ArticleScientific reports2024
Complementary nutritional and health promoting constituents in germinated and probiotic fermented flours from cowpea, sorghum and orange fleshed sweet potato.
Article in Scientific reports, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 13 papers.
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Who cites it
13 citing papers in PubMed.
- Hybrid Sensor-Vision Machine Learning for Predicting Mahewu Fermentation Dynamics.Journal of food science · 2026Article
- Physical, Chemical, and Bioactive Properties of Bread Made from Particle-Size-Fractionated Wheat Flour.Foods (Basel, Switzerland) · 2026Article
- Biotechnological Modulation of Legumes via Fermentation: Impacts on Nutrient Bioaccessibility, Glycemic Index, and Antinutrients-A Scoping Review.Foods (Basel, Switzerland) · 2026Review
- Probiotic Lactic Acid Bacteria-Fermented Beverages from Bambara Groundnut and Cowpea Sprouts Modulate Gut Microbiota and Short-Chain Fatty Acids.Foods (Basel, Switzerland) · 2026Article
- Effects of Starter Concentration and Fermentation Time on Microbiological, Physicochemical, Nutritional, and Sensory Properties of Young Coconut Drink-Based Yogurt.International journal of food science · 2026Article
- Three-Dimensional (3D)-Printed Snacks from Indigenous Composite Inks Improve Metabolic Dysfunctions Associated with High-Fat-Diet-Induced Obesity in Wistar Rats.Foods (Basel, Switzerland) · 2025Article
- Phytochemical Analysis and Characterisation of Brewers' Spent Grain Properties as Affected by Fermentation and Ultrasonication Pretreatments.Foods (Basel, Switzerland) · 2025Article
- Study on the physicochemical properties, biological activities and metabolic profile alterations of jujube juice fermented byFood chemistry: X · 2025Article
- GC-MS-Based Metabolomics for Understanding the Metabolite Profile of Mopane Worm (Gonimbrasia belina) and Sorghum (Sorghum bicolor L).Journal of food science · 2025Article
- Phenolic Composition, Functional Groups, In Vitro Bioactivities, and Techno-Functional Properties of Whole and Composite Bioprocessed Flours From Cowpea, Sorghum and Orange-Fleshed Sweet Potato.Journal of food science · 2025Article
- Fully exposed PtNature communications · 2025Article
- Techno-functional, nutritional, and health-promoting properties enhancement of mopane worm and orange-fleshed sweet potato flour blends via ultrasonication and controlled fermentation.Frontiers in microbiology · 2025Article
- Effect of fermentation, malting and ultrasonication on sorghum, mopane worm andFrontiers in nutrition · 2024Article
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2 authors.
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Abstract
Germination and fermentation are age-long food processes that beneficially improve food composition. Biological modulation by germination and probiotic fermentation of cowpea, sorghum, and orange-fleshed sweet potato (OFSP) and subsequent effects on the physicochemical (pH and total titratable acidity), nutritional, antinutritional factors and health-promoting constituents/properties (insoluble dietary fibres, total flavonoid and phenolic contents (TFC and TPC) and antioxidant capacity) of the derived flours were investigated in this study. The quantification of targeted compounds (organic acids and phenolic compounds) on an ultra-high performance liquid chromatography (UHPLC) system was also done. The whole cowpea and sorghum were germinated at 35 °C for 48 h. On the other hand, the milled whole grains and beans and OFSP were fermented using probiotic mesophilic culture at 35 °C for 48 h. Among the resultant bioprocessed flours, fermented sorghum and sweet potato (FSF and FSP) showed mild acidity, increased TPC, and improved ferric ion-reducing antioxidant power. While FSF had better slowly digestible and resistant starches and the lowest oxalate content, FSP indicated better hemicellulose, lowest fat, highest luteolin, caffeic and vanillic acids. Germinated cowpea flour exhibited reduced tannin, better lactic acid, the highest crude fibre, cellulose, lignin, protein, fumaric, L-ascorbic, trans-ferulic and sinapic acids. The comparable and complementary variations suggest the considerable influence of the substrate types, followed by the specific processing-based hydrolysis and biochemical transitions. Thus, compositing the bioprocessed flours based on the unique constituent features for developing functional products from climate-smart edibles may partly be the driver to ameliorating linked risk factors of cardiometabolic diseases.
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