数字农科院2.0

Maternal odd-chain fatty acid-rich algal oil supplementation during pregnancy improves litter characteristics of intrauterine growth restricted pregnant mice via regulating placental function

文献类型: 外文期刊

作者: Yi Li;Yujun Wu;Meng Liu;Dandan Han;Yanwei Xu;Bingxu Huang;Fang Cong;Mengmeng Li;Bo Cao;Cuiping Feng;Hongbiao Ding;Junjun Wang

作者机构:

关键词: Antioxidant capacity;Insulin resistance;Intestinal health;Intrauterine growth restriction;Odd-chain fatty acid;Placental function

期刊名称: Journal of Functional Foods

ISSN: 1756-4646

年卷期: 2024 年 123 卷

页码:

收录情况: SCIE(2024版)

摘要: Intrauterine growth restriction (IUGR) severely impairs fetal development and offspring health. Odd-chain fatty acid (OCFA) possess beneficial biological activities in regulating insulin resistance, inflammation and oxidative stress. However, the effects of OCFA on improving IUGR through regulating placental function and maternal health remain unclear. Herein, maternal OCFA-rich algal oil supplementation improved variable coefficient of fetal weight and fetal oxidative stress in low protein diet (LPD)-induced IUGR mice model. OCFA-rich algal oil also improved placental dysfunction, placental fatty acid metabolism disorder, maternal insulin resistance, oxidative stress and intestinal injury, suggesting an improved maternal health. OCFA-rich algal oil reshaped the intestinal microbiome of dams, decreasing unclassified Bacteroidales and Parvibacter, and increasing Weissella, which positively impacted insulin resistance and intestinal injury. Overall, OCFA-rich algal oil supplementation during pregnancy ameliorated oxidative stress, insulin resistance and intestinal injury in LPD-induced IUGR pregnant mice, improved placental functions and litter characteristics, and further enhanced fetal antioxidant capacity.

分类号:

  • 相关文献

[1]A Natural Gas Fermentation Bacterial Meal (FeedKind®) as a Functional Alternative Ingredient for Fishmeal in Diet of Largemouth Bass, Micropterus salmoides. Guo B.,He X.,Ge C.,Xue M.,Wang J.,Longshaw M.,Wang J.,Liang X.. 2022

[2]Terminalia Chebula Extract Replacing Zinc Oxide Enhances Antioxidant and Anti-Inflammatory Capabilities, Improves Growth Performance, and Promotes Intestinal Health in Weaned Piglets. Tao Wang,Yuying Li,Lichen Yin,Jiashun Chen,Pengjun Shi,Fang Wang,Kangle Wu,Kang Yao,Yulong Yin. 2024

[3]Effects of fermented ramie feed on the growth performance, serum biochemistry, metabolic capacity, antioxidant capacity, and intestinal health of Linwu ducks. Zonghao Lv,Jingmeng Zhang,Cong Li,Zhen Li,Zhizhong Zhang,Biguang Lv,Xuan Cheng,Haohan Zhao,Qinghua Chen,Qian Lin. 2025

[4]The effect of fermented sea buckthorn products on production performance, egg quality, intestinal health, and antioxidant capacity of laying hens. Liu, Dongkai,Niu, Yan,Zhang, Keying,Ding, Xuemei,Bai, Shiping,Zeng, Qiufeng,Liu, Yan,Leong, Kong,Wang, Jing,Wang, Jianping. 2025

[5]Nutrient-intake-level-dependent regulation of intestinal development in newborn intrauterine growth-restricted piglets via glucagon-like peptide-2. Liu, J.,Liu, Z.,Gao, L.,Chen, L.,Zhang, H.,Liu, J..

[6]Flaxseed Oil Alleviates Chronic HFD-Induced Insulin Resistance through Remodeling Lipid Homeostasis in Obese Adipose Tissue. Yu, Xiao,Shen, Ruiling,Yu, Xiao,Shen, Ruiling,Tang, Yuhan,Liu, Peiyi,Xiao, Lin,Liu, Liegang,Yao, Ping,Tang, Yuhan,Liu, Peiyi,Xiao, Lin,Liu, Liegang,Yao, Ping,Deng, Qianchun,Deng, Qianchun,Deng, Qianchun.

