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首页> 外文期刊>Journal of Microencapsulation: Microcapsules Liposomes Nanoparticles Microcells Microspheres >Nano-encapsulation of curcumin using soy protein hydrolysates-tannic acid complexes regulated by photocatalysis:a study on the storage stability and in vitro release
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Nano-encapsulation of curcumin using soy protein hydrolysates-tannic acid complexes regulated by photocatalysis:a study on the storage stability and in vitro release

机译:用光催化调节大豆蛋白水解酸盐复合物的纳米蛋白染色姜黄素 - 储存稳定性和体外释放的研究

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Purpose:To evaluate the feasibility of soy protein hydrolysates(SPH)-tannic acid(TA)complex nanoparticle obtained by photocatalysis(SPH-T(P))to construct curcumin(Cur)delivery vehicles.Methods:The interaction behaviour of SPH-T(P)was investigated using Fourier transform infra-red,X-ray diffraction and differential scanning calorimeter analyzes.Formation and stability of the complexes were characterised by particle size,morphology,zeta potential,and in vitro release.Results:Negatively charged Cur-loaded complex with small size(<100nm),spherical cluster shape and uniform size distribution were formed through the driving force of electrostatic attraction,followed by hydrogen bonding.The presence of photocatalysis in the complexes significantly improved the storage stability and in vitro sustained release of curcumin by enhancing the hydrogen bonding,hydrophobic effects and π-π stacking interactions between SPH and TA.Conclusion:SPH-T(P)would be a useful and promising delivery vehicle for encapsulating,protecting,and delivering hydrophobic nutraceuticals.
机译:目的:评价通过光催化(SPH-T(P))获得的大豆蛋白水解酸盐(SPH) - 亚烷酸(TA)复合纳米粒子构建姜黄素(CUR)递送车辆。SPH-T的相互作用行为(P)使用傅里叶变换红外,X射线衍射和差示扫描量热计分析进行研究。粒径,形态,Zeta电位和体外释放的表征复合物的变形和稳定性。结果:带负电通过静电吸引力的驱动力形成具有小尺寸(<100nm),球形簇形状和均匀尺寸分布的装载复合物,然后通过氢键形成。复合物中的光催化存在显着提高了储存稳定性和体外持续释放通过增强SPH和Ta的氢键,疏水效应和π-π堆叠相互作用来增强姜黄素。结论:SPH-T(P)是一种有用和有前途的递送车辆封装,保护和提供疏水性营养保健品。

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