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High pressure extraction of bioactive diterpenes from the macroalgae Bifurcaria bifurcata an efficient and environmentally friendly approach

机译:从宏观曲线Bifurcarata的高压提取生物活性迪尔替氏菌的高效和环保的方法

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The brown macroalgae Bifurcaria bifurcata have gained special attention due to their ability to biosynthesize linear diterpenes (rarely found in other species). However, the conventional extraction methods normally used to extract these compounds involve organic solvents and often high temperatures, leading to the degradation of thermo-labile compounds. In this context, the main objective of this work was to study and optimize for the first time the extraction of diterpenes from B. bifurcata through an environmentally friendly methodology, namely, high pressure extraction (HPE) using ethanol?:?water. This was compared with conventional Soxhlet extraction, using dichloromethane. Box–Behnken design was employed to evaluate the linear, quadratic, and interaction effects of 3 independent variables (pressure ( X _(1) ), ethanol percentage ( X _(2) ), and time of extraction ( X _(3) )) on response variables (extraction yield and diterpenes content (mg g ~(?1) of extract and mg kg ~(?1) of dry weight)) and the optimal extraction conditions ( X _(1) : 600 MPa; X _(2) : 80%; X _(3) : 5 min) were estimated by response surface methodology (RSM). B. bifurcata extract obtained under HPE optimal conditions showed a diterpenes content (612.2 mg g ~(?1) of extract) 12.2 fold higher than that obtained by conventional extraction (50.1 mg g ~(?1) of extract). The HPE extract, obtained under optimal conditions, showed antioxidant and antibacterial (against Staphylococcus aureus ) activities considerably higher than the Soxhlet extract, and also presented a promising synergic effect with antibiotics, improving the antibiotic efficacy against S. aureus . In conclusion, these results indicate that HPE is a promising methodology, compared to conventional methodologies to obtain linear diterpene rich extracts from B. bifurcata with great potential to be exploited in pharmaceutical or biomedical applications.
机译:由于它们的生物合酶化线性划分的能力(很少在其他物种中发现),棕色宏观曲线Bifurcaria Bifurcata患有特别关注。然而,通常用于提取这些化合物的常规提取方法涉及有机溶剂和通常高温,导致热不稳定化合物的降解。在这种情况下,这项工作的主要目标是通过使用环保方法,即使用乙醇的高压萃取(HPE)来研究和优化来自B. Bifurcata的二萜的提取?:?水。将其与常规Soxhlet萃取进行比较,使用二氯甲烷。 Box-Behnken设计被用于评估3个独立变量的线性,二次和相互作用效应(压力(x _(1)),乙醇百分比(x _(2))和提取时间(x _(3) ))在响应变量(提取产率和二萜含量(Mg G〜(α1)的提取物和干重的mg kg〜(α1)))和最佳提取条件(x(1):600 mpa; x _(2):80%; X _(3):5分钟)通过响应面方法(RSM)估算。 B.在HPE最佳条件下获得的Bifurcata提取物显示含量的含量(提取物的612.2mg g〜(α1))比常规萃取(50.1mg g〜(α1)的提取物)高12.2倍。在最佳条件下获得的HPE提取物,显示出抗氧化剂和抗菌剂(抗葡萄球菌)的活性显着高于Soxhlet提取物,并且还与抗生素呈现了有前途的协同作用,从而提高了对金黄色葡萄球菌的抗生素疗效。总之,这些结果表明,与常规方法相比,HPE是一种有希望的方法,以获得来自B. Bifurcata的线性二萜提取物,其具有在药物或生物医学应用中的潜力很大的潜力。

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