Modulation of lipidomic markers in oxidative stress neural-derived embryonic stem cell cultures with vitamin E supplementation

Abnormal lipid metabolism is strongly related to the pathogenesis of Alzheimer’s disease (AD). Apolipoprotein E (APO E) is the major apolipoprotein in the CNS that has a role in cholesterol transport. Oxidative stress brain has reduced capacity for neuronal delivery of cholesterol suggesting a defec...

Full description

Saved in:
Bibliographic Details
Main Author: Abd Jalil, Afifah
Format: Thesis
Language:English
Published: 2017
Subjects:
Online Access:http://psasir.upm.edu.my/id/eprint/70603/1/FPSK%28M%29%202017%2069%20-%20IR.pdf
Tags: Add Tag
No Tags, Be the first to tag this record!
id my-upm-ir.70603
record_format uketd_dc
spelling my-upm-ir.706032019-07-26T01:37:45Z Modulation of lipidomic markers in oxidative stress neural-derived embryonic stem cell cultures with vitamin E supplementation 2017-05 Abd Jalil, Afifah Abnormal lipid metabolism is strongly related to the pathogenesis of Alzheimer’s disease (AD). Apolipoprotein E (APO E) is the major apolipoprotein in the CNS that has a role in cholesterol transport. Oxidative stress brain has reduced capacity for neuronal delivery of cholesterol suggesting a defect in cholesterol delivery for neuronal repair mechanism contribute to AD progression. Glutamate is the main excitatory neurotransmitter in the CNS, which can be excitotoxic at high concentration. Vitamin E has been shown to possess potent antioxidant and neuroprotection activities. It has two potent antioxidant isomers which are tocopherol and tocotrienol. In this present study, the effects of Tocotrienol Rich Fraction (TRF) from palm oil and alpha-Tocopherol (α-TCP) in modulating lipidomic markers in oxidative stress neural-derived embryonic stem (ES) cell cultures were elucidated. Transgenic mouse ES cell line (46C) was differentiated into neural lineage by induction with retinoic acid in vitro. The cells were then exposed to oxidative stress by a significantly high concentration of glutamate. Reactive oxygen species (ROS) measurement was done upon glutamate excitotoxicity and recovery processes by vitamin E were determined. Gene expression of glutamate receptors (NMDA and Kainate receptors), neuron-specific enolase (NSE), lipidomic markers including APO E, low density related protein (LRP) and 3-hydroxy-3-methylglutaryl-coenzyme A reductase (HMGCR) were elucidated using real-time PCR. The result reveals downregulation of NMDA, Kainate receptor, NSE and HMGCR upon posttreatment with different concentration of TRF and α-TCP in oxidative stress neural-derived 46C cells, a sign of neurorecovery process. Treatment of vitamin E also reduced the concentration of ROS to 33.05% and 57.2% upon 300ng/mL of TRF and α-TCP treatment respectively, in glutamate-induced oxidative stress neural cells which indicated that vitamin E is one of the potent antioxidants. In conclusion, TRF and α-TCP have protective and antioxidant properties against glutamate toxicity in neural derived ES cell and have the possibility to develop into potential treatment agents for AD. Embryonic Stem Cells Cell Culture Techniques Vitamin E 2017-05 Thesis http://psasir.upm.edu.my/id/eprint/70603/ http://psasir.upm.edu.my/id/eprint/70603/1/FPSK%28M%29%202017%2069%20-%20IR.pdf text en public masters Universiti Putra Malaysia Embryonic Stem Cells Cell Culture Techniques Vitamin E
institution Universiti Putra Malaysia
collection PSAS Institutional Repository
language English
topic Embryonic Stem Cells
Cell Culture Techniques
Vitamin E
spellingShingle Embryonic Stem Cells
Cell Culture Techniques
Vitamin E
Abd Jalil, Afifah
Modulation of lipidomic markers in oxidative stress neural-derived embryonic stem cell cultures with vitamin E supplementation
description Abnormal lipid metabolism is strongly related to the pathogenesis of Alzheimer’s disease (AD). Apolipoprotein E (APO E) is the major apolipoprotein in the CNS that has a role in cholesterol transport. Oxidative stress brain has reduced capacity for neuronal delivery of cholesterol suggesting a defect in cholesterol delivery for neuronal repair mechanism contribute to AD progression. Glutamate is the main excitatory neurotransmitter in the CNS, which can be excitotoxic at high concentration. Vitamin E has been shown to possess potent antioxidant and neuroprotection activities. It has two potent antioxidant isomers which are tocopherol and tocotrienol. In this present study, the effects of Tocotrienol Rich Fraction (TRF) from palm oil and alpha-Tocopherol (α-TCP) in modulating lipidomic markers in oxidative stress neural-derived embryonic stem (ES) cell cultures were elucidated. Transgenic mouse ES cell line (46C) was differentiated into neural lineage by induction with retinoic acid in vitro. The cells were then exposed to oxidative stress by a significantly high concentration of glutamate. Reactive oxygen species (ROS) measurement was done upon glutamate excitotoxicity and recovery processes by vitamin E were determined. Gene expression of glutamate receptors (NMDA and Kainate receptors), neuron-specific enolase (NSE), lipidomic markers including APO E, low density related protein (LRP) and 3-hydroxy-3-methylglutaryl-coenzyme A reductase (HMGCR) were elucidated using real-time PCR. The result reveals downregulation of NMDA, Kainate receptor, NSE and HMGCR upon posttreatment with different concentration of TRF and α-TCP in oxidative stress neural-derived 46C cells, a sign of neurorecovery process. Treatment of vitamin E also reduced the concentration of ROS to 33.05% and 57.2% upon 300ng/mL of TRF and α-TCP treatment respectively, in glutamate-induced oxidative stress neural cells which indicated that vitamin E is one of the potent antioxidants. In conclusion, TRF and α-TCP have protective and antioxidant properties against glutamate toxicity in neural derived ES cell and have the possibility to develop into potential treatment agents for AD.
format Thesis
qualification_level Master's degree
author Abd Jalil, Afifah
author_facet Abd Jalil, Afifah
author_sort Abd Jalil, Afifah
title Modulation of lipidomic markers in oxidative stress neural-derived embryonic stem cell cultures with vitamin E supplementation
title_short Modulation of lipidomic markers in oxidative stress neural-derived embryonic stem cell cultures with vitamin E supplementation
title_full Modulation of lipidomic markers in oxidative stress neural-derived embryonic stem cell cultures with vitamin E supplementation
title_fullStr Modulation of lipidomic markers in oxidative stress neural-derived embryonic stem cell cultures with vitamin E supplementation
title_full_unstemmed Modulation of lipidomic markers in oxidative stress neural-derived embryonic stem cell cultures with vitamin E supplementation
title_sort modulation of lipidomic markers in oxidative stress neural-derived embryonic stem cell cultures with vitamin e supplementation
granting_institution Universiti Putra Malaysia
publishDate 2017
url http://psasir.upm.edu.my/id/eprint/70603/1/FPSK%28M%29%202017%2069%20-%20IR.pdf
_version_ 1747812872822456320