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Assessment of chemically characterized nanoencapuslated Ocimum sanctum essential oil against aflatoxigenic fungi contaminating herbal raw materials and its novel mode of action as methyglyoxal inhibitor

机译:评估化学表征的纳米峰综合征SONCTUM精油对污染草药原料的黄萎毒性真菌及其新的作用模式作为甲基甘油抑制剂

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摘要

The study reports industrial significance of chemically characterized nanoencapuslated Ocimum sanctum essential oil (OSEO) against fungi contaminating herbal raw materials and aflatoxin B-1 secretion. The chitosan encapsulated OSEO exhibited enhanced antifungal and antiaflatoxigenic potential as compared to unencapsulated OSEO. The nanoencapsulated OSEO reduced the ergosterol content and enhanced the leakage of vital cellular ions along with the loss of 260 and 280 nm absorbing material suggesting fungal plasma membrane as action site. The nanoencapsulated OSEO also reduced the methylglyoxal content, the aflatoxin inducing substrate. In addition, the OSEO nanoemulsion possessed promising antioxidant potential. The nanoemulsion was characterized through SEM, FTIR and XRD analysis. This is the first report on assessment of OSEO loaded novel chitosan nanoemulsion against aflatoxin B-1 contamination. The study recommends application of the encapsulated OSEO to extend the shelf life of stored herbal raw materials and the findings also lead towards the development of aflatoxin and methylglyoxal resistant medicinal plants through green transgenics.
机译:该研究报告了化学表征的纳米夸张的最大圣康宫精油(Oseo)对真菌污染草药原料和黄曲霉毒素B-1分泌的工业意义。与未封装的Oseo相比,壳聚糖包封的Oseo表现出增强的抗真菌和抗真菌诱导潜力。纳米封闭的OSEO降低了Ergosterol含量并提高了重要细胞离子的泄漏以及260和280nm吸收材料的损失,表明真菌膜作为作用位点。纳米封装的Oseo还降低了甲基乙二醛含量,即黄曲霉毒素诱导基质。此外,Oseo纳米乳液具有有前景的抗氧化潜力。通过SEM,FTIR和XRD分析表征纳米乳液。这是对Oseo装载新型壳聚糖纳米乳液对黄曲霉毒素B-1污染进行评估的第一个报告。该研究建议施用包封的Oseo以延长储存的草药原料的保质期,并通过绿色转基因促进过度发育过敏素和甲基甘油抗药性植物。

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