Sadagurski Lab

Neuroinflammation | Metabolism | Environmental Stressors & Aging

Long-lived crowded-litter mice exhibit lasting effects on insulin sensitivity and energy homeostasis.


Journal article


M. Sadagurski, Taylor Landeryou, M. Blandino-Rosano, Gillian Cady, L. Elghazi, D. Meister, Lauren See, A. Bartke, E. Bernal-Mizrachi, Richard A. Miller
American Journal of Physiology. Endocrinology and Metabolism, 2014

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APA   Click to copy
Sadagurski, M., Landeryou, T., Blandino-Rosano, M., Cady, G., Elghazi, L., Meister, D., … Miller, R. A. (2014). Long-lived crowded-litter mice exhibit lasting effects on insulin sensitivity and energy homeostasis. American Journal of Physiology. Endocrinology and Metabolism.


Chicago/Turabian   Click to copy
Sadagurski, M., Taylor Landeryou, M. Blandino-Rosano, Gillian Cady, L. Elghazi, D. Meister, Lauren See, A. Bartke, E. Bernal-Mizrachi, and Richard A. Miller. “Long-Lived Crowded-Litter Mice Exhibit Lasting Effects on Insulin Sensitivity and Energy Homeostasis.” American Journal of Physiology. Endocrinology and Metabolism (2014).


MLA   Click to copy
Sadagurski, M., et al. “Long-Lived Crowded-Litter Mice Exhibit Lasting Effects on Insulin Sensitivity and Energy Homeostasis.” American Journal of Physiology. Endocrinology and Metabolism, 2014.


BibTeX   Click to copy

@article{m2014a,
  title = {Long-lived crowded-litter mice exhibit lasting effects on insulin sensitivity and energy homeostasis.},
  year = {2014},
  journal = {American Journal of Physiology. Endocrinology and Metabolism},
  author = {Sadagurski, M. and Landeryou, Taylor and Blandino-Rosano, M. and Cady, Gillian and Elghazi, L. and Meister, D. and See, Lauren and Bartke, A. and Bernal-Mizrachi, E. and Miller, Richard A.}
}

Abstract

The action of nutrients on early postnatal growth can influence mammalian aging and longevity. Recent work has demonstrated that limiting nutrient availability in the first 3 wk of life [by increasing the number of pups in the crowded-litter (CL) model] leads to extension of mean and maximal lifespan in genetically normal mice. In this study, we aimed to characterize the impact of early-life nutrient intervention on glucose metabolism and energy homeostasis in CL mice. In our study, we used mice from litters supplemented to 12 or 15 pups and compared those to control litters limited to eight pups. At weaning and then throughout adult life, CL mice are significantly leaner and consume more oxygen relative to control mice. At 6 mo of age, CL mice had low fasting leptin concentrations, and low-dose leptin injections reduced body weight and food intake more in CL female mice than in controls. At 22 mo, CL female mice also have smaller adipocytes compared with controls. Glucose and insulin tolerance tests show an increase in insulin sensitivity in 6 mo old CL male mice, and females become more insulin sensitive later in life. Furthermore, β-cell mass was significantly reduced in the CL male mice and was associated with reduction in β-cell proliferation rate in these mice. Together, these data show that early-life nutrient intervention has a significant lifelong effect on metabolic characteristics that may contribute to the increased lifespan of CL mice.


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