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首页> 外文期刊>Oxidative Medicine and Cellular Longevity >Antioxidant Activity and Genotoxic Assessment of Crabwood (Andiroba, Carapa guianensis Aublet) Seed Oils
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Antioxidant Activity and Genotoxic Assessment of Crabwood (Andiroba, Carapa guianensis Aublet) Seed Oils

机译:檀香籽油的抗氧化活性和遗传毒性评估

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摘要

The seed oil of Carapa guianensis (Aublet), a tree from the Meliaceae family commonly known as andiroba, is widely used in Brazilian traditional medicine because of its multiple curative properties against fever and rheumatism and as an anti-inflammatory agent, antibacterial agent, and insect repellant. Since there is no consensus on the best way to obtain the C. guianensis oil and due to its ethnomedicinal properties, the aim of the present research was to evaluate the chemical composition, free-radical scavenging activity, and mutagenic and genotoxicity properties of three C. guianensis oils obtained by different extraction methods. The phenolic contents were evaluated by spectrophotometry. Oil 1 was obtained by pressing the dried seeds at room temperature; oil 2 was obtained by autoclaving, drying, and pressing; oil 3 was obtained by Soxhlet extraction at 30–60°C using petroleum ether. The oil from each process presented differential yields, physicochemical properties, and phenolic contents. Oil 1 showed a higher scavenging activity against the DPPH radical when compared to oils 2 and 3, suggesting a significant antioxidant activity. All oils were shown to be cytotoxic to bacteria and to CHO-K1 and RAW264.7 cells. At noncytotoxic concentrations, oil 2 presented mutagenicity to Salmonella enterica serovar Typhimurium and induced micronuclei in both cell types. Under the same conditions, oil 3 also induced micronucleus formation. However, the present data demonstrated that oil 1, extracted without using high temperatures, was the safest for use as compared to the other two oils, not showing mutagenicity or micronucleus induction.
机译:apa树(Carapa guianensis)(Aublet)的种子油是Meliaceae家族的树,通常被称为andiroba,由于其对发烧和风湿病具有多种治疗作用,并被用作抗炎剂,抗菌剂和驱虫剂。由于目前尚无关于获得最佳的C. guianensis油的方法的共识,并且由于其人种医学特性,本研究的目的是评估三种C的化学组成,自由基清除活性以及诱变和遗传毒性。通过不同的提取方法获得的圭亚那油。通过分光光度法评估酚含量。通过在室温下压制干燥的种子获得油1;通过高压灭菌,干燥和加压获得油2;石油3是在30–60°C下使用石油醚通过索氏提取法获得的。来自每个过程的油呈现出不同的产率,理化性质和酚含量。与油2和3相比,油1对DPPH自由基具有更高的清除活性,表明其具有显着的抗氧化活性。所有油对细菌,CHO-K1和RAW264.7细胞均具有细胞毒性。在无细胞毒性浓度下,油2对两种细胞类型的肠炎沙门氏菌鼠伤寒沙门氏菌均具有诱变性,并诱导了微核。在相同条件下,油3也诱导了微核的形成。但是,目前的数据表明,与其他两种油相比,不使用高温提取的油1是最安全的使用,没有显示出致突变性或微核诱导作用。

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