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Open access 2025

Assessment of Aflatoxin B₁ Potential Non-Carcinogenic and Hepatocellular Carcinoma Risk Associated with consumption of some Staple Foods across Northeastern Nigeria

Aflatoxin B₁ (AFB₁ ) remains one of the most potent and widely distributed mycotoxins found in global food systems, especially within warm, humid regions where fungal growth is favourable. It is a toxic secondary metabolite predominantly produced by Aspergillus flavus, a fungus known to contaminate a broad range of agricultural commodities including maize, rice, groundnuts, cereals and other staple foods. This study evaluated Aflatoxin B₁ (AFB₁ ) contamination, dietary exposure, margin of exposure (MOE), and hepatocellular carcinoma (HCC) risk associated with consumption of contaminated maize, millet, cowpea, and peanut across selected areas of Borno and Yobe States, Northeastern Nigeria. Monthly sampling was conducted between November 2024 and February 2025 across major markets, followed by HPLC quantification of AFB₁ and subsequent risk evaluation. Results showed strong seasonal variation, with January exhibiting the highest contamination levels in peanuts with concentration of (69.12 μg/kg) and followed by maize with 27.26 μg/kg. Estimated Daily Intake (EDI) values for both adults and children exceeded the provisional maximum tolerable daily intake (PMTDI) threshold during peak months, while MOE values consistently fell far below the safety benchmark of 10,000, indicating significant public health concern. Potential liver cancer burden estimations also revealed heightened risk, particularly among children in Damaturu and Gashua were found to be the hotspots. Overall, the findings of this study demonstrate significant potential AFB₁ related health risks in northeastern Nigeria, underscoring the urgent need for improving post-harvest handling, storage interventions, stronger regulatory oversight, and public-health risk mitigation strategies, therefore, there is an urgent need for regulatory enforcement on AFB1 limits within food supply chains and strengthen post-harvest drying and storage in Nigeria. 

B. U., U. A. · 0 citations
Review Open access 2025

Plant tissue culture: A key technique in developing transgenic tomato plants for enhanced resistance to Tuta absoluta – A review

Tuta absoluta is a highly destructive pest that poses a serious threat to tomato production worldwide. Tissue culture techniques enable the regeneration of genetically modified (GM) plants that carry genes conferring resistance to specific pests, this allows for the efficient production of disease-free and genetically improved plants. This review highlights the significance of tissue culture techniques—such as callus induction, organogenesis, and somatic embryogenesis—in the development of transgenic tomato plants resistant to T. absoluta. These in vitro methods serve as essential platforms for introducing and regenerating genetically engineered traits. In particular, modern genetic engineering strategies, including the insertion of insecticidal genes, RNA interference (RNAi), and CRISPR/Cas-based genome editing, are discussed as effective tools for enhancing pest resistance. The integration of plant tissue culture with molecular breeding offers several advantages over conventional breeding approaches, including increased precision in genetic modifications, improved resistance to pests and diseases, enhanced yield and quality, accelerated development of new varieties, and better adaptation to environmental stressors. Collectively, these benefits contribute to more efficient, targeted, and sustainable crop improvement. Future research should prioritize the optimization of transformation protocols, the assurance of biosafety, and the comprehensive evaluation of field performance to fully realize the potential of transgenic tomatoes in combating pest infestations.

U. A., Umar K. M., Sani L. A. et al. · 0 citations

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