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Lipids: An insight into the neurodegenerative disorders

机译:脂质:神经退行性疾病的见解

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Brain development is a sequential anatomical process characterised by specific well-defined stages of growth and maturation. One of the fundamental and necessary events in the normal development of the central nervous system in vertebrates is the formation of a myelin sheath. This process is influenced by dietary lipids. A number of researches have indicated that the administration of a diet, deficient in essential fatty acids during development causes hypomyelination in the brain. Brain lipids determine the localization and function of proteins in the cell membrane and in doing so regulate synaptic signalling in neurons. Lipids may also function as transmitters and relay signals from the membrane to intracellular compartments or to other cells. Several experimental studies have suggested a crucial role of n-3 polyunsaturated fatty acids in membrane formation, as well as clinical role of glycerolipids, glycerophospholipids, and sphingolipids in the attenuation of depression- and anxiety-related behaviours. Hence it can be assumed that polyunsaturated fatty acids may also offer new treatment options (for example, targeted dietary supplementation or pharmacological interference with lipid-regulating enzymes). These lipids could be exploited for improved prevention and treatment. A very interesting and emerging approach in this direction is through ‘Lipidomics’ which is a relatively recent research field that has been driven by rapid advances in technologies such as mass spectrometry (MS), nuclear magnetic resonance (NMR) spectroscopy, fluorescence spectroscopy, dual polarisation interferometry and computational methods, coupled with the recognition of the role of lipids in many metabolic diseases such as obesity, atherosclerosis, stroke, hypertension and diabetes.
机译:脑部发育是一个顺序的解剖过程,其特征是特定的明确定义的生长和成熟阶段。脊椎动物中枢神经系统正常发育的基本和必要事件之一是髓鞘的形成。该过程受饮食脂质的影响。大量研究表明,在发育过程中缺乏必需脂肪酸的饮食会引起大脑髓鞘减少。脑脂质决定蛋白质在细胞膜中的定位和功能,并以此调节神经元中的突触信号传导。脂质还可以充当传输器,并将信号从膜传递到细胞内区室或其他细胞。多项实验研究表明,n-3多不饱和脂肪酸在膜形成中起着至关重要的作用,以及甘油脂,甘油磷脂和鞘脂在减轻抑郁和焦虑相关行为中的临床作用。因此,可以假设多不饱和脂肪酸也可能提供新的治疗选择(例如,有针对性的饮食补充或对脂质调节酶的药理干预)。这些脂质可用于改善预防和治疗。朝着这个方向发展的一种非常有趣且新兴的方法是通过“ Lipidomics”,这是一个相对较新的研究领域,受到诸如质谱(MS),核磁共振(NMR)光谱,荧光光谱,双重质谱等技术的快速发展的推动。极化干涉测量和计算方法,再加上脂质在许多代谢性疾病(例如肥胖症,动脉粥样硬化,中风,高血压和糖尿病)中的作用的认识。

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