feed additives

NEUTRAL DIGESTIVE FIBER DIGESTIBILITY OF GOATS FED DIETS WITH GRADED LEVEL OF CHITIN AND CHITOSAN FEED ADDITIVES FROM SNAIL SHELLS

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Abstract
The study investigated the chemical composition of chitin and chitosan fed diets, and their effects on goat’s neutral detergent fiber (NDF) digestibility. Twelve (12) West African Dwarf goats were randomly assigned to six dietary treatments (control, chitin at 3% and 6%, chitosan at 0.5% and 1%, and 0.01% oxytetracycline), alongside guinea grass at a ratio of 50:50. Chitin and chitosan were extracted using chemical processes involving demineralization, deproteinization, and deacetylation, while diets chemical compositions were analyzed, The NDF value (%) range from 25.00 to 93% with control and 6% chitin having the least and highest values respectively and were significantly different (P<0.05) from each other. Results showed significant differences (P<0.05) in NDF intake and digestibility across treatments were not significantly different. The study concludes that chitin and chitosan from snail shells had no negative influence on NDF intake and digestibility. This approach offers a sustainable and value-added use of snail shell waste in animal nutrition
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co-supervisor

Probiotics as antioxidant, antistress, and growth-enhancing agents in monogastric animals: a narrative review

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Frontiers
Abstract / Summary
Probiotics, defined as living microorganisms that confer health benefits when administered in adequate amounts, have demonstrated significant potential in enhancing productivity and physiological resilience in monogastric animals, including poultry, companion animals, and swine. This narrative review synthesizes recent evidence on the antioxidant, anti-inflammatory, antistress, and growth-promoting functions of commonly studied probiotic genera, such as Lactobacillus, Bifidobacterium, Bacillus, and Saccharomyces. Probiotics improve physiological homeostasis through multiple mechanisms. As antioxidants, they enhance endogenous enzyme activities including catalase, superoxide dismutase, and glutathione peroxidase resulting in 15–40% increases in enzyme activity and 20–45% reductions in lipid peroxidation markers, indicating improved oxidative balance. Antistress effects are mediated via modulation of the gut–brain axis, lowered corticosterone levels, and immune regulation through cytokine changes (IL-6, TNF-α, IL-10). Additionally, probiotics support intestinal integrity, reduce pathogenic load, and enhance nutrient utilization, contributing to 5–12% improvements in feed efficiency under controlled conditions. The efficacy of probiotics depends on strain specificity, dosage, delivery method, and host factors, emphasizing the need for precise formulation. In conclusion, probiotics offer a promising nutritional strategy for improving health, stress tolerance, and productivity in monogastric species. Future research should focus on elucidating molecular mechanisms, including Nrf2 signaling and gut barrier regulation, optimizing dosing strategies and exploring synergistic combinations with prebiotics and phytogenic additives. Such targeted approaches can maximize the benefits of probiotics and support sustainable, precision-driven monogastric production systems.
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