Maternal glucose intolerance during pregnancy affects offspring POMC expression and results in adult metabolic alterations in a sex-dependent manner
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B. Woodside | A. Kiss | A. Abizaid | Z. Silver | Lindsay Hyland | M. G. Martins | K. Ayoub
[1] I. Lindberg,et al. Obesity, POMC, and POMC-processing Enzymes: Surprising Results From Animal Models , 2021, Endocrinology.
[2] B. Woodside,et al. Effects of snack intake during pregnancy and lactation on reproductive outcome in mild hyperglycemic rats , 2021, Physiology & Behavior.
[3] S. Bouret,et al. Nutritional and developmental programming effects of insulin , 2021, Journal of neuroendocrinology.
[4] 2. Classification and Diagnosis of Diabetes: Standards of Medical Care in Diabetes-2021. , 2020, Diabetes care.
[5] L. Snetselaar,et al. Association of Maternal Prepregnancy Diabetes and Gestational Diabetes Mellitus With Congenital Anomalies of the Newborn , 2020, Diabetes Care.
[6] Katherine A. Sauder,et al. Maternal blood glucose level and offspring glucose–insulin homeostasis: what is the role of offspring adiposity? , 2020, Diabetologia.
[7] J. Monterosso,et al. Associations Between Exposure to Gestational Diabetes Mellitus In Utero and Daily Energy Intake, Brain Responses to Food Cues, and Adiposity in Children , 2020, Diabetes Care.
[8] D. Dabelea,et al. A prospective study of associations between in utero exposure to gestational diabetes mellitus and metabolomic profiles during late childhood and adolescence , 2019, Diabetologia.
[9] Y. Jacquemyn,et al. Characteristics and pregnancy outcomes across gestational diabetes mellitus subtypes based on insulin resistance , 2019, Diabetologia.
[10] Weijun Ding,et al. Early-life high-fat diet-induced obesity programs hippocampal development and cognitive functions via regulation of gut commensal Akkermansia muciniphila , 2019, Neuropsychopharmacology.
[11] R. Hanson,et al. Birthweight and early-onset type 2 diabetes in American Indians: differential effects in adolescents and young adults and additive effects of genotype, BMI and maternal diabetes , 2019, Diabetologia.
[12] E. Wolf,et al. Animal models of obesity and diabetes mellitus , 2018, Nature Reviews Endocrinology.
[13] F. Booth,et al. Maternal Western diet age‐specifically alters female offspring voluntary physical activity and dopamine‐ and leptin‐related gene expression , 2017, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[14] Guiju Sun,et al. Influence of maternal overweight, obesity and gestational weight gain on the perinatal outcomes in women with gestational diabetes mellitus , 2017, Scientific Reports.
[15] F. Alla,et al. Gestational diabetes and adverse perinatal outcomes from 716,152 births in France in 2012 , 2017, Diabetologia.
[16] S. Ozanne,et al. Early life origins of metabolic disease: Developmental programming of hypothalamic pathways controlling energy homeostasis , 2015, Frontiers in Neuroendocrinology.
[17] P. Catalano,et al. Maternal obesity and metabolic risk to the offspring: why lifestyle interventions may have not achieved the desired outcomes , 2015, International Journal of Obesity.
[18] A. Abizaid,et al. Embryonic development of the hypothalamic feeding circuitry: Transcriptional, nutritional, and hormonal influences , 2014, Molecular metabolism.
[19] H. Fadl,et al. Perinatal outcome in relation to fetal sex in offspring to mothers with pre‐gestational and gestational diabetes—a population‐based study , 2014, Diabetic medicine : a journal of the British Diabetic Association.
[20] N. Balthasar,et al. Sexual Dimorphism in Offspring Glucose-Sensitive Hypothalamic Gene Expression and Physiological Responses to Maternal High-Fat Diet Feeding , 2014, Endocrinology.
[21] T. Hansen,et al. Insulin resistance and impaired pancreatic β-cell function in adult offspring of women with diabetes in pregnancy. , 2013, The Journal of clinical endocrinology and metabolism.
[22] Oren Forkosh,et al. Postnatal ablation of POMC neurons induces an obese phenotype characterized by decreased food intake and enhanced anxiety-like behavior. , 2013, Molecular endocrinology.
