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首页> 外文期刊>Journal of drug delivery science and technology >Biocompatible PLGA-oil hybrid nanoparticles for high loading and controlled delivery of resveratrol
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Biocompatible PLGA-oil hybrid nanoparticles for high loading and controlled delivery of resveratrol

机译:具有生物相容性的PLGA-油杂化纳米颗粒,可高负载和可控地输送白藜芦醇

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摘要

The art of hybridization has recently emerged as promising strategy to alleviate the limitations associated with PLGA nanoparticles (NPs). The present study reports the development of a hybrid nanosystem by integrating the mechanical advantages of PLGA and high drug encapsulation property of oil into a single system. This hybrid system exhibited core-shell architecture where the oil formed core while PLGA created the outer shell. Several critical factors affecting the formulation of polymer-oil nanohybrids (PONHs) were optimized. The narrow sized (144 nm) PONHs showed remarkable loading capacity (29.2% w/w) and, also showed an improvement in control release capability, antioxidant activity and stability as compared to standard PLGA NPs. Core-shell nature of the PONHs was found a key factor responsible for the improved efficacy. The developed formulations exhibited excellent biocompatibility with normal monkey kidney (Vero) cell lines. The promising results support that PONHs would be a next generation drug delivery system and their strong clinical impact in near future is anticipated. (C) 2015 Elsevier B.V. All rights reserved.
机译:杂交技术最近作为减轻与PLGA纳米颗粒(NPs)相关的局限性的策略而出现。本研究报告了通过将PLGA的机械优势和油的高药物封装特性整合到单个系统中而开发的混合纳米系统。这种混合动力系统表现出核-壳结构,其中油形成核,而PLGA形成外壳。优化了影响聚合物-油纳米复合物(PONH)配方的几个关键因素。与标准PLGA NP相比,窄尺寸(144 nm)的PONH表现出显着的负载能力(29.2%w / w),并且还显示出控制释放能力,抗氧化活性和稳定性方面的改进。发现PONH的核-壳性质是导致功效提高的关键因素。所开发的制剂与正常猴肾(Vero)细胞系表现出优异的生物相容性。令人鼓舞的结果支持PONHs将成为下一代药物输送系统,并且有望在不久的将来对临床产生巨大的影响。 (C)2015 Elsevier B.V.保留所有权利。

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