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Mechanisms Underlying the Effects of Heat Stress on Intestinal Integrity, Inflammation, and Microbiota in Chickens

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Journal J Poult Sci
Date 2023 Aug 10
PMID 37560151
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Abstract

Poultry meat and egg production benefits from a smaller carbon footprint, as well as feed and water consumption, per unit of product, than other protein sources. Therefore, maintaining a sustainable production of poultry meat is important to meet the increasing global demand for this staple. Heat stress experienced during the summer season or in tropical/subtropical areas negatively affects the productivity and health of chickens. Crucially, its impact is predicted to grow with the acceleration of global warming. Heat stress affects the physiology, metabolism, and immune response of chickens, causing electrolyte imbalance, oxidative stress, endocrine disorders, inflammation, and immunosuppression. These changes do not occur independently, pointing to a systemic mechanism. Recently, intestinal homeostasis has been identified as an important contributor to nutrient absorption and the progression of systemic inflammation. Its mechanism of action is thought to involve neuroendocrine signaling, antioxidant response, the presence of oxidants in the diet, and microbiota composition. The present review focuses on the effect of heat stress on intestinal dysfunction in chickens and the underlying causative factors. Understanding these mechanisms will direct the design of strategies to mitigate the negative effect of heat stress, while benefiting both animal health and sustainable poultry production.

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References
1.
Niewold T . The nonantibiotic anti-inflammatory effect of antimicrobial growth promoters, the real mode of action? A hypothesis. Poult Sci. 2007; 86(4):605-9. DOI: 10.1093/ps/86.4.605. View

2.
Nanto-Hara F, Kikusato M, Ohwada S, Toyomizu M . Heat Stress Directly Affects Intestinal Integrity in Broiler Chickens. J Poult Sci. 2020; 57(4):284-290. PMC: 7596036. DOI: 10.2141/jpsa.0190004. View

3.
Nan S, Yao M, Zhang X, Wang H, Li J, Niu J . Fermented grape seed meal promotes broiler growth and reduces abdominal fat deposition through intestinal microorganisms. Front Microbiol. 2022; 13:994033. PMC: 9589342. DOI: 10.3389/fmicb.2022.994033. View

4.
Jiang S, Yan F, Hu J, Mohammed A, Cheng H . -Based Probiotic Improves Skeletal Health and Immunity in Broiler Chickens Exposed to Heat Stress. Animals (Basel). 2021; 11(6). PMC: 8224346. DOI: 10.3390/ani11061494. View

5.
Lian P, Braber S, Varasteh S, Wichers H, Folkerts G . Hypoxia and heat stress affect epithelial integrity in a Caco-2/HT-29 co-culture. Sci Rep. 2021; 11(1):13186. PMC: 8222227. DOI: 10.1038/s41598-021-92574-5. View