Long-term disruption of glucose homeostasis in a rodent model of preterm birth.
Diao, S.; Guenoun, D.; Chen, S.-P.; CRUCIANI-GUGLIELMACCI, C.; Pansiot, J.; Laforge, M.; Raho, I.; Faivre, V.; Degos, V.; Gressens, P.; Nadjar, A.; Van Steenwinckel, J.; Adle-Biasette, H.; Magnan, C.; Jacquens, A.; Bokobza, C.
Show abstract
Around 1 of every 10 babies is born preterm, and the incidence of preterm birth has been rising. The long-term consequences of preterm survivors are not fully understood. Preterm birth is proven to be associated with metabolic diseases and related disorders later in life. Preterm newborns are susceptible to perinatal inflammatory events such as chorioamnionitis, hypoxia-ischemia, and sepsis. We hypothesized that perinatal inflammation has a role in the developmental programming of metabolic diseases and related disorders. In the present study, perinatal inflammation was modeled by systemic administration of IL-1{beta} in mice. We observed a pronounced sexual dimorphism where only the males presented significant insulin resistance and glucose intolerance accompanied by leptin resistance in the long term following perinatal inflammation exposure. Adiposity and energy homeostasis were intact. It showed that perinatal inflammation selectively contributes to the long-term dysregulation of glucose metabolism in a sex-dependent manner. The underlying mechanism might be linked with hypothalamic inflammation and upregulated circulating CCL5. Metformin treatment might be optional to treat insulin resistance resulting from perinatal inflammation. HighlightsO_LIPerinatal inflammation is common in preterm infants, often leading to perinatal brain injuries. However, the long-term metabolic outcomes of these infants are not fully revealed. C_LIO_LIWe explored the long-term metabolic outcomes in mice with perinatal IL-1{beta} exposure and sought its association with inflammation. C_LIO_LIPerinatal inflammation has a profound and deleterious role in glucose metabolism in a sex-dependent and time-dependent manner. C_LIO_LIPerinatal inflammation might be a risk factor for metabolic disorders in preterm survivors. C_LI
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Short-term consumption of ultra-processed semi-synthetic diets impairs the sense of smell and brain metabolism in mice 96%
- Differential cell type-specific function of the aryl hydrocarbon receptor and its repressor in diet-induced obesity and fibrosis 95%
- Increased TGFβ /Activin-Smad2 signaling is associated with pancreatic β-cell dysfunction and glucose intolerance in gestational diabetes mellitus 95%
Similar papers in this journal
- C-section and systemic inflammation synergize to disrupt the neonatal gut microbiota and brain development in a model of prematurity 94%
- Microglial SIRT2 deficiency aggravates cognitive decline and amyloid pathology in Alzheimer's disease 93%
- Sex specific correction of maternal inflammation-induced behavioral abnormalities by the inhibition of colony-stimulating factor 1 receptor 93%
Similar papers in this journal
- Role of sex and high fat diet in metabolic and hypothalamic disturbances in the 3xTg-AD mouse model of Alzheimer's disease 93%
- RGS10 Attenuates Systemic Immune Dysregulation Induced by Chronic Inflammatory Stress 93%
- Developmental Stage-Dependent Transcriptomic Responses to Neonatal Intraventricular Hemorrhage 92%
Similar papers in this journal
- Prostaglandin PGE2 receptor EP4 regulates microglial phagocytosis and increases susceptibility to diet-induced obesity 95%
- Deficiency of the hemoglobin-haptoglobin receptor, CD163, worsens insulin sensitivity in obese male mice 94%
- GAS6 and AXL promote insulin resistance by rewiring insulin signaling and increasing insulin receptor trafficking to endosomes 94%
Similar papers in this journal
- Paternal multigenerational exposure to an obesogenic diet drives epigenetic predisposition to metabolic disorders 96%
- The effects of 17α-estradiol treatment on endocrine system revealed by single-nucleus transcriptomic sequencing of hypothalamus 95%
- CXCR3-expressing myeloid cells recruited to the hypothalamus protect against diet-induced body mass gain and metabolic dysfunction 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.