首页> 外文期刊>International Journal of Nanomedicine >Novel piperine-loaded Tween-integrated monoolein cubosomes as brain-targeted oral nanomedicine in Alzheimer’s disease: pharmaceutical, biological, and?toxicological studies
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Novel piperine-loaded Tween-integrated monoolein cubosomes as brain-targeted oral nanomedicine in Alzheimer’s disease: pharmaceutical, biological, and?toxicological studies

机译:新型哌啶加载的吐温整合的单烯醇委员会是阿尔茨海默病的脑靶向口腔纳米胺:药物,生物学,毒性和毒理学研究

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Abstract: Alzheimer’s disease (AD) is one of the most patient devastating central nervous system diseases with no curative therapy. An effective oral therapy with brain-targeting potential is required that is hampered by blood–brain barrier. Piperine (PIP) is a natural alkaloid with memory enhancing potentials. Oral PIP delivery suffers from its hydrophobicity and first-pass metabolism. In this study, novel Tween-modified monoolein cubosomes (T-cubs) were elaborated as bioactive nanocarriers for brain-targeted oral delivery of PIP. Seven liquid crystalline nanoparticles (cubosomes) were prepared testing different bioactive surfactants (Tween 80, poloxamer, and Cremophor). Full in?vitro characterization was carried out based on particle size, zeta potential, polydispersity index, entrapment efficiency, and in vitro release. Morphological examination and structure elucidation were performed using transmission and polarizing microscopes. Sporadic dementia of Alzheimer’s type was induced in 42 male Wistar rats on which full behavioral and biochemical testing was conducted. Brain toxicity was assessed based on Caspase-3 assay for apoptosis and tumor necrosis factor-α for inflammation. Liver and kidney toxicity studies were conducted as well. Among others, T-cubs exhibited optimum particle size (167.00±10.49 nm), polydispersity index (0.18±0.01), and zeta potential (-34.60±0.47 mv) with high entrapment efficiency (86.67%±0.62%). Cubs could significantly sustain PIP in vitro release. In vivo studies revealed T-cubs potential to significantly enhance PIP cognitive effect and even restore cognitive function to the normal level. Superiority of T-cubs over others suggested brain-targeting effect of Tween. Toxicological studies contended safety of cubs on kidney, liver, and even brain. T-cubs exhibited potential anti-inflammatory and anti-apoptotic activity of loaded PIP, indicating potential to stop AD progression that was first suggested in this article. Novel oral nanoparticles elaborated possess promising in vitro and in vivo characteristics with high safety for effective chronic treatment of AD.
机译:摘要:Alzheimer的疾病(广告)是最患有没有治疗疗法的患者最具损害的中枢神经系统疾病之一。需要具有脑靶向潜力的有效口服疗法,这是由血脑屏障阻碍的。哌啶(PIP)是一种具有内存增强电位的天然生物碱。口服皮点递送患有其疏水性和首先通过代谢。在该研究中,新颖的补间改性的单烯醇型缔约肌(T-CUBS)被阐述为生物活性纳米载体,用于脑靶向口服递送的pIP。制备七种液晶纳米颗粒(立方体)检测不同的生物活性表面活性剂(吐温80,泊洛沙姆和碎屑)。全体外表征基于粒度,ζ电位,多分散性指数,夹带效率和体外释放进行。使用透射和偏振显微镜进行形态检查和结构阐明。阿尔茨海默氏症类型的散发性痴呆症在42只雄性Wistar大鼠中诱导,进行全行为和生化测试。基于Caspase-3测定评估脑毒性的脑血酶-3用于炎症的凋亡和肿瘤坏死因子-α进行评估。还进行了肝肾毒性研究。其中,T-CUBS表现出最佳的粒度(167.00±10.49nm),多分散指数(0.18±0.01)和Zeta电位(-34.60±0.47mV),具有高血管效率(86.67%±0.62%)。幼崽可显着维持体外释放点。在体内研究表明,T-Cubs潜力显着增强了患者的潜水效果,甚至将认知功能恢复到正常水平。 T-Cubs对他人的优越性提出了吐温的脑靶向效果。毒理学研究呈幼崽对肾脏,肝脏甚至大脑的安全性。 T-Cubs表现出潜在的抗炎和抗凋亡活性的载荷点,表明阻止本文首次建议的广告进展的潜力。新型口腔纳米颗粒阐述的体外具有很有希望的和体内特征,具有高安全性,以获得AD的有效慢性治疗。

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