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Preparation of Nano/Submicrometer Ganoderma tsugae and Its Mutagenic Potencies and Cytotoxicity

机译:纳米/亚微米级灵芝的制备及其诱变力和细胞毒性

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This study explored the feasibility of preparing nano/submicrometer particles from Ganoderma tsugae to enhance the contents of bioactive compounds and to assess its mutagenic potencies and cytotoxicity. Hot-water extract, a common product, was employed as a reference. After 3 h of media milling, almost all of the particles were smaller than 1 mu m with a number-mean diameter of 0.11 mu m. There were about 62% particles smaller than 0.1 mu m in terms of number of particles. Scanning electron microscopy (SEM) confirmed the presence of particles at nano/submicrometer scale. The content of 1 ->?3-beta-d-glucan in nano/submicrometer G. tsugae was 3.5 times of that in hot-water extract. Both nano/submicrometer and hot-water extract G. tsugae exhibited no mutagenic potential to Salmonella Typhimurium tester strains. Cell toxicity test also confirmed the safety of both nano/submicrometer and hot-water extract G. tsugae. The effect of media milling on the structural change of hyphae was also discussed.
机译:这项研究探索了从灵芝中制备纳米/亚微米颗粒以提高生物活性化合物的含量并评估其诱变能力和细胞毒性的可行性。常用提取物热水提取物作为参考。介质研磨3小时后,几乎所有颗粒均小于1μm,数均直径为0.11μm。就颗粒数目而言,约有62%的颗粒小于0.1μm。扫描电子显微镜(SEM)证实了纳米/亚微米级颗粒的存在。纳米/亚微米G虫中1->β3-β-d-葡聚糖的含量是热水提取物中含量的3.5倍。纳米/亚微米和热水提取物G. tsugae对鼠伤寒沙门氏菌测试菌株均无诱变潜力。细胞毒性试验还证实了纳米/亚微米和热水提取物G虫的安全性。还讨论了介质研磨对菌丝结构变化的影响。

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