Thymoquinone Prevents β-Amyloid Neurotoxicity in Primary Cultured Cerebellar Granule Neurons

被引:0
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作者
Norsharina Ismail
Maznah Ismail
Musalmah Mazlan
Latiffah Abdul Latiff
Mustapha Umar Imam
Shahid Iqbal
Nur Hanisah Azmi
Siti Aisyah Abd Ghafar
Kim Wei Chan
机构
[1] Universiti Putra Malaysia,Nutricosmeceuticals and Nutrigenomics Programme, Laboratory of Molecular Biomedicine, Institute of Bioscience
[2] Universiti Putra Malaysia,Department of Nutrition and Dietetics, Faculty of Medicine and Health Sciences
[3] Universiti Teknologi Mara,Institute of Medical Molecular Biotechnology, Faculty of Medicine
[4] Universiti Putra Malaysia,Department of Community Health, Faculty of Medicine and Health Sciences
[5] Universiti Putra Malaysia,Cancer Resource and Education Centre, Faculty of Medicine and Health Sciences
[6] University of Sargodha,Department of Chemistry
来源
关键词
Thymoquinone; β-Amyloid; Alzheimer’s disease; Neurotoxicity; Primary cultured cerebellar granule neurons;
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摘要
Thymoquinone (TQ), a bioactive constituent of Nigella sativa Linn (N. sativa) has demonstrated several neuropharmacological attributes. In the present study, the neuroprotective properties of TQ were investigated by studying its anti-apoptotic potential to diminish β-amyloid peptide 1–40 sequence (Aβ1–40)-induced neuronal cell death in primary cultured cerebellar granule neurons (CGNs). The effects of TQ against Aβ1–40-induced neurotoxicity, morphological damages, DNA condensation, the generation of reactive oxygen species, and caspase-3, -8, and -9 activation were investigated. Pretreatment of CGNs with TQ (0.1 and 1 μM) and subsequent exposure to 10 μM Aβ1–40 protected the CGNs against the neurotoxic effects of the latter. In addition, the CGNs were better preserved with intact cell bodies, extensive neurite networks, a loss of condensed chromatin and less free radical generation than those exposed to Aβ1–40 alone. TQ pretreatment inhibited Aβ1–40-induced apoptosis of CGNs via both extrinsic and intrinsic caspase pathways. Thus, the findings of this study suggest that TQ may prevent neurotoxicity and Aβ1–40-induced apoptosis. TQ is, therefore, worth studying further for its potential to reduce the risks of developing Alzheimer’s disease.
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页码:1159 / 1169
页数:10
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