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酶法制备多糖缓解氧化应激的潜力研究。

Insights into the Oxidative Stress Alleviation Potential of Enzymatically Prepared Polysaccharides.

机构信息

College of Life Sciences, China Jiliang University, Hangzhou 310018, China.

Hangzhou Zaoxianyibu Food Technology Co., Ltd., Hangzhou 310018, China.

出版信息

Molecules. 2023 Mar 30;28(7):3071. doi: 10.3390/molecules28073071.

Abstract

(1) Background: The extraction parameters can dramatically alter the extraction rate and biological activity of polysaccharides. (2) Methods: Here, an enzyme-assisted extraction (EAE) was employed to extract polysaccharides (DOPs), and its optimal extraction conditions were established by single-factor and Box-Behnken design (BBD) experiments. Further, on the basis of in vitro antioxidant capacity, the paraquat (PQ)-induced oxidative stress of () was chosen as a research model to explore the antioxidant activity of DOPs. (3) Results: The results showed that the extraction yield of DOPs reached 48.66% ± 1.04% under the optimal condition. In vitro experiments had shown that DOPs have considerable ABTS radical scavenging capacity (EC50 = 7.27 mg/mL), hydroxyl radical scavenging capacity (EC50 = 1.61 mg/mL), and metal chelating power (EC50 = 8.31 mg/mL). Furthermore, in vivo experiments indicated that DOPs (0.25 mg/mL) significantly prolonged the lifespan, increased antioxidant enzyme activity, and upregulated the expression of daf-16 (>5.6-fold), skn-1 (>5.2-fold), and sir-2.1 (>2.3-fold) of . (4) Conclusions: DOPs can be efficiently extracted by EAE and are effective in the reduction of oxidative stress levels in .

摘要

(1) 背景:提取参数会显著改变多糖的提取率和生物活性。

(2) 方法:采用酶辅助提取(EAE)提取多糖(DOP),并通过单因素和 Box-Behnken 设计(BBD)实验确定其最佳提取条件。此外,基于体外抗氧化能力,选择百草枯(PQ)诱导的氧化应激模型()来探讨 DOP 的抗氧化活性。

(3) 结果:结果表明,在最佳条件下,DOP 的提取率达到 48.66%±1.04%。体外实验表明,DOP 具有相当的 ABTS 自由基清除能力(EC50=7.27mg/mL)、羟基自由基清除能力(EC50=1.61mg/mL)和金属螯合能力(EC50=8.31mg/mL)。此外,体内实验表明,DOP(0.25mg/mL)可显著延长寿命,提高抗氧化酶活性,并上调()中 daf-16(>5.6 倍)、skn-1(>5.2 倍)和 sir-2.1(>2.3 倍)的表达。

(4) 结论:EAE 可有效提取 DOP,可有效降低的氧化应激水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10b1/10095697/1f55610fac53/molecules-28-03071-g001.jpg

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