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从根部水热提取皂苷——理化特性及抗菌活性评估

Hydrothermally extraction of saponin from root - Physico-chemical characteristics and antibacterial activity evaluation.

作者信息

Najjar-Tabrizi Roza, Javadi Afshin, Sharifan Anousheh, Chew Kit Wayne, Lay Chyi-How, Show Pau Loke, Jafarizadeh-Malmiri Hoda, Berenjian Aydin

机构信息

Department of Food Science and Technology, Science and Research Branch, Islamic Azad University, Tehran, Iran.

Department of Food Hygiene, Tabriz Branch, Islamic Azad University, Tabriz, Iran.

出版信息

Biotechnol Rep (Amst). 2020 Jul 23;27:e00507. doi: 10.1016/j.btre.2020.e00507. eCollection 2020 Sep.

Abstract

Saponin was extracted from root under subcritical water conditions, and effects of root powder and pH of the solution were evaluated on the concentration of the saponin as manifested in its foamability and antioxidant activity using RSM. FT-IR analysis indicated that root extract had 2 main functional groups (hydroxyl and amide I groups). Saponin with the highest foam height (4.66 cm), concentration (0.080 ppm) and antioxidant activity (90.6 %) was extracted using 10 g of the root powder and pH value of 4. Non-significant differences were observed between the predicted and experimental values of the extraction response variables. The study demonstrated good appropriateness of resulted models by Response Surface Methodology. Furthermore, higher values of R was attained for the foamability (>0.81) and antioxidant activity (>0.97), as well as large p-values (p > 0.05) indication of their lack-of-fit response verified the acceptable fitness of the provided models. The extracted saponin also showed bactericidal effect, which shows potential as a natural antibacterial compound.

摘要

在亚临界水条件下从根部提取皂苷,并使用响应曲面法(RSM)评估根粉和溶液pH值对皂苷浓度的影响,皂苷浓度通过其发泡性和抗氧化活性体现。傅里叶变换红外光谱(FT-IR)分析表明,根提取物有两个主要官能团(羟基和酰胺I基团)。使用10克根粉和pH值为4时,提取出了具有最高泡沫高度(4.66厘米)、浓度(0.080 ppm)和抗氧化活性(90.6%)的皂苷。提取响应变量的预测值和实验值之间未观察到显著差异。该研究表明响应曲面法所得模型具有良好的适用性。此外,发泡性(>0.81)和抗氧化活性(>0.97)的R值较高,以及缺乏拟合响应的大p值(p>0.05)表明所提供模型具有可接受的拟合度。提取的皂苷还显示出杀菌作用,表明其作为天然抗菌化合物具有潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9558/7394755/4e92d8a2a3e3/gr1.jpg

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