Literature DB >> 17130476

Hyperglycemia inhibits retinoic acid-induced activation of Rac1, prevents differentiation of cortical neurons, and causes oxidative stress in a rat model of diabetic pregnancy.

Rakeshwar S Guleria1, Jing Pan, Donald Dipette, Ugra S Singh.   

Abstract

Diabetes is a risk factor for neuronal dysfunction. Impairment in signaling mechanisms that regulate differentiation of neurons is hypothesized to be one of the main causes of neuronal dysfunction. Retinoic acid, a physiologically active retinoid synthesized from vitamin A, regulates neuronal differentiation during embryonic development and is required for maintenance of plasticity in differentiated neurons. To date, little is known about the molecular events underlying hyperglycemia-induced complications in the central nervous system (CNS). Here, we provide evidence, in a diabetes rat model, of hyperglycemia-induced oxidative stress along with apoptotic stress in developing cortical neurons isolated from 16-day-old rat embryos. We also demonstrate impaired retinoic acid signaling that is involved in neuronal differentiation. Retinoic acid-induced neurite outgrowth and expression of neuronal markers were reduced in this model. The activation of small-molecular weight G-protein, Rac1, that mediates these effects was also reduced. Retinoic acid applied at a physiological concentration significantly decreased hyperglycemia-induced oxidative stress and thus supported the antioxidant defense system. These results suggest that diabetes-induced neuronal complications during pregnancy might be due to impaired retinoic acid signaling, and exogenously administered retinoic acid may be useful against CNS complications associated with diabetes.

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Year:  2006        PMID: 17130476     DOI: 10.2337/db06-0169

Source DB:  PubMed          Journal:  Diabetes        ISSN: 0012-1797            Impact factor:   9.461


  12 in total

1.  Resveratrol prevents impairment in activation of retinoic acid receptors and MAP kinases in the embryos of a rodent model of diabetic embryopathy.

Authors:  Chandra K Singh; Ambrish Kumar; Holly A LaVoie; Donald J DiPette; Ugra S Singh
Journal:  Reprod Sci       Date:  2012-04-24       Impact factor: 3.060

2.  Ethanol impairs activation of retinoic acid receptors in cerebellar granule cells in a rodent model of fetal alcohol spectrum disorders.

Authors:  Ambrish Kumar; Chandra K Singh; Donald D DiPette; Ugra S Singh
Journal:  Alcohol Clin Exp Res       Date:  2010-03-01       Impact factor: 3.455

3.  Endothelial cell migration during murine yolk sac vascular remodeling occurs by means of a Rac1 and FAK activation pathway in vivo.

Authors:  Josephine M Enciso; Christine M Konecny; Heidi E Karpen; Karen K Hirschi
Journal:  Dev Dyn       Date:  2010-10       Impact factor: 3.780

4.  Resveratrol prevents embryonic oxidative stress and apoptosis associated with diabetic embryopathy and improves glucose and lipid profile of diabetic dam.

Authors:  Chandra K Singh; Ambrish Kumar; David B Hitchcock; Daping Fan; Richard Goodwin; Holly A LaVoie; Prakash Nagarkatti; Donald J DiPette; Ugra S Singh
Journal:  Mol Nutr Food Res       Date:  2011-01-20       Impact factor: 5.914

5.  Resveratrol restores Nrf2 level and prevents ethanol-induced toxic effects in the cerebellum of a rodent model of fetal alcohol spectrum disorders.

Authors:  Ambrish Kumar; Chandra K Singh; Holly A Lavoie; Donald J Dipette; Ugra S Singh
Journal:  Mol Pharmacol       Date:  2011-06-22       Impact factor: 4.436

6.  A brief review of in vitro models of diabetic neuropathy.

Authors:  Namita G Hattangady; Medha S Rajadhyaksha
Journal:  Int J Diabetes Dev Ctries       Date:  2009-10

Review 7.  Bioactive Compounds and Their Neuroprotective Effects in Diabetic Complications.

Authors:  Yoon Sin Oh
Journal:  Nutrients       Date:  2016-07-30       Impact factor: 5.717

8.  Decreased Serum Retinoic Acid May Predict Poor Outcome in Ischemic Stroke Patients.

Authors:  Mengshi Xu; Liang Xu; Huaping Du; Wanying Shan; Jie Feng; Guojie Zhai; Xiuyan Yang
Journal:  Neuropsychiatr Dis Treat       Date:  2020-06-10       Impact factor: 2.570

Review 9.  A look inside the diabetic brain: Contributors to diabetes-induced brain aging.

Authors:  Shayna A Wrighten; Gerardo G Piroli; Claudia A Grillo; Lawrence P Reagan
Journal:  Biochim Biophys Acta       Date:  2008-11-05

10.  The redox mechanism for vascular barrier dysfunction associated with metabolic disorders: Glutathionylation of Rac1 in endothelial cells.

Authors:  Jingyan Han; Robert M Weisbrod; Di Shao; Yosuke Watanabe; Xiaoyan Yin; Markus M Bachschmid; Francesca Seta; Yvonne M W Janssen-Heininger; Reiko Matsui; Mengwei Zang; Naomi M Hamburg; Richard A Cohen
Journal:  Redox Biol       Date:  2016-09-11       Impact factor: 11.799

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