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Extraction of Total Triterpenoid Saponins from Ganoderma lucidum by Box-Behnken Design

机译:Box-Behnken设计从灵芝中提取总三萜皂苷

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摘要

A three-factor, three-level Box-Behnken factorial design combined with response surface methodology was conducted to optimize ultra- sonic-assisted extraction for triterpenoid-enriched extract from Ganoderma lucidum. Three independent variables were extraction time (X1), ultrasonic power (X2) and ratio of solution to solid (X3), respectively. The experimental data obtained were fitted to a second-order polynomial equation with analysis of multiple regressions. The results demonstrated that those three factors significantly affected the yield of total triterpenoid saponins (TPS) from Ganoderma lucidum. The optimal processing conditions of the extraction of total triterpenoid saponins by ultrasound treatment were determined: extraction time 27 min, ultrasonic power 135 w and ratio of solution to solid 47 mL/ g. At this condition, the actual yield of total triterpenoid saponins was 1.122 %, which increased by a factor of 1.35 compared with that of classical extraction. Scanning electron microscopic (SEM) images of the fungal cells after ultrasound treatment were obtained to provide visual evidence of the disruption effect.
机译:进行了三因素,三级Box-Behnken析因设计与响应面分析相结合的方法,以优化超声辅助提取灵芝中富含三萜的提取物。三个独立变量分别是提取时间(X1),超声功率(X2)和溶液与固体的比例(X3)。将获得的实验数据拟合到具有多项回归分析的二阶多项式方程。结果表明,这三个因素显着影响了灵芝总三萜皂苷(TPS)的产量。确定了通过超声处理提取总三萜皂苷的最佳工艺条件:提取时间27分钟,超声功率135 w和溶液与固体的比率47 mL / g。在这种条件下,总三萜皂苷的实际收率为1.122%,与传统提取方法相比增加了1.35倍。获得超声处理后真菌细胞的扫描电子显微镜(SEM)图像,以提供破坏效果的视觉证据。

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