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Characterization of St. John's wort (Hypericum perforatum L.) and the impact of filtration process on bioactive extracts incorporated into carbohydrate-based hydrogels

机译:圣约翰草(Hypericum perforatum L.)的表征以及过滤过程对掺入基于碳水化合物的水凝胶中的生物活性提取物的影响

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摘要

Hypericum perforatum L. (HPL) is also called as St. John's wort and is traditionally used as a herbal tea and food supplement because of its excellent bioactive properties. One of the main objective of the present study was to investigate the effect of an additional filtration process on the properties of final HPL extract. Physicochemical studies of crude and filtrate extracts were performed by Fourier-transform infrared spectroscopy, UV-vis spectrometry, and gas chromatography with mass spectroscopy. Filtration efficiency was evaluated by dynamic light scattering at 20 degrees C and 37 degrees C. Determined hydrodynamic diameters of the HPL particles were 180 and 189 nm, respectively, after filtration. Bioactivity tests were performed with four bacterial strains from Pseudomonas genus. The effect on bacterial membrane permeability based on the size of extract particles was also determined.The HPL crude and filtrated extracts were then incorporated into three hydrogel matrices: agar-agar, alginate, and apple's pectin. Low-field nuclear magnetic resonance (LF-NMR) and water activity tests were performed to study the biopolymer matrix. Texture analysis and L*-a*-b* color tests were performed according to the possible color change of HPL extract on the biopolymer matrix.Additional filtration processes are preferable to obtain nano-sized plant-based structures and might affect on the final extract properties. A detailed structural analysis of raw materials and carbohydrate-based hydrogels are necessary for further evaluation of bioactive properties.
机译:金丝桃属植物金丝桃属植物(Hypericum perforatum L.)(HPL)也被称为圣约翰草,由于其出色的生物活性,传统上被用作凉茶和食品补充剂。本研究的主要目的之一是研究额外的过滤过程对最终HPL提取物性能的影响。粗品和滤液提取物的理化研究是通过傅立叶变换红外光谱,紫外可见光谱和气相色谱与质谱进行的。通过在20℃和37℃下的动态光散射来评估过滤效率。在过滤后,HPL颗粒的确定的流体动力学直径分别为180nm和189nm。用来自假单胞菌属的四种细菌菌株进行了生物活性测试。还根据提取物颗粒的大小确定了对细菌膜通透性的影响,然后将HPL粗品和过滤后的提取物掺入三种水凝胶基质中:琼脂,海藻酸盐和苹果果胶。进行低场核磁共振(LF-NMR)和水活度测试以研究生物聚合物基质。根据生物聚合物基质上HPL提取物可能发生的颜色变化进行了结构分析和L * -a * -b *颜色测试,最好采用附加过滤工艺以获得纳米级植物基结构,并可能影响最终提取物属性。对原料和基于碳水化合物的水凝胶进行详细的结构分析对于进一步评估生物活性特性是必要的。

著录项

  • 来源
    《Food Hydrocolloids》 |2020年第7期|105748.1-105748.10|共10页
  • 作者

  • 作者单位

    Poznan Univ Life Sci Dept Phys & Biophys Wojska Polskiego 38-42 PL-60637 Poznan Poland;

    Poznan Univ Tech Inst Chem Technol & Engn Berdychowo 4 PL-60965 Poznan Poland;

    Poznan Univ Life Sci Fac Food Sci & Nutr Dept Biochem & Food Anal Wojska Polskiego 38-42 PL-60637 Poznan Poland;

    Pozna Univ Econ & Business Fac Commod Sci Dept Ind Prod Qual & Ecol Al Niepodleglosci 10 PL-61875 Poznan Poland;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hypericum perforatum L.; Particle size; Carbohydrate-based hydrogels; Bioactivity; Spectroscopic analysis;

    机译:贯叶连翘粒度;基于碳水化合物的水凝胶;生物活性光谱分析;

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