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Toxic effects of X-linked adrenoleukodystrophy-associated, very long chain fatty acids on glial cells and neurons from rat hippocampus in culture

机译:X链肾上腺髓质营养不良症相关的超长链脂肪酸对培养大鼠海马神经胶质细胞和神经元的毒性作用

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摘要

Saturated very long chain fatty acids (VLCFAs; ≥C22:0) accumulate in X-linked adrenoleukodystrophy (X-ALD, OMIM 300100), a severe hereditary neurodegenerative disease, due to peroxisomal impairment. Previous studies analysed the development of X-ALD in humans and gene knockout animal models. However, the toxic effect of VLCFA leading to severe symptoms with progressive and multifocal demyelination, adrenal insufficiency and inflammation still remains unclear. To understand the toxic effects of VLCFA in the brain, here we exposed neural cells to VLCFA and analysed the cellular consequences. We found that oligodendrocytes and astrocytes challenged with docosanoic- (C22:0), tetracosanoic- (C24:0) and hexacosanoic acids (C24:0) die within 24 h. VLCFA-induced depolarization of mitochondria in situ and increased intracellular Ca2+ level in all three brain cell types provides indications about the mechanism of toxicity of VLCFA. Interestingly, VLCFAs affect to the largest degree the myelin-producing oligodendrocytes. In isolated mitochondria, VLCFAs exert a detrimental effect by affecting the inner mitochondrial membrane and promoting the permeability transition. In conclusion, we suggest that there is a potent toxic activity of VLCFA due to dramatic cell physiological effects with mitochondrial dysfunction and Ca2+ deregulation. This provides the first evidence for mitochondrial-based cell death mechanisms in neurodegenerative disease with peroxisomal defects and subsequent VLCFA accumulation.
机译:饱和的超长链脂肪酸(VLCFA;≥C22:0)积累在X联肾上腺皮质营养不良(X-ALD,OMIM 300100)中,这是一种严重的遗传性神经退行性疾病,归因于过氧化物酶体损伤。先前的研究分析了人类和基因敲除动物模型中X-ALD的发展。但是,VLCFA导致严重症状的进行性和多灶性脱髓鞘,肾上腺功能不全和炎症的毒性作用仍不清楚。为了了解VLCFA对大脑的毒性作用,这里我们将神经细胞暴露于VLCFA并分析了细胞后果。我们发现用二十二烷酸-(C22:0),四二十烷酸-(C24:0)和十六烷酸(C24:0)攻击的少突胶质细胞和星形胶质细胞在24小时内死亡。 VLCFA引起的线粒体原位去极化和所有三种脑细胞类型中细胞内Ca 2 + 水平的增加为VLCFA的毒性机制提供了指示。有趣的是,VLCFA在最大程度上影响产生髓磷脂的少突胶质细胞。在孤立的线粒体中,VLCFA通过影响线粒体内膜并促进通透性转换发挥有害作用。总之,我们认为由于线粒体功能紊乱和Ca 2 + 失控引起的剧烈细胞生理作用,VLCFA具有强毒性作用。这为具有过氧化物酶体缺陷和随后的VLCFA积累的神经退行性疾病中基于线粒体的细胞死亡机制提供了第一个证据。

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