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首页> 外文期刊>Food Hydrocolloids >Effect of degree of octenyl succinic anhydride (OSA) substitution on the digestion of emulsions and the bioaccessibility of β-carotene in OSA-modified-starch-stabilized-emulsions
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Effect of degree of octenyl succinic anhydride (OSA) substitution on the digestion of emulsions and the bioaccessibility of β-carotene in OSA-modified-starch-stabilized-emulsions

机译:辛烯基琥珀酸酐(OSA)取代度对OSA改性淀粉稳定化乳液中乳液消化和β-胡萝卜素生物可及性的影响

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摘要

The degree of substitution (DS) is one of the most important properties of octenyl succinic anhydride (OSA)-modified starch, in terms of optimizing its functionality in the application of delivery systems for lipophilic bioactive components. This study investigated the effect of the DS of OSA-modified starch on the in vitro digestion behavior and the ss-carotene bioaccessibility in nanoemulsions stabilized by OSA-modified starches. Changes in the particle size and distribution, microstructure, zeta-potential, hydrolysis of the starch, and lipolysis in the emulsions during digestion as well as the bioaccessibility of ss-carotene were determined. All the emulsions remained stable during the mouth stage and their particle size increased significantly after incubation under gastric conditions, with the extent of increase in the particle size being negatively correlated to the DS. Under gastric conditions, the emulsions stabilized by OSA-modified starches with higher DS values had less flocculation and coalescence, which could probably be attributed to the greater steric hindrance of branched amylopectin chains and the greater magnitudes of the negative zeta-potential in the presence of more OSA groups. The more rigid and compact surface structure formed by the OSA-modified starch with higher DS provide better protection against the biochemical conditions in the gastric fluid. When the DS increased from 0.0158 to 0.0416, the bioaccessibility of ss-carotene was enhanced from 8.01 +/- 0.88 to 20.39 +/- 1.93%, which may have been due to a lower extent of starch digestion and a greater extent of lipid digestion in nanoemulsions stabilized by OSA-modified starch with higher DS values.
机译:就在亲脂性生物活性组分的递送系统的应用中优化其功能性而言,取代度(DS)是辛烯基琥珀酸酐(OSA)改性淀粉的最重要特性之一。这项研究调查了OSA改性淀粉的DS对体外消化行为和OSA改性淀粉稳定的纳米乳液中SS胡萝卜素生物可及性的影响。测定了在消化过程中乳状液中粒径和分布,微观结构,ζ电势,淀粉水解和乳化中脂解的变化以及β-胡萝卜素的生物利用度。所有的乳剂在口腔阶段都保持稳定,并且在胃条件下孵育后它们的粒径显着增加,其中粒径的增加程度与DS负相关。在胃条件下,由OSA改性的具有较高DS值的淀粉稳定的乳液具有较少的絮凝和聚结,这可能归因于支链支链淀粉链的较大空间位阻以及在存在H2O的情况下负的Zeta电位较大。更多OSA组。由OSA改性的淀粉和较高的DS形成的刚性和致密的表面结构可更好地保护胃液中的生化条件。当DS从0.0158增加到0.0416时,β-胡萝卜素的生物利用度从8.01 +/- 0.88提高到20.39 +/- 1.93%,这可能是由于淀粉消化率降低和脂质消化率升高OSA改性淀粉稳定的纳米乳剂具有较高的DS值。

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