Encapsulation of Essential Oils of Mentha pulegium and Ferula gummosa Using Nanoliposome Technology as a Safe Botanical Pesticide

Q3 Biochemistry, Genetics and Molecular Biology Journal of Applied Biotechnology Reports Pub Date : 2020-12-01 DOI:10.30491/JABR.2020.121704
Zahra Faraji, J. Shakarami, J. Varshosaz, S. Jafari
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引用次数: 3

Abstract

Introduction: Recent researches have shown that many plant Essential Oils (EOs) have a high potential for controlling agricultural pests and can be used as precursors for synthesis of new pesticides. The major limitations for the use of these compounds are rapid evaporation, poor water solubility, and aptitude for oxidation. The aim of this study was to prepare and characterize nanoliposome containing EOs of Mentha pulegium and Ferula gummosa and fumigant toxicity of nanoliposome containing M. pulegium EOagainst T. castaneum. Materials and Methods: In this study, nanoliposome containing EOs of M. pulegium and F. gummosa were prepared using heating method and its physicochemical properties were evaluated. Also, the impact of fumigant toxicity of M. pulegium EONanoliposome on M. castaneum was investigated. Results: Results showed that mean (±SD) particles of nanoliposomecontaining M. pulegium and F. gummosa EOs were 345±3.2 and 309±1.67 nm and their encapsulation efficiency were 99.38±0.24% and 96.41±0.26, respectively. The kind of EOs had no significant effect on the physicochemical property of nanoparticles. At the end of 24 h, the release percentage of EOs of nanoliposomes of M. Pulegium and F. gummosa were 46% and 33 %, respectively. The estimated LC50 values for nanoliposome and crude Eos of M. Pulegium against T. castaneum were36.53 and 75.23 µI/I air, respectively. Conclusions: The results of the current research showed that release and stability of EOs were significantly affected when change to nanoliposome particles. Also, M. pleugium EO nanoliposome showed enhancing fumigant toxicity against T. castaneum in comparison with the crude EO of this plant.
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纳米脂质体技术包埋薄荷和阿魏精油的安全植物农药研究
引言:最近的研究表明,许多植物精油具有很高的防治农业害虫的潜力,可以作为合成新农药的前体。使用这些化合物的主要限制是快速蒸发、水溶性差和氧化能力强。本研究的目的是制备并表征含有薄荷和Ferula gummosa EOs的纳米脂质体,以及含有薄荷EOs的纳米脂质体对赤拟谷草的熏蒸毒性。材料与方法:本研究采用加热法制备了含有粉藻和软胶藻EOs的纳米脂质体,并对其理化性质进行了评价。此外,还研究了粉藻EO-纳米脂质体熏蒸剂对谷朊病毒的毒性影响。结果:结果表明,含有M.pulegium和F.gummosa的纳米脂质体EOs的平均粒径(±SD)分别为345±3.2和309±1.67nm,包封率分别为99.38±0.24%和96.41±0.26。EOs的种类对纳米颗粒的物理化学性质没有显著影响。在24小时结束时,M.Pulegium和F.gummosa的纳米脂质体的EOs释放百分比分别为46%和33%。M.Pulegium的纳米脂质体和粗Eos对赤拟谷草的LC50估计值分别为36.53和75.23µI/I空气。结论:目前的研究结果表明,当EOs改为纳米脂质体颗粒时,其释放和稳定性受到显著影响。此外,与该植物的粗制EO相比,P.pleugium EO纳米脂质体显示出增强的熏蒸剂对赤兔的毒性。
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来源期刊
Journal of Applied Biotechnology Reports
Journal of Applied Biotechnology Reports Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
1.90
自引率
0.00%
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0
期刊介绍: The Journal of Applied Biotechnology Reports (JABR) publishes papers describing experimental work relating to all fundamental issues of biotechnology including: Cell Biology, Genetics, Microbiology, Immunology, Molecular Biology, Biochemistry, Embryology, Immunogenetics, Cell and Tissue Culture, Molecular Ecology, Genetic Engineering and Biological Engineering, Bioremediation and Biodegradation, Bioinformatics, Biotechnology Regulations, Pharmacogenomics, Gene Therapy, Plant, Animal, Microbial and Environmental Biotechnology, Nanobiotechnology, Medical Biotechnology, Biosafety, Biosecurity, Bioenergy, Biomass, Biomaterials and Biobased Chemicals and Enzymes. Journal of Applied Biotechnology Reports promotes a special emphasis on: -Improvement methods in biotechnology -Optimization process for high production in fermentor systems -Protein and enzyme engineering -Antibody engineering and monoclonal antibody -Molecular farming -Bioremediation -Immobilizing methods -biocatalysis
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