4.5 Article

STREPTOZOTOCIN ALTERS GLUCOSE TRANSPORT, CONNEXIN EXPRESSION AND ENDOPLASMIC RETICULUM FUNCTIONS IN NEURONS AND ASTROCYTES

期刊

NEUROSCIENCE
卷 356, 期 -, 页码 151-166

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.neuroscience.2017.05.018

关键词

Alzheimer's disease; streptozotocin; glucose transporters; connexin; endoplasmic reticulum stress

资金

  1. Council of Scientific and Industrial Research, India
  2. funding agency Science and Engineering Research Board [EMR/2015/001282]

向作者/读者索取更多资源

The study was undertaken to explore the cell specific streptozotocin (STZ)-induced mechanistic alterations. STZ-induced rodent model is a well-established experimental model of Alzheimer's disease (AD) and in our previous studies we have established it as an in vitro screening model of AD by employing N2A neuronal cells. Therefore, STZ was selected in the present study to understand the STZ-induced cell-specific alterations by utilizing neuronal N2A and astrocytes C6 cells. Both neuronal and astrocyte cells were treated with STZ at 10, 50, 100 and 1000 mu M concentrations for 48 h. STZ exposure caused significant decline in cellular viability and augmented cytotoxicity of cells involving astrocytes activation. STZ treatment also disrupted the energy metabolism by altered glucose uptake and its transport in both cells as reflected with decreased expression of glucose transporters (GLUT) 1/3. The consequent decrease in ATP level and decreased mitochondria! membrane potential was also observed in both the cells. STZ caused increased intracellular calcium which could cause the initiation of endoplasmic reticulum (ER) stress. Significant upregulation of ER stress-related markers were observed in both cells after STZ treatment. The cellular communication of astrocytes and neurons was altered as reflected by increased expression of connexin 43 along with DNA fragmentation. STZ-induced apoptotic death was evaluated by elevated expression of caspase-3 and PI/Hoechst staining of cells. In conclusion, study showed that STZ exert alike biochemical alterations, ER stress and cellular apoptosis in both neuronal and astrocyte cells. (C) 2017 IBRO. Published by Elsevier Ltd. All rights reserved.

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