首页> 外文期刊>Future Journal of Pharmaceutical Sciences >Potentiation of nootropic activity of EGCG loaded nanosuspension by piperine in swiss male albino mice
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Potentiation of nootropic activity of EGCG loaded nanosuspension by piperine in swiss male albino mice

机译:胡椒碱对瑞士雄性白化病小鼠的促EGCG纳米悬浮液的促智活性的增强作用

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The present study deals with preparation of nanoformulations of epigallocatchin gallate (EGCG) alone and with piperine, and evaluation ofin vivocognitive effect on Swiss albino male mice. EGCG (25?mg) was nanoencapsulated into a biocompatible and biodegradable protein nanocarrier, zein and was also separately nanoencapsulated with piperine (5?mg), a bioenhancer. Anti-solvent precipitation method was used for formulation of EGCG loaded nanosuspension and EGCG-Piperine nanocomplex. EGCG loaded nanosuspension (25?mg?kg?1) and EGCG-Piperine nanocomplex (25?mg?kg?1) were administered per se to mice for 3 successive weeks. The behaviour models i.e. Elevated plus maze and Morris water maze were used for assessing the cognitive behaviour. The influence of various drug treatments on locomotor activity of mice was also studied. The mice were sacrificed on 21st day followed by estimation of brain acetylcholinesterase activity. The significant reversion in scopolamine-induced amnesia in mice was observed after administration of EGCG loaded nanosuspension (25?mg?kg?1) and EGCG-Piperine nanocomplex (25?mg?kg?1). A significant reduction in brain acetylcholinesterase level in mice was observed after the administration of physostigmine (0.1?mg?kg?1), EGCG loaded nanosuspension (25?mg?kg?1) and EGCG-Piperine nanocomplex (25?mg?kg?1). The oral administration of EGCG loaded nanosuspension for three successive weeks significantly improved cognitive behaviour in mice; and piperine potentiated the cognitive effect of EGCG loaded nanosuspension. Further, EGCG loaded nanosuspension showed improved cognitive behaviour in mice probably through inhibition of brain acetylcholinesterase activity, and facilitation of cholinergic pathways.
机译:本研究涉及表没食子儿茶素没食子酸酯(EGCG)的纳米制剂的制备和胡椒碱,以及对瑞士白化病雄性小鼠体内认知作用的评估。将EGCG(25?mg)纳米囊封在生物相容性和可生物降解的蛋白质纳米载体玉米醇溶蛋白中,还分别用生物增强剂胡椒碱(5?mg)纳米囊封。用抗溶剂沉淀法制备了负载EGCG的纳米悬浮液和EGCG-哌啶纳米复合物。连续3周向小鼠本身施用负载有EGCG的纳米悬浮液(25μg·kg·kg-1)和EGCG-哌啶纳米复合物(25μg·kg·kg-1)。行为模型,即高架迷宫和莫里斯水迷宫被用于评估认知行为。还研究了各种药物治疗对小鼠运动能力的影响。在第21天处死小鼠,然后评估脑乙酰胆碱酯酶活性。给予EGCG纳米悬浮液(25?mg?kg?1)和EGCG-Piperine纳米复合物(25?mg?kg?1)后,观察到东induced碱引起的小鼠失忆显着逆转。施用毒扁豆碱(0.1?mg?kg?1),负载EGCG的纳米悬浮液(25?mg?kg?1)和EGCG-Piperine纳米复合物(25?mg?kg?1)后,小鼠的大脑乙酰胆碱酯酶水平显着降低。 1)。连续三周口服EGCG纳米悬浮液口服可显着改善小鼠的认知行为。和胡椒碱增强了EGCG纳米悬浮液的认知作用。此外,负载EGCG的纳米悬浮液可能通过抑制脑乙酰胆碱酯酶活性和促进胆碱能途径而改善了小鼠的认知行为。

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