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Procyanidins and its metabolites by gut microbiome improves insulin resistance in gestational diabetes mellitus mice model via regulating NF-κB and NLRP3 inflammasome pathway - 03/06/22

Doi : 10.1016/j.biopha.2022.113078 
Yao Liu a, 1, Ruifang Sun a, 1, XiaoPing Lin b, Lanlan Wu a, Hengying Chen c, Siwen Shen a, Yan Li d, Yuanhuan Wei a, Guifang Deng a,
a Department of Clinical Nutrition, Union Shenzhen Hospitalof Huazhong University of Science and Technology, Shenzhen, China 
b Department of Nutrition and Food Hygiene, Guangdong Provincial Key Laboratory of Tropical Disease Research, School of Public Health, Southern Medical University, Guangzhou, China 
c Injury Prevention Research Center, Shantou University Medical College, Shantou, China 
d Department of Clinical Nutrition, Chengdu Shuangliu District Maternal and Child Health Hospital, Chengdu, China 

Correspondence to: Department of Clinical Nutrition, Union Shenzhen Hospital of Huazhong University of Science and Technology, No. 89 Taoyuan Road, Nanshan District, Shenzhen, Guangdong 518052, China.Department of Clinical Nutrition, Union Shenzhen Hospital of Huazhong University of Science and TechnologyNo. 89 Taoyuan Road, Nanshan DistrictShenzhenGuangdong518052China

Abstract

Gestational Diabetes Mellitus (GDM) has an effect on the health of pregnant women and fetuses. Procyanidins (PA) is a flavonoid with anti-diabetic activity, but its effects and mechanisms on GDM have not been defined. Herein, we studied further the functions and mechanisms of PA on insulin resistance (IR) in GDM mice, as well as on postpartum and offspring mice. GDM mice model was built by feeding a high-fat-high-sucrose diet, and PA intervention (27.8 mg/kg/d) was performed from 4 weeks before pregnancy to delivery. Intestinal flora deficient (IFD) mice model was established by broad spectrum antibiotics. PA decreased the gestational weight gain, and the levels of fasting blood glucose, insulin, homeostasis model of assessment for IR index, yet increased the levels of HOMA for insulin sensitivity index. Interestingly, in IFD mice the effect of PA on improving IR was significantly weakened. PA inhibited inflammation by decreasing the levels of IL-6, TNF-α, IL-17 and CRP, which also been blocked in the IFD mice. Moreover, PA improved glycometabolism and reduced the secretion of inflammatory factors and hepatic inflammation infiltration of mice at 4 weeks postpartum, but had no significant effect on offspring mice. Mechanistically, PA treatment suppressed the nuclear factor‐κB (NF‐κB) p65 nuclear translocation and nucleotide‐binding domain like receptor protein 3 (NLRP3) inflammasome activation. In vitro studies, 4-hydroxyphenylacetic acid and 3-(4-hydroxyphenyl) propionic acid, main intestinal flora metabolites of PA restrained NF‐κB/NLRP3 activation. In conclusions, PA improved IR via NF-κB/NLRP3 pathway in GDM and postpartum mice, which partly through its metabolites by gut microbiome.

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Highlights

Procyanidins alleviates IR and inflammation in GDM mice model.
Procyanidins improves the glycometabolism and reduces the secretion of inflammatory factors of postpartum mice with GDM.
Procyanidins inhibits IR via the NF-κB/NLRP3 signaling pathway, which is partly through its metabolites by gut microbiome.
4-HPAA and HPPA, main gut metabolites of procyanidins blocked NF-κB/NLRP3 activation in RAW264.7 cells.

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Keywords : GestatioNal Diabetes Mellitus, Procyanidins, Procyanidins metabolites by gut microbiome, Insulin resistance, Nucleotide‐binding domain like receptor protein 3, Nuclear factor‐κB p65


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© 2022  The Authors. Publicado por Elsevier Masson SAS. Todos los derechos reservados.
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Vol 151

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