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首页> 外文期刊>Artificial cells, nanomedicine, and biotechnology. >Fabrication of peptide-linked albumin nanoconstructs for receptor-mediated delivery of asiatic acid to the brain as a preventive measure in cognitive impairment: optimization, in-vitro and in-vivo evaluation
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Fabrication of peptide-linked albumin nanoconstructs for receptor-mediated delivery of asiatic acid to the brain as a preventive measure in cognitive impairment: optimization, in-vitro and in-vivo evaluation

机译:肽连接的白蛋白纳米簇的制备用于受体介导的Asiatic酸与大脑的递送作为认知障碍的预防措施:优化,体外和体内评价

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The aim of the study was to evaluate the neuroprotective activity of glutathione (GU)-conjugated asiatic acid (AA) loaded albumin nanoparticles and establishing the drug targeting efficiency (DTE) of GU as a selective ligand for brain-targeted delivery. Albumin nanoparticles were prepared by desolvation technique and optimized using quality by design (QbD) approach. GU was conjugated with nanoparticles by carbodiimide reaction and characterized by its size and zeta potential using dynamic light scattering phenomenon. Dialysis bag technique was employed for in-vitro release study and in-vivo brain targeting efficiency was evaluated in Sprague-Dawley rats (75 mg/kg, i.p.). Neuroprotective activity was evaluated against scopolamine-induced dementia in rats. Resultant brain bioavailability of nanoparticles with 100.2 nm size and 71.59% entrapment efficiency (EE), was found 7-fold higher than AA dispersion with 293% DTE for the brain. Conjugated nanoparticles showed significantly high percentage correct alternation (p.05), low escape latency time (p.01), cholinesterase inhibition (p.01) and ameliorated GU levels (p.01) as compared to diseased animals. GU showed potential to enhance the brain delivery of AA with ameliorated neuroprotective activity due to enhanced bioavailability. This concept can serve as a platform technology for similar potential neurotherapeutics, whose clinical efficacy is still challenging owing to poor bioavailability.
机译:该研究的目的是评估谷胱甘肽(GU) - 缀合的亚胺酸(AA)加载的白蛋白纳米颗粒的神经保护活性,并建立谷物的药物靶向效率(DTE)作为脑靶向递送的选择性配体。通过去溶剂化技术制备白蛋白纳米粒子,并通过设计(QBD)方法使用质量进行优化。 Gu通过碳二亚胺反应与纳米颗粒缀合,并使用动态光散射现象的尺寸和Zeta电位特征。在Sprague-Dawley大鼠(75mg / kg,i.p.)中评价透析袋技术用于体外释放研究,并在Sprague-Dawley大鼠(75mg / kg,i.p.)中评价体内脑靶向效率。评估了对大鼠的CoCopolamine诱导的痴呆评估了神经保护活性。由100.2nm尺寸和71.59%的血管血管效率(EE)产生纳米颗粒的脑生物利用度7倍,高于AA分散,脑的293%DTE。缀合的纳米颗粒显示出明显高的百分比正确的交替(P <.05),低逃逸潜伏时间(P <.01),与患病动物相比,胆碱酯酶抑制(P <.01)和改善的um水平(p <.01)。由于增强的生物利用度,GU显示出具有改善的神经保护活动的AA脑递送的潜力。这一概念可以作为类似潜在的神经治疗的平台技术,由于生物利用度差,其临床疗效仍在挑战。

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