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Free radical scavenging and anti-proliferative activities of avocado (Persea americana Mill.) seed extract

机译:鳄梨(Persea americana Mill。)种子提取物的自由基清除和抗增殖活性

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Objective: To investigate the chemical components and biological activities of avocado seed extract and fractions in order to determine the nutritional and pharmaceutical values of avocado seed. Methods: Various organic solvents were applied for extraction and fractionation of avocado seed. 1,1-diphenyl-2-picryl-hydrazyl, 2,2-azinobis-3-ethyl benzothiazoline-6-sulfonic acid, and DNA oxidation assays were applied for investigation of free radical scavenging activity. Nitric oxide production was measured by Griess reaction assay. Moreover, MTT assay was used to measure cancer cell growth inhibition. Results: The result indicated that the avocado seed contains (7.14 ± 0.40) g lipid/100 g, (1.67 ± 0.03) g protein/100 g, (54.0 ± 1.2) g carbohydrate/100 g, and (62.0 ± 2.3) mg gallic acid equivalent/g dried weight extract. Moreover, dichloromethane and ethyl acetate were revealed to be the highest free radical scavenging fractions with IC50 values of (48.0 ± 3.4) μg/mL (1,1-diphenyl-2-picryl-hydrazyl assay) and (22.0 ± 1.8) μg/mL (2,2-azinobis-3-ethyl benzothiazoline-6-sulfonic acid assay), respectively. Additionally, the avocado seed extract and fractions were able to protect against H2O2-induced DNA damage at the concentration of 100 μg/mL. On the other hand, the ethanol extract was effective in reducing nitric oxide production from lipopolysaccharide-stimulated RAW 264.7 macrophage cells without cytotoxic effect. Notably, the avocado seed significantly inhibited the proliferation of human lung A549 and human gastric BGC823 cancer cells at the concentration of 200 μg/mL, especially hexane (81 ± 3)% and dichloromethane (75 ± 2)% fractions. Conclusions: The results of the present study supported the avocado seed as potential by-product source for further development of health beneficial products.
机译:目的:研究鳄梨种子提取物及其馏分的化学成分和生物学活性,以确定鳄梨种子的营养和药用价值。方法:将各种有机溶剂用于鳄梨种子的提取和分离。 1,1-二苯基-2-picryl-肼基,2,2-叠氮基双-3-乙基苯并噻唑啉-6-磺酸和DNA氧化测定法用于研究自由基清除活性。通过Griess反应测定法测量一氧化氮的产生。此外,MTT测定法用于测量癌细胞生长抑制。结果:结果表明,鳄梨种子含有(7.14±0.40)g脂质/ 100 g,(1.67±0.03)g蛋白质/ 100 g,(54.0±1.2)g碳水化合物/ 100 g和(62.0±2.3)mg没食子酸当量/克干重提取物。此外,二氯甲烷和乙酸乙酯被认为是清除自由基最多的组分,IC50值分别为(48.0±3.4)μg/ mL(1,1-二苯基-2-吡啶-2-肼基测定)和(22.0±1.8)μg/ mL毫升(2,2-叠氮基双-3-乙基苯并噻唑啉-6-磺酸测定)。另外,鳄梨种子提取物和级分能够以100μg/ mL的浓度防止H2O2诱导的DNA损伤。另一方面,乙醇提取物可有效减少由脂多糖刺激的RAW 264.7巨噬细胞产生的一氧化氮,而无细胞毒性作用。值得注意的是,鳄梨种子在浓度为200μg/ mL时,尤其是己烷(81±3)%和二氯甲烷(75±2)%的比例下,能显着抑制人肺A549和人胃BGC823癌细胞的增殖。结论:本研究结果支持鳄梨种子作为进一步开发有益健康产品的潜在副产品来源。

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    NTT Institute of Hi-Technology, Nguyen Tat Thanh University, Ho Chi Minh City, Vietnam;

    NTT Institute of Hi-Technology, Nguyen Tat Thanh University, Ho Chi Minh City, Vietnam;

    Faculty of Natural Sciences, Thu Dau Mot University, Binh Duong province, Vietnam;

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