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Development and in vitro evaluation of Strawberry fruit extract loaded biodegradable nanoparticles in therapy for neurodegenerative disorders

机译:草莓水果提取物的开发和体外评价载有可生物降解的纳米粒子治疗神经变性障碍

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The objective of this study was to prepare PLGA nanoparticles of ethanolic extract of Strawberry (Nano-STE) that will improve the bioavailability and sustained release of phytomedicines and to prolong the neuroprotective effect of the phytodrug. The ethanolic fruit extract of Strawberry (STE) was encapsulated by nanoprecipitation method deploying a biodegradable poly-(lactic-co-glycolic) acid (PLGA). Prepared nanoparticles were examined for physicochemical characteristics, in vitro release studies and in vivo biodistribution studies. Minimum size of the nanopartilces was in the range of 125 nm for the microspheres made of (5∶2) PLGA to STE ratio. The drug encapsulation efficiency was 63.74 % at 20% drug loading. In vitro cumulative release from the nanoparticles was 71.76% at the end of 18days. In vivo biodistribution studies in Zebra fishes revealed that these particles are distributed in brain, liver; Ovary and gills at higher concentrations may allow their delivery to target sites.
机译:本研究的目的是制备草莓(纳米STE)的乙醇提取物的PLGA纳米颗粒,其将改善生物利用度和植物细胞的持续释放,并延长植物细胞的神经保护作用。草莓(STE)的乙醇水果提取物通过纳米沉淀方法包封,纳米沉淀方法展开可生物降解的聚(乳酸 - 共乙醇酸)酸(PLGGA)。检查制备的纳米颗粒用于物理化学特征,体外释放研究和体内生物分布研究。纳米颗粒的最小尺寸在125nm的范围为(5:2)PLGA至STE比率。药物包封效率为20%药物载荷为63.74%。 18天的纳米颗粒中的体外累积释放为71.76%。在斑马鱼的体内生物分布研究中,揭示这些颗粒在脑中分布,肝脏;卵巢和较高浓度的鳃可能允许它们向靶位点提供。

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