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February 11, 2026Poultry0 citationsOpen Access

Heat Stress Induces Inflammatory Response Through Inhibiting PPARα in Broiler Chickens

MYMiao YuXLXiumei LiXZXin Zhao

Key Points

  • The study aims to understand how heat stress affects inflammation via PPARα regulation in broiler chickens.
  • Conducted an experiment with 180 male Arbor Acres broilers divided into three groups based on temperature conditions.
  • Administered fenofibrate to evaluate its effect on PPARα activity under heat stress.
  • Measured spleen and thymus indexes, serum inflammatory factors, and muscle fiber morphology over a 14-day period.
  • Heat stress decreased spleen and thymus indexes while increasing inflammatory factors in serum and breast muscle.
  • Notable morphological damage was observed in breast muscle fibers due to heat stress.
  • Activation of PPARα through fenofibrate improved growth performance and reduced inflammation, with a significant decrease in NF-κB expression.

Abstract

Heat stress poses a considerable challenge to the modern poultry industry by negatively impacting immune system maturation and eliciting inflammatory responses. Peroxisome proliferators-activated receptors α (PPARα), predominantly expressed in metabolically active tissues such as skeletal muscle, are essential for regulating the inflammatory process. Moreover, our recent research has found that heat stress down-regulates the transcription of PPARα in broiler chickens. To study if PPARα regulation is involved in heat-stress-induced skeletal muscle inflammatory response in broiler chickens, 180 male Arbor Acres (AA) broilers aged 22 days were randomly assigned to three experimental groups: a thermoneutral condition group at 21 °C, a heat stress group at 31 °C and a heat stress group at 31 °C supplemented with the PPARα activator fenofibrate. After 7 days of adaptive feeding, the broilers were subjected to a 14-day formal experimental phase. Results demonstrated that heat stress decreased the spleen and thymus index and increased serum and breast muscle inflammatory factor concentrations (p < 0.05). Moreover, heat-stress-induced abnormal breast muscle fiber morphology in broiler chickens. Furthermore, heat stress significantly up-regulated nuclear factor kappa-B (NF-κB) expression in boiler chickens (p < 0.05). However, activating PPARα through fenofibrate improved the growth performance (p < 0.05), enhanced immune organ indexes (p < 0.05), reduced inflammatory factor concentrations (p < 0.05), alleviated breast muscle fiber morphology damage and suppressed NF-κB expression (p < 0.05) in the breast muscle of broiler chickens. Based on our previous research, these results collectively underscore that heat stress induced inflammation and up-regulated NF-κB in the breast muscle of broiler chickens by inhibiting PPARα.

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Cite This Study

Yu et al. (2026) studied this question.

synapsesocial.com/papers/698c1bdc267fb587c655dd53https://doi.org/10.3390/poultry5010013
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