[23] J. Lesage,et al. The hypothalamic POMC mRNA expression is upregulated in prenatally undernourished male rat offspring under high-fat diet , 2013, Peptides.
[24] A. Abizaid,et al. Organizational effects of perinatal exposure to bisphenol-A and diethylstilbestrol on arcuate nucleus circuitry controlling food intake and energy expenditure in male and female CD-1 mice. , 2013, Endocrinology.
[25] T. Buchanan,et al. Gestational diabetes mellitus: risks and management during and after pregnancy , 2012, Nature Reviews Endocrinology.
[26] Zhibin Hu,et al. Risk factors and long-term health consequences of macrosomia: a prospective study in Jiangsu Province, China , 2012, Journal of biomedical research.
[27] S. Bouret,et al. Maternal diabetes compromises the organization of hypothalamic feeding circuits and impairs leptin sensitivity in offspring. , 2011, Endocrinology.
[28] D. Lawlor,et al. Association of Maternal Diabetes Mellitus in Pregnancy With Offspring Adiposity Into Early Adulthood: Sibling Study in a Prospective Cohort of 280 866 Men From 248 293 Families , 2011, Circulation.
[29] F. Dunne,et al. The maternal and fetal impacts of obesity and gestational diabetes on pregnancy outcome. , 2010, Best practice & research. Clinical endocrinology & metabolism.
[30] U. Hanson,et al. Maternal and neonatal outcomes and time trends of gestational diabetes mellitus in Sweden from 1991 to 2003 , 2010, Diabetic medicine : a journal of the British Diabetic Association.
[31] K. Gamber,et al. Leptin-dependent control of glucose balance and locomotor activity by POMC neurons. , 2009, Cell metabolism.
[32] L. E. Pritchard,et al. Printed in U.S.A. Copyright © 2007 by The Endocrine Society doi: 10.1210/en.2006-1686 Minireview: Neuropeptide Processing and Its Impact on , 2022 .
[33] Marie-Aline Charles,et al. Childhood Obesity and Metabolic Imprinting , 2007, Diabetes Care.
[34] E. Sobngwi,et al. Consequences of fetal exposure to maternal diabetes in offspring. , 2006, The Journal of clinical endocrinology and metabolism.
[35] D. Hill,et al. Ontogeny of regeneration of beta-cells in the neonatal rat after treatment with streptozotocin. , 2006, Endocrinology.
[36] S. Amini,et al. Increased fetal adiposity: a very sensitive marker of abnormal in utero development. , 2003, American journal of obstetrics and gynecology.
[37] E. Herrera,et al. Different Diabetogenic Response to Moderate Doses of Streptozotocin in Pregnant Rats, and Its Long-Term Consequences in the Offspring , 2003, Experimental diabesity research.
[38] D. Dunger,et al. Association between postnatal catch-up growth and obesity in childhood: prospective cohort study , 2000, BMJ : British Medical Journal.
[39] W. Rohde,et al. Malformations of Hypothalamic Nuclei in Hyperinsulinemic Offspring of Rats with Gestational Diabetes , 1999, Developmental Neuroscience.
[40] Harold Ellis,et al. Atlas of the Developing Rat Nervous System. , 1995 .
[41] L. Bouwens,et al. Beta-cell proliferation in normal and streptozotocin-treated newborn rats: site, dynamics and capacity , 1994, Diabetologia.
[42] V. Hiilesmaa,et al. Hyperinsulinemia and Macrosomia in the Fetus of the Diabetic Mother , 1994, Diabetes Care.
[43] M M Tai,et al. A Mathematical Model for the Determination of Total Area Under Glucose Tolerance and Other Metabolic Curves , 1994, Diabetes Care.
[44] W. Oh,et al. Maternal hyperglycemia in pregnant rats: its effect on growth and carbohydrate metabolism in the offspring. , 1988, Metabolism: clinical and experimental.
[45] P. Kloppenburg,et al. AgRP innervation onto POMC neurons increases with age and is accelerated with chronic high-fat feeding in male mice. , 2013, Endocrinology.
[46] V. Preedy,et al. Prospective Cohort Study , 2010 .
[47] R. Cone,et al. The central melanocortin system and the integration of short- and long-term regulators of energy homeostasis. , 2004, Recent progress in hormone research.
[48] No Authors. Standards of Medical Care in Diabetes — 2021 , 2022, KIDNEYS.