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Docosahexaenoic Acid and Its Derivative Neuroprotectin D1 Display Neuroprotective Properties in the Retina, Brain and Central Nervous System

机译:二十二碳六烯酸及其衍生物神经保护菌素D1显示视网膜,脑和中枢神经系统的神经保护性能

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The significance of the selective enrichment in omega-3 essential fatty acids (docosa-hexaenoyl - DHA - chains of membrane phospholipids, 22C and 6 double bonds) in the nervous system (e.g. synaptic membranes and dendrites) has remained, until recently, incompletely understood. While studying mechanisms of neuronal survival, we contributed to the discovery of a docosanoid synthesized by 15-lipoxygenase-1 from DHA, which we dubbed neuroprotectin D1 (NPD1;10R,17S-dihydroxy-docosa-4Z,7Z,11E,13E,15E,19Z hexaenoic acid). NPD1 is a docosanoid because it is derived from a 22C precursor (DHA), unlike eicosanoids, which are derived from the 20C arachidonic acid family of essential fatty acids not enriched in the nervous system. We found that NPD1 is promptly made in response to oxidative stress, seizures and brain ischemia-reperfusion. NPD1 is neuroprotective in experimental brain damage, retinal pigment epithelial cells, and in human brain cells. Thus, NPD1 acts as a protective sentinel, one of the very first defenses activated when cell homeostasis is threatened by neurodegenerations. NPD1 also has been shown to have a specificity and potency that provides beneficial bioactivity during initiation and early progression of neuronal and retinal degenerations, epilepsy and stroke. In short, NPD1 regulation promotes homeostatic regulation of neural circuitry integrity.
机译:在神经系统(例如突触膜和树突)中,ω-3必需脂肪酸(Docosa-hexaenoyl - Dha-Chains,22℃和6双键)的选择性富集的意义仍然存在,直至最近,直到最近,不完全理解。在研究神经元存活机制的同时,我们为从DHA中的15-脂氧合酶-1的生物组合成的多糖烷的发现有助于,我们被称为神经保护菌素D1(NPD1; 10R,17S-二羟基 - Docosa-4z,7z,11e,13e,15e ,19z六烯酸)。 NPD1是多糖烷,因为它来自22℃前体(DHA),与唾液醇不同,其衍生自未富集神经系统的必需脂肪酸的20C花生酸系列。我们发现迅速响应于氧化应激,癫痫发作和脑缺血再灌注而迅速制备NPD1。 NPD1是在实验脑损伤,视网膜颜料上皮细胞和人脑细胞中的神经保护性。因此,NPD1用作保护哨,当细胞稳态受到神经变性的威胁时激活的第一防御之一。 NPD1也已被证明具有特异性和效力,可在神经元和视网膜堕落,癫痫和中风的开始和早期进展期间提供有益的生物活性。简而言之,NPD1调节促进神经电路完整性的稳态调节。

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