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Curcumin loaded self assembled lipid-biopolymer nanoparticles for functional food applications

机译:姜黄素负载型自组装脂质-生物聚合物纳米颗粒用于功能性食品

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摘要

The supramolecular nano-assemblies formed by electrostatic interactions of two oppositely charged lipid and polymer have been made and used as nanocarriers for curcumin to address its bioavailability and solubility issues. These curcumin encapsulated nano-supramolecular assemblies were characterized with respect to their size (dynamic light scattering), morphology (TEM, SEM), zeta potential (Laser Doppler Velocimetry), encapsulation efficiency (EE), curcumin loading (CL) etc. Stability of the nano-assemblies was assessed at different storage times as a function of varying pH and temperature. The physicochemical characterization of nano-assemblies was performed using Fourier Transform Infra Red Spectroscopy (FT-IR) and Differential Scanning Calorimetry (DSC). The in-vitro antioxidant lipid peroxidation (TBARS), radical scavenging (DPPH, NO, H2O2, reducing power) activity assays of powdered curcumin and nano-encapsulated curcumin were performed. It was found that nano-encapsulated curcumin were roughly spherical in shape, presented high positive zeta potential (>30 mV), monodisperse (polydispersity index <0.3), amorphous in nature, stable in the pH range of 2–6 and have enhanced antioxidant potency in comparison to crystalline curcumin in aqueous media. In conclusion, the curcumin encapsulated nanocarriers system has great potential as functional food ingredient of natural origin.
机译:由两种带相反电荷的脂质和聚合物的静电相互作用形成的超分子纳米组装体已经制成,并用作姜黄素的纳米载体,以解决其生物利用度和溶解度问题。这些姜黄素封装的纳米超分子组件的尺寸(动态光散射),形态(TEM,SEM),ζ电位(激光多普勒测速),封装效率(EE),姜黄素载量(CL)等方面进行了表征。根据不同的pH和温度,在不同的存储时间对纳米组件进行了评估。使用傅立叶变换红外光谱(FT-IR)和差示扫描量热法(DSC)对纳米组件进行理化表征。进行了姜黄素粉末和纳米胶囊姜黄素的体外抗氧化剂脂质过氧化(TBARS),自由基清除(DPPH,NO,H2O2,还原力)活性测定。发现纳米胶囊封装的姜黄素呈大致球形,呈高正ζ电势(> 30 mV),单分散(多分散指数<0.3),性质无定形,在2-6的pH范围内稳定,抗氧化剂增强与结晶姜黄素在水性介质中的效力相比。总之,姜黄素包裹的纳米载体系统作为天然食品的功能性食品成分具有巨大潜力。

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