首页> 美国卫生研究院文献>Journal of Neurotrauma >Brain Phospholipid Precursors Administered Post-Injury Reduce Tissue Damage and Improve Neurological Outcome in Experimental Traumatic Brain Injury
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Brain Phospholipid Precursors Administered Post-Injury Reduce Tissue Damage and Improve Neurological Outcome in Experimental Traumatic Brain Injury

机译:脑磷脂前体损伤后减少实验创伤性脑损伤的组织损伤和改善神经系统的结果。

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摘要

Traumatic brain injury (TBI) leads to cellular loss, destabilization of membranes, disruption of synapses and altered brain connectivity, and increased risk of neurodegenerative disease. A significant and long-lasting decrease in phospholipids (PLs), essential membrane constituents, has recently been reported in plasma and brain tissue, in human and experimental TBI. We hypothesized that supporting PL synthesis post-injury could improve outcome post-TBI. We tested this hypothesis using a multi-nutrient combination designed to support the biosynthesis of PLs and available for clinical use. The multi-nutrient, Fortasyn® Connect (FC), contains polyunsaturated omega-3 fatty acids, choline, uridine, vitamins, cofactors required for PL biosynthesis, and has been shown to have significant beneficial effects in early Alzheimer's disease. Male C57BL/6 mice received a controlled cortical impact injury and then were fed a control diet or a diet enriched with FC for 70 days. FC led to a significantly improved sensorimotor outcome and cognition, reduced lesion size and oligodendrocyte loss, and it restored myelin. It reversed the loss of the synaptic protein synaptophysin and decreased levels of the axon growth inhibitor, Nogo-A, thus creating a permissive environment. It decreased microglia activation and the rise in ß-amyloid precursor protein and restored the depressed neurogenesis. The effects of this medical multi-nutrient suggest that support of PL biosynthesis post-TBI, a new treatment paradigm, has significant therapeutic potential in this neurological condition for which there is no satisfactory treatment. The multi-nutrient tested has been used in dementia patients and is safe and well tolerated, which would enable rapid clinical exploration in TBI.
机译:创伤性脑损伤(TBI)导致细胞丢失,膜不稳定,突触破坏和脑部连接性改变,以及神经退行性疾病的风险增加。最近在人和实验性TBI中,血浆和脑组织中已经报道了必需的膜成分磷脂(PLs)显着且持久的减少。我们假设支持创伤后PL合成可以改善TBI后的结局。我们使用旨在支持PL的生物合成且可用于临床的多种营养组合测试了这一假设。多元营养素Fortasyn ® Connect(FC)包含PL生物合成所需的多不饱和omega-3脂肪酸,胆碱,尿苷,维生素,辅因子,并且在早期已显示出显着的有益作用阿尔茨海默氏病。雄性C57BL / 6小鼠受到可控的皮质撞击损伤,然后接受对照饮食或富含FC的饮食70天。 FC可显着改善感觉运动结局和认知,减少病变大小和少突胶质细胞损失,并恢复髓磷脂。它逆转了突触蛋白突触素的丧失,降低了轴突生长抑制剂Nogo-A的水平,从而创造了一个宽松的环境。它减少了小胶质细胞的活化和β-淀粉样蛋白前体蛋白的升高,并恢复了神经抑制作用。这种医学上的多种营养素的作用表明,TBI后PL生物合成的支持是一种新的治疗范例,在这种神经系统疾病中,尚无令人满意的治疗方法,具有巨大的治疗潜力。经测试的多种营养素已用于痴呆症患者,并且安全且耐受性良好,这将有助于TBI的快速临床探索。

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