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柑橘精油及其馏分的化学成分、抗菌和抗氧化活性。

Chemical Composition and Antibacterial and Antioxidant Activity of a Citrus Essential Oil and Its Fractions.

机构信息

Dirección de Investigación y Desarrollo, Universidad Privada del Norte (UPN), 13001 Trujillo, Peru.

Research Center of Excellence CENIVAM, CIBIMOL, Industrial University of Santander, 680002 Bucaramanga, Colombia.

出版信息

Molecules. 2021 May 13;26(10):2888. doi: 10.3390/molecules26102888.

Abstract

Essential oils (EOs) from are the main by-product of -processing industries. In addition to food/beverage and cosmetic applications, citrus EOs could also potentially be used as an alternative to antibiotics in food-producing animals. A commercial citrus EO-Brazilian Orange Terpenes (BOT)-was fractionated by vacuum fractional distillation to separate BOT into various fractions: F1, F2, F3, and F4. Next, the chemical composition and biological activities of BOT and its fractions were characterized. Results showed the three first fractions had a high relative amount of limonene (≥10.86), even higher than the whole BOT. Conversely, F4 presented a larger relative amount of BOT's minor compounds (carvone, -carveol, -carveol, -p-Mentha-2,8-dien-1-ol, and -p-Mentha-2,8-dien-1-ol) and a very low relative amount of limonene (0.08-0.13). Antibacterial activity results showed F4 was the only fraction exhibiting this activity, which was selective and higher activity on a pathogenic bacterium () than on a beneficial bacterium ( sp.). However, F4 activity was lower than BOT. Similarly, F4 displayed the highest antioxidant activity among fractions (equivalent to BOT). These results indicated that probably those minor compounds that detected in F4 would be more involved in conferring the biological activities for this fraction and consequently for the whole BOT, instead of the major compound, limonene, playing this role exclusively.

摘要

是 -加工工业的主要副产物。除了在食品/饮料和化妆品中的应用外,柑橘精油也有可能被用作食品生产动物抗生素的替代品。一种商业的柑橘精油-巴西橙萜烯(BOT)-通过减压分馏进行了分馏,将 BOT 分离成不同的馏分:F1、F2、F3 和 F4。接下来,对 BOT 及其馏分的化学组成和生物活性进行了表征。结果表明,前三个馏分具有较高的相对柠檬烯含量(≥10.86),甚至高于整个 BOT。相反,F4 呈现出 BOT 少量化合物(香芹酮、-香芹醇、-香芹醇、-对-薄荷-2,8-二烯-1-醇和 -对-薄荷-2,8-二烯-1-醇)的相对含量较大,而柠檬烯的相对含量非常低(0.08-0.13)。抑菌活性结果表明,只有 F4 具有这种活性,它对病原菌()具有选择性和更高的活性,而对有益菌( sp.)则没有。然而,F4 的活性低于 BOT。同样,F4 在馏分中表现出最高的抗氧化活性(相当于 BOT)。这些结果表明,可能是 F4 中检测到的那些少量化合物更能赋予该馏分和整个 BOT 的生物活性,而不是主要化合物柠檬烯单独发挥这种作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ddb/8152727/44192ff453b0/molecules-26-02888-g001.jpg

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