绿茶脂质体萃取物:优化及理化表征

Q3 Biochemistry, Genetics and Molecular Biology
S. Jahanfar, M. Ghavami, K. Khosravi‐Darani, M. Jahadi
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引用次数: 6

摘要

简介:虽然绿茶是抗氧化剂的丰富来源,但由于其氧气和光的不稳定性,这种草药在食品工业中的使用受到限制。材料和方法:采用Mozafari法(不含溶剂和洗涤剂)将绿茶多酚包封到脂质体中,以提高茶多酚的生物利用度。筛选设计用于找出所有可能的过程变量中的主要变量。然后,利用响应面对优化条件进行了研究。结果:磷脂酰胆碱浓度为4.5%(w/w),提取液浓度为0.7%,混合时间为30min,温度为50°C,得到了最合适的工艺条件。包封效率(EE)取决于绿茶提取物和磷脂酰胆碱的浓度。最佳配方中的EE达到51.34%。绿茶脂质体提取物的粒径和Z-电位分别在419nm和-59.7mV下进行了评估。绿茶的总多酚含量(TPC)包括164.2mg没食子酸/g提取物。用2-二苯基-1-吡喃肼(DPPH)法计算出游离提取物和脂质体提取物的自由基清除活性分别为90.6%和93.37%。结论:绿茶脂质体提取物具有较高的抗氧化活性,可广泛应用于食品工业。不需要尺寸减小的方法(例如超声处理和均化)来生产纳米尺寸的脂质体提取物,以避免结构不稳定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Liposomal Green Tea Extract: Optimization and Physicochemical Characterization
Introduction: Although Green tea is a rich source of antioxidant, use of this herbal in food industries is limited due to its oxygen and light instabilities. Materials and Methods: Green tea polyphenols were encapsulated into liposomes using Mozafari method (with no solvents and detergents) to improve bioavailability of tea polyphenols. Screening design was used to find the major variables within all possible process variables. Then, optimal conditions were studied using response surface. Results: The most appropriate condition was achieved using phosphatidylcholine of 4.5% (w/w), extract concentration of 0.7%, mixing time of 30 min and temperature of 50 °C. Encapsulation efficiency (EE) depended on concentrations of the green tea extract and phosphatidylcholine. The EE in optimal formulation was reached as 51.34%. The particle size and Z-potential of liposomal green tea extract were assessed at 419 nm and -59.7 mV, respectively. The total polyphenol content (TPC) of green tea included 164.2 mg gallic acid/g extract. Free radical scavenging activities of free and liposomal extracts were calculated as 90.6 and 93.37%, respectively, using 2-2-diphenyl-1-pycrylhydrazyl (DPPH) method. Conclusions: Results revealed that liposomal green tea extract can be used extensively in food industries due to its high antioxidant activity. No size decreasing methods (e.g. sonication and homogenization) were needed to produce nanosize liposomal extracts to avoid structure instability.
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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%
发文量
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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