Wheeler David, Bandaru Veera Venkata Ratnam, Calabresi Peter A, Nath Avindra, Haughey Norman J
Department of Neurology, Richard T Johnson Division of Neuroimmunology and Neurological Infections, The Johns Hopkins University School of Medicine, Baltimore, MD 21287, USA.
Brain. 2008 Nov;131(Pt 11):3092-102. doi: 10.1093/brain/awn190. Epub 2008 Sep 4.
Maintaining the appropriate complement and content of lipids in cellular membranes is critical for normal neural function. Accumulating evidence suggests that even subtle perturbations in the lipid content of neurons and myelin can disrupt their function and may contribute to myelin and axonal degradation. In this study, we determined the composition and quantified the content of lipids and sterols in normal appearing white matter (NAWM) and normal appearing grey matter (NAGM) from control and multiple sclerosis brain tissues by electrospray ionization tandem mass spectrometry. Our results suggest that in active-multiple sclerosis, there is a shift in the lipid composition of NAWM and NAGM to a higher phospholipid and lower sphingolipid content. We found that this disturbance in lipid composition was reduced in NAGM but not in NAWM of inactive-multiple sclerosis. The pattern of disturbance in lipid composition suggests a metabolic defect that causes sphingolipids to be shuttled to phospholipid production. Modelling the biophysical consequence of this change in lipid composition of NAWM indicated an increase in the repulsive force between opposing bilayers that could explain decompaction and disruption of myelin structure.
维持细胞膜中脂质的适当补充和含量对于正常神经功能至关重要。越来越多的证据表明,即使神经元和髓磷脂的脂质含量发生细微扰动,也会破坏其功能,并可能导致髓磷脂和轴突降解。在本研究中,我们通过电喷雾电离串联质谱法测定了对照和多发性硬化症脑组织中正常外观白质(NAWM)和正常外观灰质(NAGM)中脂质和固醇的组成并对其含量进行了量化。我们的结果表明,在活动性多发性硬化症中,NAWM和NAGM的脂质组成向更高的磷脂含量和更低的鞘脂含量转变。我们发现,这种脂质组成的紊乱在非活动性多发性硬化症的NAGM中有所减轻,但在NAWM中没有。脂质组成的紊乱模式表明存在一种代谢缺陷,导致鞘脂被转运用于磷脂生成。对NAWM脂质组成变化的生物物理后果进行建模表明,相对双层之间的排斥力增加,这可以解释髓磷脂结构的松散和破坏。