Almeida Cíntia, Murta Daniel, Nunes Rui, Baby André Rolim, Fernandes Ângela, Barros Lillian, Rijo Patricia, Rosado Catarina
Universidade Lusófona (CBIOS - Research Center for Biosciences & Health Technologies), Lisboa, Portugal.
Department of Biomedical Sciences, University of Alcalá, Ctra, Madrid-Barcelona, Km 33.600, Alcalá de Henares, 28871, Madrid, Spain.
Heliyon. 2022 May 18;8(5):e09455. doi: 10.1016/j.heliyon.2022.e09455. eCollection 2022 May.
There is an increasingly growing demand for the use of natural and sustainable bioactives in the field of the pharmaceutical and cosmetic industries. The biomass from black soldier fly larvae () can be viewed as an innovative source of compounds with high aggregate value and marketing potential due to the sustainable organic matter bioconversion process used as substrate for its development. This insect can be a source of lipid compounds with high added value, mainly due to its high content in fatty acids (FA) with potential applicability in the pharmaceutical and cosmetic industry. In this context, in this work different extraction methods were tested (decoction, microwaves, maceration and ultrasound), using water, acetone, hexane as extraction solvents, to evaluate yields of the BSF larvae lipid extracts, as well as their lipid profile, and a preliminary safety screening was conducted. Results show that despite using different extraction techniques and solvents, similar FA composition profiles were obtained. The lauric acid content (C12: 0) is elevated in all the extracts in relation to the other FA, ranging 37%-62%. The contents in palmitic (C16: 0) and oleic (C18: 1n-9) acids, were also high in all applied extraction methods. The omega-6 FA (ω-6 PUFAs), mainly linoleic acid (C18: 2n6c), were also identified in the lipid fraction of BSF larvae biomass, with a content variation between 4.5% and 17.7%, while the omega-3 group, namely α-Linolenic acid (C18: 3n3), presented values between 0.66% and 1.95%. None of the extracts presented toxicity in preliminary tests with the model. Through this study, it was possible to confirm that BSF larvae oil can be obtained by sustainable methods, containing a broad mixture of FA and being highly rich in lauric acid, with a promising skin care applicability.
在制药和化妆品行业领域,对天然和可持续生物活性物质的使用需求日益增长。由于黑水虻幼虫的生物质在其发育过程中以可持续的有机物质生物转化过程为底物,因此可被视为具有高总价值和市场潜力的化合物的创新来源。这种昆虫可以成为高附加值脂质化合物的来源,主要是因为其脂肪酸(FA)含量高,在制药和化妆品行业具有潜在的适用性。在此背景下,本研究测试了不同的提取方法(煎煮法、微波法、浸渍法和超声法),使用水、丙酮、己烷作为提取溶剂,以评估黑水虻幼虫脂质提取物的产率及其脂质谱,并进行了初步的安全性筛选。结果表明,尽管使用了不同的提取技术和溶剂,但获得了相似的脂肪酸组成谱。与其他脂肪酸相比,所有提取物中的月桂酸含量(C12:0)均较高,范围为37%-62%。在所有应用的提取方法中,棕榈酸(C16:0)和油酸(C18:1n-9)的含量也很高。在黑水虻幼虫生物质的脂质部分中也鉴定出了ω-6脂肪酸(ω-6多不饱和脂肪酸),主要是亚油酸(C18:2n6c),含量在4.5%至17.7%之间,而ω-3组,即α-亚麻酸(C18:3n3),含量在0.66%至1.95%之间。在使用该模型的初步测试中,没有一种提取物表现出毒性。通过这项研究,可以确认黑水虻幼虫油可以通过可持续方法获得,含有多种脂肪酸的混合物,并且富含月桂酸,在皮肤护理方面具有广阔的应用前景。