肉鸡
肺动脉高压
机制(生物学)
心脏病学
内科学
生物
医学
动物科学
认识论
哲学
作者
Juan Chen,Chenxi Jiang,Xiaoqin Hu,Yun Zhang,Xiaona Gao,Xiaoquan Guo,Haonan Jin,Ying Zhang,Yirong Wu,Jing Liang,Pei Liu,Ping Liu,Ping Liu,Ping Liu
出处
期刊:Avian Pathology
[Taylor & Francis]
日期:2025-04-24
卷期号:54 (5): 548-559
被引量:2
标识
DOI:10.1080/03079457.2025.2480802
摘要
Broiler ascites syndrome is a common and complex disease in broiler farming, which severely impacts broiler growth performance and health and brings huge economic losses to the breeding industry. Hypoxia has been shown to be an important cause of this disease. Prolonged exposure of broiler chickens to a hypoxic environment induces pulmonary vasoconstriction, which leads to an increase in pulmonary artery pressure, triggering pulmonary artery remodelling and compensatory right ventricular hypertrophy, and ultimately ascites. Pulmonary artery remodelling is a process in which the vascular wall tissue structure and function undergo pathological changes after the pulmonary artery is stimulated by various injuries or hypoxia, including endothelial dysfunction, abnormal proliferation of pulmonary artery smooth muscle cells, vascular fibrosis, etc. When these cells are damaged or stimulated, they may undergo programmed cell death, an orderly and regulated mode of cell death that is important for maintaining the stability of the body's internal environment. It has been demonstrated that death modes such as apoptosis and autophagy are involved in the pathophysiologic process of pulmonary hypertension, but their specific molecular mechanisms are still unclear. In this review, we first describe the pathogenesis of broiler ascites, then describe the specific mechanism of dysfunction of pulmonary artery vascular cells in broiler ascites syndrome, and finally elaborate the progression of different programmed cell death in broiler pulmonary hypertension. This study aims to elucidate the specific mechanisms underlying the dysfunction of pulmonary artery vascular cells in broiler pulmonary hypertension, thereby enhancing our understanding of the pathogenesis of this syndrome.
科研通智能强力驱动
Strongly Powered by AbleSci AI