Escola Superior Agraria, Instituto Politécnico de Santarém, 2001-904 Santarém, Portugal.
Life Quality Research Centre (CIEQV), IPSantarem/IPLeiria, 2040-413 Rio Maior, Portugal.
Nutrients. 2023 Jul 8;15(14):3076. doi: 10.3390/nu15143076.
Insects have been consumed as food in diverse cultures worldwide, gaining recognition as a sustainable and nutritious food source. This systematic review aims to update information on the impact of insect consumption on human health based on human randomized controlled trials (RCTs) and allergenicity assessment studies. Following PRISMA guidelines, studies published in the last 10 years were analyzed. From one-thousand and sixty-three retrieved references, nine RCTs and five allergenicity studies were analyzed. Post-prandial amino acid levels increased after insect protein consumption. In comparison with other protein sources, insect protein showed no significant differences in the area under the curve (AUC) values for essential amino acids but tended to have lower peaks and peak later. In terms of muscle protein synthesis, there were no significant differences between insect protein and other protein sources. Glucose levels did not differ; however, insulin levels were lower after the consumption of insect-based products. The effects on inflammatory markers and microbiota composition were inconclusive and the studies did not show significant effects on appetite regulation. Allergenicity assessments revealed a sensitisation and cross-reactivity between insect allergens and known allergens. A partial reduction of cross-allergenicity was observed via thermal processing. Insect protein is an adequate protein source with promising health benefits; however, further research is needed to fully understand its potential and optimise its inclusion into the human diet.
昆虫在世界上的不同文化中被当作食物来食用,已被认为是一种可持续且营养丰富的食物来源。本系统评价旨在根据人类随机对照试验 (RCT) 和变应原性评估研究更新关于食用昆虫对人类健康影响的信息。根据 PRISMA 指南,分析了过去 10 年发表的研究。从 1063 篇检索到的参考文献中,分析了 9 项 RCT 和 5 项变应原性研究。食用昆虫蛋白后,餐后氨基酸水平增加。与其他蛋白质来源相比,昆虫蛋白的必需氨基酸曲线下面积 (AUC) 值没有显著差异,但峰值较低,出现时间较晚。在肌肉蛋白合成方面,昆虫蛋白与其他蛋白质来源之间没有显著差异。血糖水平没有差异;然而,食用昆虫类产品后胰岛素水平较低。关于炎症标志物和微生物群组成的影响尚无定论,这些研究也没有显示出对食欲调节的显著影响。变应原性评估显示昆虫变应原与已知变应原之间存在致敏和交叉反应。通过热加工观察到部分交叉变应原性降低。昆虫蛋白是一种充足的蛋白质来源,具有有前途的健康益处;然而,需要进一步的研究来充分了解其潜力并优化其纳入人类饮食。