Department of Crop Production and Management
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Browsing Department of Crop Production and Management by Author "Akullo, Jolly Oder"
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Item A comprehensive review of aflatoxin in groundnut and maize products in Africa : prevalence, detection and mitigation strategies.(Wiley, 2025) Akullo, Jolly Oder; Okello, David Kalule; Mohammed, Abdi; Muyinda, Robert; Amayo, Robert; Magumba, David; Gidoi, Robert; Njoroge, Samuel; Mweetwa, AliceAflatoxins are a toxic secondary metabolite, mainly produced by the fungi Aspergillus favus and A. parasiticus. Aflatoxin contamination of food is a global concern, as they are carcinogenic, mutagenic and teratogenic. Groundnuts and maize products are highly susceptible to afatoxin contamination at both pre- and postharvest stages; this leads to a great risk for those countries that rely on these products for food and nutrition security as well as income. Groundnut and maize products have contributed a substantial amount of afatoxin exposure to human and animal health risks, especially in countries that experience tropical climate and recurrent drought, favouring mould developments. Due to the strange health impacts of afatoxin in agricultural commodities, diferent countries have set the acceptable limits for groundnut and maize products, whereas most of the countries use the same limit for both commodities. Detection and quantifcation of afatoxins in groundnut and maize products are mainly through enzyme-linked immunoafnity assay (ELISA) and high-performance liquid chromatography (HPLC), among others. However, currently rapid, accurate and cost-efective techniques are emerging to quickly monitor and enforce the regulation limits. Among the widely applied strategies for afatoxin mitigation are biological control including atoxigenic Aspergillus strains, plant extracts, and chemical and physical methods of detoxifcation and decontamination. Afatoxin decontamination using plant extracts is promising for most countries in sub-Saharan Africa owing to the availability, ease of access and afordability; however, there is a need for further screening to isolate the bioactive ingredients. Tis review could provide insight into the researchers, stakeholders and consumers on the prevalence of afatoxin in groundnut and maize products as well as mitigation strategies to improve food safety. Keywords: afatoxin; Aspergillus; carcinogenic; decontamination; food safety; health riskItem Post‑harvest handling, processing and value addition of edible insects as a sustainable food resource in Africa : a review.(Springer, 2025) Akullo, Jolly Oder; Egonyu, James Peter; Ng’ang’a, Jeremiah; Kiiru, Samuel; Mmari, Mercy; Ndiritu, Alex; Maimba, Zipporah Wangari; Salano, Fedha Monicha; Kinyuru, JohnEdible insects at different developmental stages like larvae, pupae and adults serve as food resources across the globe. They are rich in nutrients such as protein, fat, essential vitamins and minerals. Since recent decades, there is a growing interest in utilising edible insects as part of the sustainable solutions to malnutrition and food insecurity in the world. This review analyses the current advances in post-harvest processes and value addition in edible insects, focusing on development of modern processing technologies, use of insects in food enrichment in order to improve their nutritional profile, palatability as well as extraction of high value industrial products/compounds from the insects. Presently, most edible insects are harvested from the wild and traditionally processed through boiling, roasting, frying, smoking, solar drying, stewing, steaming, drying and pounding or a combination of these methods. To increase consumer interest in insects, various novel technologies have been developed particularly aiming at using insects as ingredients in a non-recognizable form, such as powders or flour to enrich and supplement food products. Insect-based bakery products such as bread, biscuits, muffins, crackers, cookies, complementary food and porridges are the most common products. The most popular insects reported in food enrichment include crickets, winged termites, mealworms, palm weevil larvae, locusts, and grasshoppers. Technologies for extraction of insect components like chitin, fat/oil, and protein for application as ingredients in food industry are still being developed. Conventional food products with 5% insect powder inclusion are highly acceptable to consumers in Africa. Keywords Processing · Food enrichment · Insect products