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1)  Aluminum overload
铝负荷
1.
Conclusions These results suggest that caffeic acid has an obvious protective effect against neuronal damage induced by aluminum overload in primary cultured neurons.
L-1)、铝负荷模型组(AlCl3200μmol。
2)  Aluminum overload
铝过负荷
1.
Method:Aluminum overload models were established by injection of 3μl AlCl3 into lateral ventricle of miceeach day for 5d.
5%的AlCl3 3μl,连续给药5天,建立不同量铝过负荷致脑损伤小鼠模型。
2.
Objective To study the protective effects and mechanisms of meloxicam on neurodegeneration induced by chronic aluminum overload in rats.
目的:观察美洛昔康对慢性铝过负荷致大鼠神经元退变的保护作用及其机制。
3)  aluminum-overload
铝过负荷
1.
Protection and mechanism of berberine against chronic brain injury induced by aluminum-overload in rats;
小檗碱对铝过负荷致小鼠慢性脑损伤的保护作用及机制
2.
Animal model:Aluminum-overloaded model was established by intragastric administration of aluminum gluconate(equal to Al 400 mg/kg)to mice once a day,5 times per week,for 12 weeks.
目的:观察在铝过负荷致小鼠脑神经元退行性变时程中小鼠大脑内Cu-Zn SOD酶蛋白表达量、活性变化以及与酶蛋白相关金属离子水平变化规律,分析铝过负荷致神经元退行性变的可能机制。
4)  aluminum overload
铝超负荷
1.
Effect of meloxicam on cyclooxygenase 2 expression of chronic aluminum overload-induced nerve degenaration in rat hippocampus
美洛昔康对慢性铝超负荷致神经元退变大鼠海马环氧化酶2表达的影响
5)  Aluminum-overload rat
铝负荷大鼠
6)  chronic aluminum overload
慢性铝过负荷
1.
Neurotoxicity of chronic aluminum overload and protective effects of nimodipine in rats;
慢性铝过负荷致大鼠认知功能损伤及尼莫地平保护作用观察
2.
Effects of caffeic acid on brain damage induced by chronic aluminum overload in rats
咖啡酸对慢性铝过负荷致大鼠脑损伤的保护作用
3.
Conclusion Administration of caffeic acid could prevent the rat brain from damage induced by chronic aluminum overload.
方法灌胃给予大鼠葡萄糖酸铝(A l3+200mg/kg),1次/d,5d/周,持续20周,建立慢性铝过负荷致大鼠脑损伤AD动物模型;咖啡酸(40mg/kg、10mg/kg)分别在每次大鼠铝给予1h后灌胃。
补充资料:135kA中间下料预焙阳极铝电解槽(抚顺铝厂)


135kA中间下料预焙阳极铝电解槽(抚顺铝厂)


赢 135kA中间下料预焙阳极铝电解槽(抚顺铝厂)
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