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冰辅助超声处理对灵芝孢子微观结构和化学品质的研究。

Investigation of ice-assisted sonication on the microstructure and chemical quality of Ganoderma lucidum spores.

作者信息

Zhao Ding, Chang Ming-Wei, Li Jing-Song, Suen William, Huang Jie

机构信息

of Mechanical Engineering, Univ. College London, London, WC1E 7JE, UK; College of Biomedical Engineering & Instrument Science, Zhejiang Univ, Hang Zhou, 310027, P.R. China.

出版信息

J Food Sci. 2014 Nov;79(11):E2253-65. doi: 10.1111/1750-3841.12681. Epub 2014 Oct 15.

Abstract

Ganoderma lucidum spores (GLS) are well known for disease treatment and vitality enhancement, and have been shown to contain a variety of bioactive components, such as polysaccharides and triterpenes. However, the resilient bilayer sporoderm structure of GLS restricts the release of bioactive components and limits its complete pharmacological effects. The current study was aimed to improve the quality of GLS by means of a customized sonication technique, particularly, the effect of sonication processing parameters on GLS-breaking efficiencies was investigated. Significant morphological changes, such as cracked, fractured, and disintegrated GLS were observed using scanning electron microscopy (SEM) after sonication treatment. The performance for breaking GLS sporoderm was obtained at ultrasonic power density of 23.7 W/cm(2) , duty cycle 100%, and 90-min processing time. Through the combination of sonication in an ice bath, sporoderm breaking efficiency can be further increased from 45% to almost 75%. FTIR analysis revealed an increase in bioactive components of polysaccharide, protein, and fatty acid from the sonication processed GLS when compared to ground spores available commercially. The current results indicated that the ice bath combined sonication method is more effective in delivering GLS ingredients and could be an economic technique for the production of high-quality broken sporoderm GLS.

摘要

灵芝孢子(GLS)以治疗疾病和增强活力而闻名,并且已被证明含有多种生物活性成分,如多糖和三萜类化合物。然而,灵芝孢子坚韧的双层孢子壁结构限制了生物活性成分的释放,也限制了其完整的药理作用。本研究旨在通过定制的超声处理技术提高灵芝孢子的品质,特别是研究超声处理参数对灵芝孢子破壁效率的影响。超声处理后,使用扫描电子显微镜(SEM)观察到灵芝孢子出现了明显的形态变化,如破裂、破碎和解体。在超声功率密度为23.7 W/cm²、占空比100%和处理时间90分钟的条件下,获得了灵芝孢子壁的破壁性能。通过在冰浴中进行超声处理相结合,孢子壁的破壁效率可从45%进一步提高到近75%。傅里叶变换红外光谱(FTIR)分析表明,与市售研磨孢子相比,经超声处理的灵芝孢子中多糖、蛋白质和脂肪酸等生物活性成分有所增加。目前的结果表明,冰浴结合超声处理方法在释放灵芝孢子成分方面更有效,并且可能是一种生产高质量破壁灵芝孢子的经济技术。

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