[7]Adipocyte miR-200b/a/429 ablation in mice leads to high-fat-diet-induced obesity. Tao, Cong,Ren, Hongyan,Xu, Pan,Cheng, Jia,Huang, Sujuan,Zhou, Rong,Mu, Yulian,Yang, Shulin,Wang, Yanfang,Li, Kui,Tao, Cong,Qi, Desheng,Ren, Hongyan. 2016

[8]Flaxseed lignans alleviate high fat diet-induced hepatic steatosis and insulin resistance in mice: Potential involvement of AMP-activated protein kinase. Sun, Jian,Tang, Yuhan,Yu, Xiao,Xu, Yanyan,Liu, Peiyi,Xiao, Lin,Liu, Liegang,Yao, Ping,Sun, Jian,Tang, Yuhan,Yu, Xiao,Xu, Yanyan,Liu, Peiyi,Xiao, Lin,Liu, Liegang,Yao, Ping,Deng, Qianchun,Deng, Qianchun.

[9]Cooked black turtle beans ameliorate insulin resistance and restore gut microbiota in C57BL/6J mice on high-fat diets. Yuqing Tan,Christina C. Tam,Shi Meng,Yan Zhang,Priscila Alves,Wallace Yokoyama. 2021

[10]Dietary fiber of Tartary buckwheat bran modified by steam explosion alleviates hyperglycemia and modulates gut microbiota in db/db mice. Xiaoqin He,Weizhou Li,Yuanyuan Chen,Lin Lei,Fuhua Li,Jichun Zhao,Kaifang Zeng,Jian Ming. 2022

[11]ANGPTL8/betatrophin improves glucose tolerance in older mice and metabolomic analysis reveals its role in insulin resistance in HepG2 cells. Fangfang Xu,Nan Wang,Gangqiang Li,Dandan Tian,Xiaoyang Shi. 2021

[12]Aerobic Exercise Improves Pulmonary Fibrosis by Improving Insulin Resistance and Inflammation in Obese Mice. Xishuai Wang,Xuejie Yi,Donghui Tang. 2022

[13]Quercetin ameliorates insulin resistance and restores gut microbiome in mice on high-fat diets. Yuqing Tan,Christina C. Tam,Matt Rolston,Priscila Alves,Ling Chen,Shi Meng,Hui Hong,Sam K.C. Chang,Wallace Yokoyama. 2021

[14]IRLnc: a novel functional noncoding RNA contributes to intramuscular fat deposition. Ligang Wang,Zhong-Yin Zhou,Tian Zhang,Longchao Zhang,Xinhua Hou,Hua Yan,Lixian Wang. 2021

[15]Bisphenol analogues induced metabolic effects through eliciting intestinal cell heterogeneous response. Xiyan Mu,Suzhen Qi,Hui Wang,Lilai Yuan,Chengju Wang,Yingren Li,Jing Qiu. 2022

[16]Apigenin Ameliorates Insulin Resistance in 3T3-L1 Adipocytes: Establishment of a New Insulin Resistance Model Induced by Combined Treatments. Guo, Xiaoxuan,Xia, Bing,Liu, Sha,Dong, Ying,Qian, Yongzhong,Qiu, Jing. 2025

[17]Adipocyte RNF20 Knockout Leads to Hyperinsulinemia via the H2Bub-H3K4me3-Slc2a4 Axis. Ying Zhao,Xiaojuan Liang,Jiayu Tang,Chunwei Cao,Chunhuai Yang,Shulin Yang,Jianguo Zhao,Jinxiang Yuan,Meng Zhang,Yanfang Wang. 2025

[18]Metabolites from the Dendrobium Endophyte Pseudomonas protegens CM-YJ44 Alleviate Insulin Resistance in HepG2 Cells via the IRS1/PI3K/Akt/GSK3β/GLUT4 Pathway. Luqi Qin,Yixia Zhou,Bei Fan,Jiahuan Zheng,Rao Diao,Jiameng Liu,Fengzhong Wang. 2025

[19]Anti-Diabetic Effect of Soy–Whey Dual-Protein on Mice with Type 2 Diabetes Mellitus Through INS/IRS1/PI3K Signaling Pathway. Na Li,Hu Li,Duo Feng,Mengjie Li,Di Han,Tianxin Liu,Jing Wang. 2025

[20]Effects of glucose oxidase on the growth performance, serum parameters and faecal microflora of piglets. Tang, H.,Yao, B.,Gao, X.,Yang, P.,Zhang, G.,Wang, Z.,Tang, H.,Zhang, G.. 2016

作者其他论文 更多>>