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Maternal dietary deficiencies in folic acid or choline worsen stroke outcomes in adult male and female mouse offspring

摘要Maternal one-carbon metabolism plays an important role in early life programming. There is a well-established connection between the fetal environment and the health status of the offspring. However, there is a knowledge gap on how maternal nutrition impacts stroke outcomes in offspring. The aim of our study was to investigate the role of maternal dietary deficiencies in folic acid or choline on stroke outcomes in 3-month-old offspring. Adult female mice were fed a folic acid-deficient diet, choline-deficient diet, or control diet 4 weeks before pregnancy. They were continued on diets during pregnancy and lactation. Male and female offspring were weaned onto a control diet and at 2 months of age were subjected to ischemic stroke within the sensorimotor cortex via photothrombotic damage. Mothers maintained on either a folic acid-deficient diet or choline-deficient diet had reduced levels of S-adenosylmethionine in the liver and S-adenosylhomocysteine in the plasma. After ischemic stroke, motor function was impaired in 3-month-old offspring from mothers receiving either a folic acid-deficient diet or choline-deficient diet compared to the animals receiving a control diet. In brain tissue, there was no difference in ischemic damage volume. When protein levels were assessed in ischemic brain tissue, there were lower levels of active caspase-3 and hypoxia-inducible factor 1α in males compared to females and betaine levels were reduced in offspring from the mothers receiving a choline-deficient diet. Our results demonstrate that a deficient maternal diet at critical time points in neurodevelopment results in worse stroke outcomes. This study emphasizes the importance of maternal diet and the impact it can have on offspring health.

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作者 McCoy Clementson [1] Lauren Hurley [2] Sarah Coonrod [2] Calli Bennett [1] Purvaja Marella [1] Agnes S.Pascual [3] Kasey Pull [3] Brandi Wasek [4] Teodoro Bottiglieri [4] Olga Malysheva [5] Marie A.Caudill [5] Nafisa M.Jadavji [6] 学术成果认领
作者单位 Department of Biomedical Sciences,Midwestern University,Glendale,AZ,USA;College of Osteopathic Medicine,Midwestern University,Glendale,AZ,USA [1] Department of Biomedical Sciences,Midwestern University,Glendale,AZ,USA;College of Veterinary Medicine,Midwestern University,Glendale,AZ,USA [2] Department of Biomedical Sciences,Midwestern University,Glendale,AZ,USA [3] Center of Metabolomics,Institute of Metabolic Disease,Baylor Scott&White Research Institute,Dallas,TX,USA [4] Division of Nutritional Sciences,Cornell University,Ithaca,NY,USA [5] Department of Biomedical Sciences,Midwestern University,Glendale,AZ,USA;College of Osteopathic Medicine,Midwestern University,Glendale,AZ,USA;College of Veterinary Medicine,Midwestern University,Glendale,AZ,USA;Department of Neuroscience,Carleton University,Ottawa,ON,Canada;Department of Child Health,College of Medicine–Phoenix,University of Arizona,Phoenix,AZ,USA [6]
发布时间 2023-04-07(万方平台首次上网日期,不代表论文的发表时间)
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中国神经再生研究(英文版)

中国神经再生研究(英文版)

2023年18卷11期

2443-2448页

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