Department of Chemistry and Chemical Technologies, University of Calabria, 87036 Arcavacata di Rende, Italy.
Department of Earth and Marine Sciences, University of Palermo, 90123 Palermo, Italy.
Molecules. 2023 Jan 10;28(2):699. doi: 10.3390/molecules28020699.
Edible insects have the potential to become one of the major future foods. In fact, they can be considered cheap, highly nutritious, and healthy food sources. International agencies, such as the Food and Agriculture Organization (FAO), have focused their attention on the consumption of edible insects, in particular, regarding their nutritional value and possible biological, toxicological, and allergenic risks, wishing the development of analytical methods to verify the authenticity, quality, and safety of insect-based products. Edible insects are rich in proteins, fats, fiber, vitamins, and minerals but also seem to contain large amounts of polyphenols able to have a key role in specific bioactivities. Therefore, this review is an overview of the potential of edible insects as a source of bioactive compounds, such as polyphenols, that can be a function of diet but also related to insect chemical defense. Currently, insect phenolic compounds have mostly been assayed for their antioxidant bioactivity; however, they also exert other activities, such as anti-inflammatory and anticancer activity, antityrosinase, antigenotoxic, and pancreatic lipase inhibitory activities.
食用昆虫有可能成为未来的主要食物之一。事实上,它们可以被视为廉价、高营养和健康的食物来源。国际机构,如联合国粮食及农业组织(FAO),已经将注意力集中在食用昆虫上,特别是考虑到它们的营养价值和可能存在的生物、毒性和过敏风险,希望开发分析方法来验证基于昆虫的产品的真实性、质量和安全性。食用昆虫富含蛋白质、脂肪、纤维、维生素和矿物质,但似乎也含有大量的多酚,这些多酚可能在特定的生物活性中发挥关键作用。因此,这篇综述概述了食用昆虫作为生物活性化合物(如多酚)的来源的潜力,这些化合物可以作为饮食的功能,也与昆虫的化学防御有关。目前,昆虫类的酚类化合物主要是为了它们的抗氧化生物活性而进行检测;然而,它们还具有其他活性,如抗炎和抗癌活性、抗酪氨酸酶、抗原毒性和胰脂肪酶抑制活性。