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Research progress on the microbial metabolism and transport of polyamines and their roles in animal gut homeostasis

摘要Polyamines(putrescine,spermidine,and spermine)are aliphatic compounds ubiquitous in prokaryotes and eukary-otes.Positively charged polyamines bind to negatively charged macromolecules,such as nucleic acids and acidic phospholipids,and are involved in physiological activities including cell proliferation,differentiation,apoptosis and gene regulation.Intracellular polyamine levels are regulated by biosynthesis,catabolism and transport.Polyam-ines in the body originate from two primary sources:dietary intake and intestinal microbial metabolism.These poly-amines are then transported into the bloodstream,through which they are distributed to various tissues and organs to exert their biological functions.Polyamines synthesized by intestinal microorganisms serve dual critical roles.First,they are essential for maintaining polyamine concentrations within the digestive tract.Second,through transcrip-tional and post-transcriptional mechanisms,these microbial-derived polyamines modulate the expression of genes governing key processes in intestinal epithelial cells-including proliferation,migration,apoptosis,and cell-cell interactions.Collectively,these regulatory effects help maintain intestinal epithelial homeostasis and ensure the integ-rity of the gut barrier.In addition,polyamines interact with the gut microbiota to maintain intestinal homeostasis by promoting microbial growth,biofilm formation,swarming,and endocytosis vesicle production,etc.Supplementa-tion with polyamines has been demonstrated to be important in regulating host intestinal microbial composition,enhancing nutrient absorption,and improving metabolism and immunity.In this review,we will focus on recent advances in the study of polyamine metabolism and transport in intestinal microbes and intestinal epithelial cells.We then summarize the scientific understanding of their roles in intestinal homeostasis,exploring the advances in cellular and molecular mechanisms of polyamines and their potential clinical applications,and providing a rationale for poly-amine metabolism as an important target for the treatment of intestinal-based diseases.

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作者 Chong Zhang [1] Yongkang Zhen [1] Yunan Weng [1] Jiaqi Lin [1] Xinru Xu [1] Jianjun Ma [1] Yuhong Zhong [1] Mengzhi Wang [2] 学术成果认领
作者单位 Laboratory of Metabolic Manipulation of Herbivorous Animal Nutrition,College of Animal Science and Technology,Yangzhou University,Yang-zhou 225009,China [1] Laboratory of Metabolic Manipulation of Herbivorous Animal Nutrition,College of Animal Science and Technology,Yangzhou University,Yang-zhou 225009,China;State Key Laboratory of Sheep Genetic Improvement and Healthy Production,Xinjiang Academy of Agricultural Reclamation Sci-ences,Shihezi 832000,China [2]
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DOI 10.1186/s40104-025-01193-x
发布时间 2025-11-24(万方平台首次上网日期,不代表论文的发表时间)
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