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多目标响应和化学计量学方法提高甜菜根叶的植物化学物质含量及生物活性:一种未被充分利用的有机废弃物

Multiobjective response and chemometric approaches to enhance the phytochemicals and biological activities of beetroot leaves: an unexploited organic waste.

作者信息

Chaari Moufida, Elhadef Khaoula, Akermi Sarra, Hlima Hajer Ben, Fourati Mariam, Chakchouk Mtibaa Ahlem, Sarkar Tanmay, Shariati Mohammed Ali, Rebezov Maksim, D'Amore Teresa, Mellouli Lotfi, Smaoui Slim

机构信息

Laboratory of Microbial Biotechnology and Engineering Enzymes (LMBEE), Center of Biotechnology of Sfax (CBS), University of Sfax, Road of Sidi Mansour Km 6, P.O. Box 1177, 3018 Sfax, Tunisia.

Laboratory of Enzymatic Engineering and Microbiology, Algae Biotechnology Unit, Biological Engineering Department, National School of Engineers of Sfax, University of Sfax, 3038 Sfax, Tunisia.

出版信息

Biomass Convers Biorefin. 2022 Dec 13:1-15. doi: 10.1007/s13399-022-03645-0.

Abstract

Research on medicinal plants is developing each day due to inborn phytochemicals, which can encourage the progress of novel drugs. Most plant-based phytochemicals have valuable effects on well-being. Among them, beetroot leaves (BL) are known for their therapeutic properties. Here, three solvents, namely, acetonitrile, ethanol, and water, and their combinations were developed for BL extraction and simultaneous assessment of phytochemical compounds and antioxidant and antifoodborne pathogen bacteria activities. By using the augmented simplex-centroid mixture design, 40.40% acetonitrile diluted in water at 38.74% and ethanol at 20.86% favored the recovery of 49.28 mg GAE/mL (total phenolic content (TPC)) and 0.314 mg QE/mL (total flavonoid content (TFC)), respectively. Acetonitrile diluted in water at 50% guarantees the best antioxidant activity, whereas the optimal predicted mixture for the highest antibacterial activity matches 24.58, 50.17, and 25.25% of acetonitrile, ethanol, and water, respectively. These extraction conditions ensured inhibition of , , and , respectively, at 0.402, 0.497, and 0.207 mg/mL. Under optimized conditions, at three concentrations of BL, minimal inhibitory concentration (MIC), 2 × MIC, and 4 × MIC, a linear model was employed to investigate the inhibition behavior against the three tested bacteria. The early logarithmic growth phase of these bacteria illustrated the bactericidal effect of optimized extracted BL with a logarithmic growth phase inferior to 6 h. Therefore, BL extract at 4 × MIC, which corresponds to 1.608, 1.988, and 0.828 mg/mL, was more efficient against , , and

摘要

由于植物自身含有的植物化学物质,药用植物研究日益发展,这些物质能够推动新型药物的研发。大多数基于植物的植物化学物质对健康具有重要作用。其中,甜菜根叶因其治疗特性而闻名。在此,开发了三种溶剂,即乙腈、乙醇和水及其组合,用于甜菜根叶的提取,并同时评估植物化学化合物以及抗氧化和抗食源性病原体细菌的活性。通过使用增强单纯形质心混合设计,在水中以38.74%和乙醇以20.86%稀释的40.40%乙腈分别有利于回收49.28 mg GAE/mL(总酚含量(TPC))和0.314 mg QE/mL(总黄酮含量(TFC))。50%在水中稀释的乙腈保证了最佳的抗氧化活性,而具有最高抗菌活性的最佳预测混合物分别匹配24.58%、50.17%和25.25%的乙腈、乙醇和水。这些提取条件分别确保了对[具体细菌1]、[具体细菌2]和[具体细菌3]的抑制,浓度分别为0.402、0.497和0.207 mg/mL。在优化条件下,针对三种浓度的甜菜根叶,即最低抑菌浓度(MIC)、2×MIC和4×MIC,采用线性模型研究对三种受试细菌的抑制行为。这些细菌的对数生长早期阶段表明,优化提取的甜菜根叶在对数生长期低于6小时时具有杀菌作用。因此,4×MIC的甜菜根叶提取物,对应于1.608、1.988和0.828 mg/mL,对[具体细菌1]、[具体细菌2]和[具体细菌3]更有效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7db/9746593/9499eff80988/13399_2022_3645_Fig1_HTML.jpg

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