Nsevolo Miankeba Papy, Taofic Alabi, Kiatoko Nkoba, Mutiaka Kambashi, Francis Frédéric, Caparros Megido Rudy
Faculté des Sciences Agronomiques, Université Pédagogique Nationale (UPN), Kinshasa 8815, Democratic Republic of the Congo.
Faculté des Sciences Agronomiques, Université de Kinshasa (UNIKIN), Kinshasa 15373, Democratic Republic of the Congo.
Insects. 2022 Oct 29;13(11):994. doi: 10.3390/insects13110994.
This study analyzed the protein content of ten edible insect species (using the Dumas method), then focused on the amino acid (AA) profiles of the six major commercially relevant species using HPLC (high-pressure (or performance) liquid chromatography). The protein contents varied significantly from 46.1% to 52.9% (dry matter); the Orthoptera representative yielding both the highest protein content and the highest values in three essential amino acids (EAAs). Regarding Lepidoptera species, the protein content of Saturniidae varied more than for Notodontidae. gave the best example of a species that could be suggested for dietary supplementation of cereal-based diets, as the sample contained the highest values in five EAAs and for the EAA index. Furthermore, first-limiting AAs in the selected insects have also been pointed out (based on a species-specific AA score), supporting that the real benefit from eating insects is correlated to a varied diet. Additionally, preliminary insights into AA distribution patterns according to taxa provided three clusters based on protein quality and should be completed further to help tailor prescriptions of dietary diets. Since the AA composition of the selected insects was close to the FAO/WHO EAA requirement pattern for preschool children and met the requirements of 40% EAAs with high ratio EAAs/NEAAs, the current study endorses reports of edible insects as nutrient-rich and sustainable protein sources.
本研究分析了10种可食用昆虫的蛋白质含量(采用杜马斯法),然后重点使用高效液相色谱法(HPLC)分析了6种主要商业相关昆虫的氨基酸(AA)谱。蛋白质含量在46.1%至52.9%(干物质)之间差异显著;直翅目昆虫代表的蛋白质含量最高,三种必需氨基酸(EAA)的含量也最高。关于鳞翅目昆虫,天蚕蛾科的蛋白质含量变化比舟蛾科大。 是可用于谷物类饮食膳食补充的昆虫物种的最佳例子,因为该样本在五种必需氨基酸和必需氨基酸指数方面的值最高。此外,还指出了所选昆虫中的第一限制氨基酸(基于特定物种的氨基酸评分),这支持了食用昆虫的实际益处与多样化饮食相关。此外,根据分类群对氨基酸分布模式的初步见解提供了基于蛋白质质量的三个聚类,应进一步完善以帮助定制饮食处方。由于所选昆虫的氨基酸组成接近粮农组织/世卫组织学龄前儿童必需氨基酸需求模式,并且必需氨基酸/非必需氨基酸比例较高,满足了40%必需氨基酸的需求,因此本研究认可了可食用昆虫作为营养丰富且可持续的蛋白质来源的报道。