Dewi Fransiska, Sim Lay Peng, Ng Sin Yee, Leung Ho Wah, Ng Wan Ting, Shin Richard Y C, Mester Zoltan, Teo Tang Lin
Chemical Metrology Laboratory, Chemical Metrology Division, Applied Sciences Group, Health Sciences Authority, 1 Science Park Road, #01-05/06, The Capricorn, Singapore Science Park II, Singapore, 117528, Singapore.
National Research Council Canada, Montreal Road, Ottawa, ON, 1200, Canada.
Anal Bioanal Chem. 2025 May;417(12):2703-2715. doi: 10.1007/s00216-025-05815-1. Epub 2025 Mar 10.
The growing interest in insect protein as an alternative to conventional protein sources is driven by the need for sustainable options with low environmental impact. While insect-based proteins provide significant nutritional benefits, ensuring their safety requires robust analytical methods and access to reliable matrix-matched certified reference materials. Currently, the availability of such materials for assessing inorganic and organic contaminants in insect proteins is limited. This paper outlines the innovative methodologies used to produce an incurred cricket powder reference material for inorganic contaminants (arsenic, cadmium, chromium, mercury, lead, arsenic species) and selenium. It details the careful selection of appropriate contaminant levels introduced through insect feed, feeding regimens, and the production of a certified reference material in compliance with ISO 17034 standard. In the development of the material, a pioneering approach was adopted, integrating tailored feed formulations for insects within controlled farming environments. Through meticulous trials, these techniques achieved satisfactory bioaccumulation of contaminants, enabling the consistent production of high-quality incurred insect protein suitable for use as quality control samples and for method development and validation of methods. The assignment of reference values for these materials was carried out using high-accuracy methods, ensuring metrological traceability with associated measurement uncertainties. The scarcity of insect-based reference materials has posed a challenge to guaranteeing the safety and quality of insect-based proteins. Hence, the development of these reference materials plays a crucial role in instilling confidence among consumers and regulatory bodies in the evolving landscape of the insect protein industry.
对昆虫蛋白作为传统蛋白质来源替代品的兴趣日益浓厚,这是由对环境影响小的可持续选择的需求所驱动的。虽然昆虫蛋白具有显著的营养益处,但要确保其安全性,需要强大的分析方法以及获得可靠的基质匹配认证参考物质。目前,用于评估昆虫蛋白中无机和有机污染物的此类物质的可用性有限。本文概述了用于生产用于无机污染物(砷、镉、铬、汞、铅、砷形态)和硒的掺入蟋蟀粉参考物质的创新方法。它详细介绍了通过昆虫饲料引入适当污染物水平的精心选择、饲养方案以及按照ISO 17034标准生产认证参考物质的过程。在该物质的开发过程中,采用了一种开创性的方法,即在受控养殖环境中整合针对昆虫的定制饲料配方。通过精心试验,这些技术实现了污染物的满意生物积累,能够持续生产适用于作为质量控制样品以及用于方法开发和方法验证的高质量掺入昆虫蛋白。这些物质参考值的赋值使用高精度方法进行,确保了相关测量不确定度的计量溯源性。基于昆虫的参考物质的稀缺对保证基于昆虫的蛋白质的安全性和质量构成了挑战。因此,这些参考物质的开发在增强消费者和监管机构对不断发展的昆虫蛋白行业的信心方面发挥着关键作用。