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首页> 外文期刊>Archives of Biochemistry and Biophysics >Redox status, inflammation, necroptosis and inflammasome as indispensable contributors to high fat diet (HFD)-induced neurodegeneration; Effect of N-acetylcysteine (NAC)
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Redox status, inflammation, necroptosis and inflammasome as indispensable contributors to high fat diet (HFD)-induced neurodegeneration; Effect of N-acetylcysteine (NAC)

机译:氧化还原状态,炎症,坏死和炎症是高脂肪饮食(HFD)的不可或缺的贡献者 - 诱导神经变性; N-乙酰半胱氨酸(NAC)的影响

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摘要

Adequate dietary intake has a crucial effect on brain health. High fat diet (HFD) rich in saturated fatty acids is linked to obesity and its complications as neurodegeneration via inducing oxidative stress and inflammation. The present study aimed to evaluate the effect of HFD on cerebral cortex in addition to shedding the light on the modulatory role of N-acetylcytsteine (NAC) and its possible underlying biochemical and molecular mechanisms. Twenty eight male Wistar rats were equally and randomly divided into four groups. Group III, and group IV were fed on HFD (45% kcal from fat) for 10 weeks. Group II and group IV were treated with NAC in a dose of 150 mg/kg body weight via intraperitoneal route. Body weight, blood glucose, serum insulin, insulin resistance index, cerebral cortex redox and inflammatory status were evaluated. Cerebral cortex receptor-interacting serine/threonine-protein kinase3 (RIPK3), mixed-lineage kinase domain-like protein (MLKL), nod like receptor protein 3 (NLRP3), interleukin (IL)-18 levels were determined by immunoassay. In addition, apoptosis-associated speck-like proteins (ASC) expression by real-time PCR; inducible nitric oxide synthase (iNOS), glial fibrillary activating protein (GFAP) and matrix metalloproteinase-9 (MMP-9) expression by immunohistochemistry were evaluated. NAC supplementation protected against HFD-induced gain of weights, hyperglycemia, and insulin resistance. Furthermore, NAC improved redox and inflammatory status; decreased levels of RIPK3, MLKL, NLRP3, IL-18; down-regulated ASC, iNOS, GFAP and MMP-9 expression; and decreased myeloperoxidase activity in cerebral cortex. NAC could protect against HFD-induced neurodegeneration via improving glycemic status and peripheral insulin resistance, disrupting oxidative stress/neuroinflammation/necroptosis/inflammasome activation axis in cerebral cortex. NAC may represent a promising strategy for conserving brain health against metabolic diseases-induced neurodegeneration.
机译:充足的饮食摄入对脑健康有至关重要的影响。富含饱和脂肪酸的高脂饮食(HFD)与肥胖及其并发症有关,通过诱导氧化应激和炎症与神经变性的并发症相关联。本研究旨在评估HFD对脑皮质对脑皮质的影响,除了脱光对N-乙酰胞嘧啶(NAC)的调节作用及其潜在的生物化学和分子机制的调节作用。二十八只雄性Wistar大鼠同样和随机分为四组。 III组和第IV族,喂给HFD(来自脂肪45%Kcal)10周。 II族和第IV组通过腹膜内途径用NAC用NAC处理NAC。评估体重,血糖,血清胰岛素,胰岛素抵抗指数,脑皮质氧化还原和炎症状态。通过免疫测定法测定脑皮质蛋白丝氨酸/苏氨酸 - 蛋白激酶3(RIPK3),混合谱系激酶畴样蛋白(MLK1),NOD,如受体蛋白3(NLRP3),白细胞介素(IL)-18水平。此外,通过实时PCR凋亡相关的斑点蛋白(ASC)表达;评价可诱导型一氧化氮合酶(InOS),胶质纤维激活蛋白(GFAP)和基质金属蛋白酶-9(MMP-9)表达免疫组化学。 NAAC补充保护免受HFD诱导的重量增长,高血糖和胰岛素抵抗。此外,NAC改善了氧化还原和炎症状态;降低裂口水平,MLKL,NLRP3,IL-18;下调ASC,INOS,GFAP和MMP-9表达;在脑皮层中减少髓过氧化物酶活性。 NAC可以通过改善血糖状态和外周胰岛素抗性,破坏氧化应激/神经胰腺炎/死亡/炎症组血活化轴来保护HFD诱导的神经变性。 NAC可代表一种有希望的保护脑健康免受代谢疾病诱发的神经变性的策略。

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