be highly appropriate as mycobiocides in safeguarding the agricultural commodities during storage period in agricultural and food industries.
机译:由于抗杀菌剂真菌的发展以及对农场动物和人类的环境和健康的有害影响,合成杀真菌剂在农产品中的应用受到限制。因此,迫切需要开发杀真菌剂,并进行了本研究,以测定马齿ym柏精油(CMEO)对收获后病原镰孢镰刀菌的抗真菌活性。通过加氢蒸馏法提取CMEO,GC-MS的化学特征表明存在46种化合物,其中香叶醇含量高达19.06%。 CMEO的最小抑菌浓度和最小杀真菌浓度分别确定为421.7±27.14和618.3±79.35 ppm。 CMEO暴露的大分生孢子的扫描电子显微镜观察显示有害形态,其囊泡,凹陷,突起和与对照真菌相关的粗糙表面。 CMEO通过升高细胞内活性氧和脂质过氧化作用以及减少麦角固醇含量来诱导真菌死亡。令人遗憾的是,精油极易挥发,在暴露于光,热,pH,湿气和氧气后会变得不稳定并失去其生物学特性。为克服这些问题,制备了壳聚糖包封的CMEO纳米颗粒(Ce-CMEO-NPs)。合成的Ce-CMEO-NP具有球形形态,Zeta电位为39.3–37.2 mV,其相应大小在455–480 nm范围内。傅里叶变换红外分析证实,由于壳聚糖的结合,CMEO的生物活性成分具有良好的稳定性,并成功形成了Ce-CMEO-NP。体外释放测定法观察到由于与壳聚糖形成复合物而稳定了CMEO的释放,从而通过逐渐释放Ce-CMEO-NPs的抗真菌成分而增加了CMEO的终生抗真菌活性。总之,在实验室条件下,在28天的储存时间内,评估了玉米粒中CMEO和Ce-CMEO-NPs对禾本科镰刀菌的抗真菌和抗真菌毒素活性。有趣的是,Ce-CMEO-NPs表现出与CMEO相关的有效和增强的抗真菌和抗真菌毒素活性,这可能是由于从Ce-CMEO-NPs中控制释放抗真菌成分而持久的抗真菌活性所致。研究得出结论,Ce-CMEO-NPs可能非常适合作为杀真菌剂在农业和食品工业的存储期中保护农产品。

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