Vitamin E-Mediated Modulation of Glutamate Receptor Expression in an Oxidative Stress Model of Neural Cells Derived from Embryonic Stem Cell Cultures

被引:15
作者
Abd Jalil, Afifah [1 ,2 ]
Khaza'ai, Huzwah [1 ]
Nordin, Norshariza [1 ,2 ]
Mansor, Nur'izzati [1 ,2 ]
Zaulkffali, Amirah Salwani [3 ]
机构
[1] Univ Putra Malaysia, Dept Biomed Sci, Fac Med & Hlth Sci, Serdang 43400, Selangor, Malaysia
[2] Univ Putra Malaysia, Genet & Regenerat Med Res Ctr, Fac Med & Hlth Sci, Serdang 43400, Selangor, Malaysia
[3] Univ Putra Malaysia, Dept Nutr & Dietet, Fac Med & Hlth Sci, Serdang 43400, Selangor, Malaysia
关键词
NEURODEGENERATIVE DISEASES; DIFFERENTIATION; TRANSPORTERS; GENES;
D O I
10.1155/2017/6048936
中图分类号
R [医药、卫生];
学科分类号
10 ;
摘要
Glutamate is the primary excitatory neurotransmitter in the central nervous system. Excessive concentrations of glutamate in the brain can be excitotoxic and cause oxidative stress, which is associated with Alzheimer's disease. In the present study, the effects of vitamin E in the form of tocotrienol-rich fraction (TRF) and alpha-tocopherol (alpha-TCP) in modulating the glutamate receptor and neuron injury markers in an in vitro model of oxidative stress in neural-derived embryonic stem (ES) cell cultures were elucidated. A transgenic mouse ES cell line (46C) was differentiated into a neural lineage in vitro via induction with retinoic acid. These cells were then subjected to oxidative stress with a significantly high concentration of glutamate. Measurement of reactive oxygen species (ROS) was performed after inducing glutamate excitotoxicity, and recovery from this toxicity in response to vitamin E was determined. The gene expression levels of glutamate receptors and neuron-specific enolase were elucidated using real-time PCR. The results reveal that neural cells derived from 46C cells and subjected to oxidative stress exhibit downregulation of NMDA, kainate receptor, and NSE after posttreatment with different concentrations of TRF and alpha-TCP, a sign of neurorecovery. Treatment of either TRF or alpha-TCP reduced the levels of ROS in neural cells subjected to glutamate-induced oxidative stress; these results indicated that vitamin E is a potent antioxidant.
引用
收藏
页数:12
相关论文
共 26 条
  • [1] Screening for mammalian neural genes via fluorescence-activated cell sorter purification of neural precursors from Sox1-gfp knock-in mice
    Aubert, J
    Stavridis, MP
    Tweedie, S
    O'Reilly, M
    Vierlinger, K
    Li, M
    Ghazal, P
    Pratt, T
    Mason, JO
    Roy, D
    Smith, A
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 : 11836 - 11841
  • [2] EMBRYONIC STEM-CELLS EXPRESS NEURONAL PROPERTIES IN-VITRO
    BAIN, G
    KITCHENS, D
    YAO, M
    HUETTNER, JE
    GOTTLIEB, DI
    [J]. DEVELOPMENTAL BIOLOGY, 1995, 168 (02) : 342 - 357
  • [3] HYDROGEN-PEROXIDE MEDIATES AMYLOID-BETA PROTEIN TOXICITY
    BEHL, C
    DAVIS, JB
    LESLEY, R
    SCHUBERT, D
    [J]. CELL, 1994, 77 (06) : 817 - 827
  • [4] Differentiation of mouse embryonic stem cells into a defined neuronal lineage
    Bibel, M
    Richter, J
    Schrenk, K
    Tucker, KL
    Staiger, V
    Korte, M
    Goetz, M
    Barde, YA
    [J]. NATURE NEUROSCIENCE, 2004, 7 (09) : 1003 - 1009
  • [5] Dayem Ahmed Abdal, 2010, Cancers (Basel), V2, P859, DOI 10.3390/cancers2020859
  • [6] Dingledine R, 1999, PHARMACOL REV, V51, P7
  • [7] Formation of embryoid bodies from mouse embryonic stem cells cultured on silicon-coated surfaces
    Fathi, Fardin
    Altiraihi, Taki
    Mowla, Seyed Javad
    Movahedin, Mansoreh
    [J]. CYTOTECHNOLOGY, 2009, 59 (01) : 11 - 16
  • [8] Gao LY, 2014, MALAYS J MED SCI, V21, P8
  • [9] Embryonic stem cell-derived neurogenesis - Retinoic acid induction and lineage selection of neuronal cells
    Guan, KM
    Chang, H
    Rolletschek, A
    Wobus, AM
    [J]. CELL AND TISSUE RESEARCH, 2001, 305 (02) : 171 - 176
  • [10] NMDA receptor-dependent glutamate excitotoxicity in human embryonic stem cell-derived neurons
    Gupta, Kunal
    Hardingham, Giles E.
    Chandran, Siddharthan
    [J]. NEUROSCIENCE LETTERS, 2013, 543 : 95 - 100