Toxic Analysis of Leaf Protein Concentrate Regarding Common Agricultural Residues

Q3 Agricultural and Biological Sciences Journal of Food Quality and Hazards Control Pub Date : 2023-09-18 DOI:10.18502/jfqhc.10.3.13643
T.K. Meyer, R.J. Tieman, S.W. Breuer, D. Denkenberger, J.M. Pearce
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 Background: Potential resilient foods which help reduce hunger are converting the ~998 million tons of agricultural residue generated each year into human edible food. Although it is possible to extract Leaf Protein Concentrate (LPC) from agricultural residues, it is not widely practiced because both toxicity and yields of the protein concentrates have not been widely investigated in the most common agricultural residues.Methods: To fill this knowledge gap, this study uses high-resolution mass spectrometry and an open-source toolchain for non-targeted screening of toxins of nine agricultural plant residues in October 2021; it included seven agricultural residues: corn/maize, wheat, barley, alfalfa, yellow pea, sunflower, canola/rapeseed, and two weeds/agricultural residues of kochia, and round leaf mallow.Results: The average yield ranged from about 7 to 14.5% for the nine LPCs investigated. According to the results, yellow pea, round leaf mallow, and canola are recommended for further investigation and scaling as they appear to be fit for human consumption based on the lack of dangerous toxins found in the analysis performed in this study.Conclusion: All the compounds identified in these samples have either been approved by international regulatory boards for safe consumption or are known to be present in common beverages. The other agricultural residues require additional quantification of the toxins identified as it will determine the actual risk for human consumption. Overall, the potential for LPC to provide more needed calories from existing agricultural practices is extremely promising, but substantial amount of future work is needed to screen LPCs in all the agricultural residues depending on harvesting, handling, and storage conditions.
 
 
 
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Abstract

Background: Potential resilient foods which help reduce hunger are converting the ~998 million tons of agricultural residue generated each year into human edible food. Although it is possible to extract Leaf Protein Concentrate (LPC) from agricultural residues, it is not widely practiced because both toxicity and yields of the protein concentrates have not been widely investigated in the most common agricultural residues.Methods: To fill this knowledge gap, this study uses high-resolution mass spectrometry and an open-source toolchain for non-targeted screening of toxins of nine agricultural plant residues in October 2021; it included seven agricultural residues: corn/maize, wheat, barley, alfalfa, yellow pea, sunflower, canola/rapeseed, and two weeds/agricultural residues of kochia, and round leaf mallow.Results: The average yield ranged from about 7 to 14.5% for the nine LPCs investigated. According to the results, yellow pea, round leaf mallow, and canola are recommended for further investigation and scaling as they appear to be fit for human consumption based on the lack of dangerous toxins found in the analysis performed in this study.Conclusion: All the compounds identified in these samples have either been approved by international regulatory boards for safe consumption or are known to be present in common beverages. The other agricultural residues require additional quantification of the toxins identified as it will determine the actual risk for human consumption. Overall, the potential for LPC to provide more needed calories from existing agricultural practices is extremely promising, but substantial amount of future work is needed to screen LPCs in all the agricultural residues depending on harvesting, handling, and storage conditions.
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叶蛋白浓缩物对常见农业残留物的毒性分析
& # x0D;& # x0D;& # x0D;& # x0D;背景:有助于减少饥饿的潜在抗灾食品正在将每年产生的约9.98亿吨农业残留物转化为人类可食用的食物。虽然有可能从农业残留物中提取叶蛋白浓缩物(LPC),但由于在最常见的农业残留物中没有广泛研究蛋白质浓缩物的毒性和产量,因此没有广泛实践。方法:为了填补这一知识空白,本研究于2021年10月使用高分辨率质谱法和开源工具链对9种农业植物残留物进行非靶向毒素筛选;其中包括玉米/玉米、小麦、大麦、苜蓿、黄豌豆、向日葵、油菜/油菜籽等7种农业残留物,以及两种杂草/农业残留物,分别为kochia和圆叶锦葵。结果:9种LPCs的平均产率为7% ~ 14.5%。根据研究结果,黄豌豆、圆叶锦葵和油菜籽似乎适合人类食用,因为在本研究中进行的分析中没有发现危险毒素。结论:在这些样品中发现的所有化合物要么已被国际监管委员会批准安全食用,要么已知存在于普通饮料中。其他农业残留物需要对所鉴定的毒素进行额外的量化,因为这将决定人类消费的实际风险。总的来说,LPC从现有农业实践中提供更多所需卡路里的潜力是非常有希望的,但未来还需要大量的工作来筛选所有农业残留物中的LPC,具体取决于收获、处理和储存条件。& # x0D;& # x0D;& # x0D;
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来源期刊
Journal of Food Quality and Hazards Control
Journal of Food Quality and Hazards Control Agricultural and Biological Sciences-Food Science
CiteScore
1.50
自引率
0.00%
发文量
24
审稿时长
8 weeks
期刊介绍: Journal of Food Quality and Hazards Control (J. Food Qual. Hazards Control) is an international peer-reviewed quarterly journal that aims at publishing of high quality articles involved in food quality, food hygiene, food safety, and food control which scientists from all over the world may submit their manuscript. This academic journal aims to improve international exchange of new findings and recent developments in all aspects of agricultural and biological sciences. This free of charge journal is published in both online and print forms and welcomes the manuscripts that fulfill the general criteria of novelty and scientific importance. Among the most significant objectives of Journal of Food Quality and Hazards Control are to ensure that the articles reflect a wide range of topics regarding journal scopes; to do a fair, scientific, fast, as well as high quality peer-review process; to provide a wide and diverse geographical coverage of articles around the world; and to publish the articles having a trustable resource of scientific information for the audiences. The types of acceptable submissions include original article, review article, short communication, letter to the editor, case report, editorial, as well as book review. Journal of Food Quality and Hazards Control is an official journal of Research Center for Food Hygiene and Safety, School of Public Health, Shahid Sadoughi University of Medical Sciences, Yazd, Iran.
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