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首页> 外文期刊>Journal of food quality >Preliminary Studies of Chemical and Physical Properties of Two Varieties of Avocado Seeds Grown in Chile
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Preliminary Studies of Chemical and Physical Properties of Two Varieties of Avocado Seeds Grown in Chile

机译:智利种植两种鳄梨种子化学和物理性质的初步研究

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摘要

In Chile, the most cultivated avocado varieties are Hass and Negra de la Cruz. The increase in the production of fast food preparations, salads, and avocado oil has generated large amounts of seeds and husks as waste, which may constitute a possible new source of bioactive compounds, of great interest to the food and pharmaceutical industry. Therefore, the objective of this study was to determine different nutritional, biochemical, antimicrobial, and physical properties of the SH and SNC seeds grown in Chile. In SH and SNC, their nutritional composition, lipophilic components, and total phenols (PTs) were determined. The antioxidant and antibacterial activity of extracts were measured in different solvent combinations. In addition, the color change of seeds (ΔE) during the browning, the mechanical resistance to the cut, and their thermal transitions by differential calorimetry (DSC) were determined. The results indicated that SH has a higher protein content and lipophilic components. In the ethanol extract, SNC showed greater antiradical activity and is an inhibitor of Gram (+) bacteria. The SNC browning given by ΔE was greater and adjusted well to kinetic and enzymatic models. The physical analyses of the seeds indicated that SNC presented higher cut resistance and lower transition temperature (Tg) with a lower thermal fusion of its lipids, which would be due to its higher unsaturated composition. These properties of SH and SNC can be useful for the agrifood, pharmaceutical, and chemical industries.
机译:在智利,最耕种的鳄梨品种是哈斯和黑人德拉克鲁斯。快速食品制剂,沙拉和鳄梨油的产量增加了大量的种子和外壳作为废物,这可能构成了食品和制药行业的兴趣的可能性新的生物活性化合物来源。因此,本研究的目的是确定智利生长的SH和SNC种子的不同营养,生化,抗微生物和物理性质。在SH和SNC中,确定它们的营养成分,亲脂性组分和总酚(PTS)。以不同的溶剂组合测量提取物的抗氧化剂和抗菌活性。另外,确定了褐变期间的种子(ΔE)的颜色变化,对切割的机械抗性以及通过差分量热法(DSC)的热转变。结果表明,SH具有更高的蛋白质含量和亲脂性组分。在乙醇提取物中,SNC显示出更大的抗射流活性,是克(+)细菌的抑制剂。 ΔE给出的SNC褐变更大并调节到动力学和酶模型。种子的物理分析表明,SNC呈现出更高的抗切割性和较低的过渡温度(Tg),其脂质的较低热熔融合,这将是由于其较高的不饱和组合物。 SH和SNC的这些性质可用于农业食品,制药和化学工业。

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