不同均质次数SPI-维生素D3纳米粒子结构与性质研究
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黑龙江省“百千万”工程科技重大专项(2019ZX08B01)和国家大豆产业技术体系项目(CARS-04-PS28)


Structure and Properties of Soy Protein Isolate-Vitamin D3 Nano-particles Complex under Different Homogenization Times
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    摘要:

    为了提高维生素D3的光稳定性,采用高压均质技术制备大豆分离蛋白(SPI)-维生素D3纳米粒子,研究了均质次数对SPI-维生素D3纳米粒子中SPI结构和维生素D3光稳定性的影响。结果表明:与对照样品相比,高压均质2次时,SPI-维生素D3纳米粒子负载率提高了27.7%,平均粒径由145.20nm减小至82.00nm,浊度逐渐减小,粒径分布更均一;SPI-维生素D3纳米粒子中SPI的表面疏水性增大,内源荧光光谱荧光强度增强;傅里叶红外光谱结果显示,高压均质后SPI-维生素D3纳米复合物的二级结构发生改变,当均质次数不超过2次时,α螺旋和β折叠逐渐转变成β转角,均质次数为3、4次时,样品发生了不溶性聚集;经过2次高压均质处理后,样品中维生素D3的光稳定性显著提高,与对照样品相比,紫外线照射4h后维生素D3的质量分数提高了166.6%。本研究表明,采用高压均质技术制备SPI-维生素D3纳米粒子是提高维生素D3光稳定性的有效方法。

    Abstract:

    In order to improve the light stability of vitamin D3 (VD3), the soy protein isolatevitamin (SPI-VD3) nanoparticles were prepared by high pressure homogenization. The influences of homogenization times on the SPI structure and VD3 light stability in SPI-VD3 nanoparticles were investigated. The results showed that when the times of high pressure homogenization was 2, compared with the sample without high pressure homogenization, the loading efficiency of SPI-VD3 nanoparticles was increased to 27.7%; the average particle size was reduced from 145.20nm to 82.00nm, the turbidity was gradually decreased and the particle size distribution was more uniform. Two times highpressure homogenization can increase the hydrophobicity of the surface of the SPI-VD3 nanoparticles and enhance the fluorescence intensity of the endogenous fluorescence spectrum. The results of Fourier transform infrared spectroscopy showed that the secondary structure of SPI-VD3 nanoparticles was changed after high pressure homogenization. When the number of homogenization times did not exceed 2, αhelix and βfold were gradually changed into βturn. When the number of times were 3 or 4, the sample may undergo insoluble aggregation. After twice highpressure homogenization, the photostability of VD3 in the sample was also improved. Compared with the VD3 control alone, the remaining amount of VD3 was increased to 166.6% after four hours of UV irradiation. Proper highpressure homogenization was a useful method for making SPI-VD3 nanoparticles with improved VD3 photostability. 

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王喜波,陈爽,孙立娜,江连洲.不同均质次数SPI-维生素D3纳米粒子结构与性质研究[J].农业机械学报,2020,51(12):341-347. WANG Xibo, CHEN Shuang, SUN Li’na, JIANG Lianzhou. Structure and Properties of Soy Protein Isolate-Vitamin D3 Nano-particles Complex under Different Homogenization Times[J]. Transactions of the Chinese Society for Agricultural Machinery,2020,51(12):341-347.

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  • 收稿日期:2019-12-29
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  • 在线发布日期: 2020-12-10
  • 出版日期: 2020-12-10