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High-fat intake during lactation ameliorates cardiac fatty acid metabolic disorders and dysfunction in mouse offspring undergoing prenatal poly(I:C)stimulation

摘要Prenatal inflammation exposure(PIE)is associated with increased prevalence of cardiovascular diseases(CVDs)in offspring,including heart failure and hypertension.In this study,we investigated the molecular mechanisms underlying the prenatal programming of cardiac function.Pregnant mice were injected with poly(I:C)(20 mg/kg,i.p.)on day 10.5 of gestation.Mothers and pubs were fed with high-fat diet during lactation.Cardiac tissues of the offspring were collected for analysis.We found that prenatal poly(I:C)exposure significantly reduced fatty acid metabolism and impaired the homeostasis of energy metabolism in the heart tissues of offspring at the age of 4 weeks.RNA-sequencing analysis of the heart tissues revealed that prenatal poly(I:C)exposure resulted in decreased expression of the fatty acid oxidation-related enzymes and increased expression of glycolysis-related enzymes,enabling rewiring of energy metabolism.High-fat intake during lactation partially ameliorated cardiac fatty acid metabolism in the heart tissues and prevented cardiac dysfunction in offspring mice exposed to prenatal poly(I:C)at the age of 16 weeks.Collectively,abnormal cardiac fatty acid metabolism accounts for the prenatal poly(I:C)exposure-induced cardiac dysfunction,highlighting the potential of dietary interventions to prevent cardiac dysfunction for PIE offspring.

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作者单位 College of Traditional Chinese Medicine,Chongqing Medical University,Chongqing 400016,China;Department of Clinical Hematology,College of Pharmacy and Laboratory Medicine Science,Army Medical University,Chongqing 400038,China;College of Chinese and Modern Medicine,Chongqing University of Chinese Medicine,Chongqing 402760,China [1] Department of Clinical Hematology,College of Pharmacy and Laboratory Medicine Science,Army Medical University,Chongqing 400038,China;School of Basic Medical Sciences,Chongqing Medical University,Chongqing 400016,China [2] Department of Clinical Hematology,College of Pharmacy and Laboratory Medicine Science,Army Medical University,Chongqing 400038,China [3] Biobank Center,The First Affiliated Hospital of Chongqing Medical University,Chongqing 400016,China [4] Chongqing Engineering Research Center of Pharmaceutical Sciences,Chongqing Medical and Pharmaceutical College,Chongqing 401331,China [5] Department of Pharmacy,The General Hospital of Western Theater Command of PLA,Chengdu 610083,China [6] State Key Laboratory of Trauma and Chemical Poisoning,Institute of Combined Injury,Chongqing Engineering Research Center for Nanomedicine,College of Preventive Medicine,Army Medical University,Chongqing 400038,China [7] Institute of Materia Medica,College of Pharmacy and Laboratory Medicine Science,Army Medical University,Chongqing 400038,China [8] Department of Cardiology,Xijing Hospital,Fourth Military Medical University,Xi'an 710000,China [9] Department of Clinical Hematology,College of Pharmacy and Laboratory Medicine Science,Army Medical University,Chongqing 400038,China;State Key Laboratory of Trauma and Chemical Poisoning,Institute of Combined Injury,Chongqing Engineering Research Center for Nanomedicine,College of Preventive Medicine,Army Medical University,Chongqing 400038,China [10]
DOI 10.1038/s41401-025-01497-8
发布时间 2025-07-25(万方平台首次上网日期,不代表论文的发表时间)
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中国药理学报(英文版)

中国药理学报(英文版)

2025年46卷7期

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