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Histomorphological Changes in Fish Gut in Response to Prebiotics and Probiotics Treatment to Improve Their Health Status: A Review

Animals 2023 71 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 65 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Giuseppe De Marco, Giuseppe De Marco, Tiziana Cappello Giuseppe De Marco, Giuseppe De Marco, Giuseppe De Marco, Tiziana Cappello Giuseppe De Marco, Giuseppe De Marco, Maria Maisano, Tiziana Cappello Giuseppe De Marco, Tiziana Cappello Maria Maisano, Giuseppe De Marco, Tiziana Cappello Tiziana Cappello Tiziana Cappello Tiziana Cappello Tiziana Cappello Maria Maisano, Tiziana Cappello Maria Maisano, Maria Maisano, Tiziana Cappello Tiziana Cappello Giuseppe De Marco, Tiziana Cappello Tiziana Cappello Maria Maisano, Maria Maisano, Maria Maisano, Giuseppe De Marco, Giuseppe De Marco, Tiziana Cappello Tiziana Cappello Tiziana Cappello Giuseppe De Marco, Giuseppe De Marco, Maria Maisano, Maria Maisano, Maria Maisano, Maria Maisano, Maria Maisano, Maria Maisano, Tiziana Cappello Tiziana Cappello Tiziana Cappello Tiziana Cappello Tiziana Cappello Tiziana Cappello Tiziana Cappello Maria Maisano, Maria Maisano, Tiziana Cappello Tiziana Cappello Maria Maisano, Maria Maisano, Tiziana Cappello Maria Maisano, Maria Maisano, Maria Maisano, Tiziana Cappello

Summary

This review summarizes how prebiotics and probiotics, beneficial supplements added to fish feed, can improve gut health and disease resistance in farmed fish. A healthy gut microbiome is critical for nutrient absorption and immune defense in fish. While not directly about microplastics, the research is relevant because microplastics are known to disrupt gut bacteria in aquatic organisms, and probiotics may help counteract some of those effects.

The gastrointestinal tract (GIT) promotes the digestion and absorption of feeds, in addition to the excretion of waste products of digestion. In fish, the GIT is divided into four regions, the headgut, foregut, midgut, and hindgut, to which glands and lymphoid tissues are associated to release digestive enzymes and molecules involved in the immune response and control of host-pathogens. The GIT is inhabited by different species of resident microorganisms, the microbiota, which have co-evolved with the host in a symbiotic relationship and are responsible for metabolic benefits and counteracting pathogen infection. There is a strict connection between a fish's gut microbiota and its health status. This review focuses on the modulation of fish microbiota by feed additives based on prebiotics and probiotics as a feasible strategy to improve fish health status and gut efficiency, mitigate emerging diseases, and maximize rearing and growth performance. Furthermore, the use of histological assays as a valid tool for fish welfare assessment is also discussed, and insights on nutrient absorptive capacity and responsiveness to pathogens in fish by gut morphological endpoints are provided. Overall, the literature reviewed emphasizes the complex interactions between microorganisms and host fish, shedding light on the beneficial use of prebiotics and probiotics in the aquaculture sector, with the potential to provide directions for future research.

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