Evidence mapPaperPMID 40307382Full record

ArticleScientific reports2025

The mechanism of maternal inheritance of glycolipid metabolism disorder in a zebrafish model of type 2 diabetes.

Fuqi Yang, Ying Zhang, Panyu Ju, Leyu Li, Yu Gong, Qian Zhang, Jiaolong Huang, Peng Duan, Xingjian Zhou

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Article in Scientific reports, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 2 papers.

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2citing papers in PubMed
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2 citing papers in PubMed.

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5 · Who and what money

Authors and funding

9 authors.

Fuqi Yang *Depatment of Endocrinology, Wuhan University of Science and Technology, Xiangyang, China.
Ying Zhang *Hubei University of Medicine, Xiangyang, 441000, China.
Panyu JuHubei University of Medicine, Xiangyang, 441000, China.
Leyu LiHubei University of Medicine, Xiangyang, 441000, China.
Yu GongHubei University of Medicine, Xiangyang, 441000, China.
Qian ZhangHubei University of Medicine, Xiangyang, 441000, China.
Jiaolong HuangHubei University of Medicine, Xiangyang, 441000, China.
Peng DuanHubei University of Medicine, Xiangyang, 441000, China. meduanpeng@163.com.
Xingjian ZhouHubei University of Medicine, Xiangyang, 441000, China. xin.xin1018@163.com.

Funding

Beijing Medical Award Foundation YXJL-2023-0314-0022Natural Science Foundation of Hubei Province 2022CFD010Natural Science Foundation of Hubei Province 2023AFD043Natural Science Foundation of Hubei Province 2024AFD035
6 · The paper itself

Abstract

In recent years, the number of people with type 2 diabetes mellitus (T2DM) has been increasing, and there is obvious familial aggregation of T2DM. Pregestational and gestational diabetes mellitus are the most common chronic conditions during pregnancy. However, the mechanism by which maternal preconception hyperglycaemia affects glucolipid metabolism in the offspring is not fully understood. Zebrafish have been widely used to construct T2DM models. In this study, we established a successful T2DM model of female zebrafish by immersing them in a 2% glucose solution for 28 days. The results showed that female zebrafish in the T2DM group exhibited damage to the ovaries and livers. Fasting blood glucose, insulin, cholesterol and triglycerides were increased in the T2DM group compared to the control group. Moreover, a delayed hatching rate, increased yolk sac area, body length and heart rate and decreased blood flow velocity were observed in the F1 larvae from the maternal zebrafish with T2DM. Glucose, insulin and lipid metabolism were prominently affected in F1 offspring. Importantly, the influence on fasting blood glucose and insulin could persist into adulthood in F1 offspring of zebrafish with maternal T2DM. Transcriptomic results indicated that the signalling pathways of gluconeogenesis, fat digestion and absorption and cholesterol and amino acid metabolism were enriched and perturbed in F1 larvae from zebrafish with maternal T2DM. This study emphasised the impacts of maternal preconception zebrafish hyperglycaemia on glycolipid metabolism in the offspring, transferring the maternal origin of the disease to the preconception stage and providing a reference for further research on the aetiology of glycolipid metabolism disorders.

Indexed as

Diabetes Mellitus, Type 2GlycolipidsMaternal InheritanceAnimalsBlood GlucoseCholesterolDisease Models, AnimalFemaleHyperglycemiaInsulinLipid MetabolismLiverPregnancyZebrafishBlood GlucoseCholesterolGlycolipidsInsulinGlycolipid metabolismIntergenerational effectMaternal exposureT2DMZebrafish

Identifiers

PMID40307382
PMCPMC12044153

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