Literature DB >> 31144992

Low birth weight causes insulin resistance and aberrant intestinal lipid metabolism independent of microbiota abundance in Landrace-Large White pigs.

Melanie A Fontaine1, Abdoulaye Diane1, Vijay P Singh1, Rabban Mangat1, Jacqueline A Krysa1, Randy Nelson1, Benjamin P Willing2, Spencer D Proctor1.   

Abstract

Low birth weight (LBW) and postnatal nutrition are risk factors for adult metabolic diseases. However, the interactions between LBW, diet, and intestinal lipid absorption and secretion leading to adult metabolic disease remain unclear. The current study determined the impact of LBW on intestinal lipid and carbohydrate metabolism under both control and Western diet (high fat, high fructose, and cholesterol) conditions in 5-wk-old LBW and normal birth weight (NBW) Landrace-Large White × Duroc pigs. A 2-step modified oral glucose and fat challenge test was performed. Mesenteric lymph, jejunal mucosal scrapings, and cecal digesta samples were also collected. LBW offspring were lower in weight and gained less weight per day. LBW pigs on either control or Western diets displayed increased triglyceride (TG) secretion into lymph (P = 0.0135). Western diet-fed LBW pigs developed fasting (P = 0.03) and postprandial (P < 0.05) hypertriglyceridemia, muscle steatosis (P = 0.0072), had higher insulin excursion (P < 0.01), increased jejunal stearoyl-CoA desaturase 1 mRNA and increased hepatic fibrosis (P = 0.0017) compared with NBW piglets. Gut microbiota showed significant dysbiosis on Western diet independent of birth weight. In conclusion, LBW pigs fed a Western diet specifically up-regulate TG absorption and secretion, develop dyslipidemia, muscular steatosis, and display early signs of insulin resistance. Interestingly, this study does not provide evidence of altered intestinal microbiome in LBW pigs contributing to increased severity of metabolic diseases.-Fontaine, M. A., Diane, A., Singh, V. P., Mangat, R., Krysa, J. A., Nelson, R., Willing, B. P., Proctor, S. D. Low birth weight causes insulin resistance and aberrant intestinal lipid metabolism independent of microbiota abundance in Landrace-Large White pigs.

Entities:  

Keywords:  intrauterine growth restriction; lymphatic lipoproteins; microbiota; swine

Mesh:

Substances:

Year:  2019        PMID: 31144992     DOI: 10.1096/fj.201801302RR

Source DB:  PubMed          Journal:  FASEB J        ISSN: 0892-6638            Impact factor:   5.191


  9 in total

1.  Low-fat dairy consumption improves intestinal immune function more than high-fat dairy in a diet-induced swine model of insulin resistance.

Authors:  Yongbo She; Kun Wang; Alexander Makarowski; Rabban Mangat; Sue Tsai; Benjamin P Willing; Spencer D Proctor; Caroline Richard
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2.  Dietary Tryptophan Supplementation Alters Fat and Glucose Metabolism in a Low-Birthweight Piglet Model.

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4.  Effects of Clostridium butyricum on growth performance, metabonomics and intestinal microbial differences of weaned piglets.

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Authors:  Yongbo She; Rabban Mangat; Sue Tsai; Spencer D Proctor; Caroline Richard
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6.  Effect of High-Fat and Low-Fat Dairy Products on Cardiometabolic Risk Factors and Immune Function in a Low Birthweight Swine Model of Diet-Induced Insulin Resistance.

Authors:  Yongbo She; Kun Wang; Alexander Makarowski; Rabban Mangat; Sue Tsai; Benjamin P Willing; Spencer D Proctor; Caroline Richard
Journal:  Front Nutr       Date:  2022-06-17

7.  Akkermansia muciniphila Enhances Egg Quality and the Lipid Profile of Egg Yolk by Improving Lipid Metabolism.

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Journal:  Front Microbiol       Date:  2022-07-19       Impact factor: 6.064

8.  High Vaccenic Acid Content in Beef Fat Attenuates High Fat and High Carbohydrate Western Diet Induced Changes in Lipid Metabolism and Gut Microbiota in Pigs.

Authors:  Vijay P Singh; Melanie A Fontaine; Rabban Mangat; Janelle M Fouhse; Abdoulaye Diane; Benjamin P Willing; Spencer D Proctor
Journal:  Microorganisms       Date:  2021-12-06

9.  Adipose Dysfunction in Adulthood Insulin Resistance of Low-Birth Weight Mice: A Proteomics Study.

Authors:  Huijuan Ma; Guangyao Song; Jun Wang; Linlin Yang; Linquan Yang; Fei Zhou; Hang Zhao; Jing Liu
Journal:  Diabetes Metab Syndr Obes       Date:  2022-03-16       Impact factor: 3.168

  9 in total

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