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Lipophilic Fraction of Cultivated Bifurcaria bifurcata R. Ross: Detailed Composition and In Vitro Prospection of Current Challenging Bioactive Properties

机译:栽培的Bifurcaria bifurcata R. Ross的亲脂级分:详细的组成和目前具有挑战性的生物活性特性的体外展望。

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摘要

Macroalgae have been seen as an alternative source of molecules with promising bioactivities to use in the prevention and treatment of current lifestyle diseases. In this vein, the lipophilic fraction of short-term (three weeks) cultivated Bifurcaria bifurcata was characterized in detail by gas chromatography–mass spectrometry (GC-MS). B. bifurcata dichloromethane extract was composed mainly by diterpenes (1892.78 ± 133.97 mg kg−1 dry weight (DW)), followed by fatty acids, both saturated (550.35 ± 15.67 mg kg−1 DW) and unsaturated (397.06 ± 18.44 mg kg−1 DW). Considerable amounts of sterols, namely fucosterol (317.68 ± 26.11 mg kg−1 DW) were also found. In vitro tests demonstrated that the B. bifurcata lipophilic extract show antioxidant, anti-inflammatory and antibacterial activities (against both Gram-positive and Gram-negative bacteria), using low extract concentrations (in the order of µg mL−1). Enhancement of antibiotic activity of drug families of major clinical importance was observed by the use of B. bifurcata extract. This enhancement of antibiotic activity depends on the microbial strain and on the antibiotic. This work represents the first detailed phytochemical study of the lipophilic extract of B. bifurcata and is, therefore, an important contribution for the valorization of B. bifurcata macroalgae, with promising applications in functional foods, nutraceutical, cosmetic and biomedical fields.
机译:巨藻已被视为具有有希望的生物活性的分子的替代来源,可用于预防和治疗当前的生活方式疾病。在这种情况下,短期(三周)栽培的Bifurcaria bifurcata的亲脂部分通过气相色谱-质谱法(GC-MS)进行了详细描述。 B. bifurcata二氯甲烷提取物主要由二萜类化合物(1892.78±133.97 mg kg -1 干重(DW))组成,其次是饱和脂肪酸(550.35±15.67 mg kg -1 DW)和不饱和(397.06±18.44 mg kg -1 DW)。还发现了相当数量的固醇,即岩藻甾醇(317.68±26.11 mg kg -1 DW)。体外试验表明,双歧双歧杆菌亲脂性提取物使用低提取物浓度(按µg mL )。通过使用双歧双歧杆菌提取物观察到具有重要临床意义的药物家族的抗生素活性增强。抗生素活性的这种增强取决于微生物菌株和抗生素。这项工作代表了双歧双歧杆菌的亲脂性提取物的首次详细植物化学研究,因此,它对双歧双歧杆菌大型藻的增值具有重要贡献,在功能性食品,营养食品,化妆品和生物医学领域具有广阔的应用前景。

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