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卵清蛋白-壳聚糖复合物稳定的负载番茄红素的高内相乳液的表征与稳定性

Characterization and stability of lycopene-loaded high internal phase emulsion stabilized by ovalbumin-chitosan complexes.

作者信息

Wang Dan, Zhang Junmiao, Zhong Lei, Yang Cheng, Zhang Xuejian, Hu Qiuhui, Zhang Lianfu

机构信息

State Key Laboratory of Food Science and Resources, Jiangnan University, Wuxi, Jiangsu 214122, China.

College of Food Science and Technology, Nanjing Agricultural University, Nanjing 210095, China.

出版信息

Food Chem X. 2024 Jul 22;23:101689. doi: 10.1016/j.fochx.2024.101689. eCollection 2024 Oct 30.

Abstract

Lycopene, a carotenoid with numerous physiological benefits, particularly in its -isomer form, faces challenges in its application due to low chemical stability. To address this limitation, high internal phase emulsion was successfully synthesized using ovalbumin-chitosan complexes. The aim was to enhance the stability of lycopene including -lycopene. The solubility, particle size, ζ-potential and uniformity of the mixture were dependent on pH value and biopolymer proportion. Notably, optimal ovalbumin-chitosan complex formation occurred at pH 2.5 with a ratio of 4:1 resulting in the highest solubility and optimal uniformity which contributed to its superior emulsification properties. Evaluation of encapsulating efficiency and loading amount revealed 98.19% and 1.7661 mg/g respectively for lycopene in ovalbumin-chitosan stabilized emulsions, inhibiting the transformation from -lycopene to (all-)-lycopene. The encapsulated lycopene possessed UV stability where retention rate remained high at 81.86%. The retention rate was up to 65.37% and 41.82% at 45 °C and 80 °C, respectively.

摘要

番茄红素是一种具有多种生理益处的类胡萝卜素,特别是其 -异构体形式,但由于化学稳定性低,在应用上面临挑战。为了解决这一限制,使用卵清蛋白 -壳聚糖复合物成功合成了高内相乳液。目的是提高包括 -番茄红素在内的番茄红素的稳定性。混合物的溶解度、粒径、ζ电位和均匀性取决于pH值和生物聚合物比例。值得注意的是,在pH 2.5、比例为4:1时形成了最佳的卵清蛋白 -壳聚糖复合物,导致最高的溶解度和最佳的均匀性,这有助于其优异的乳化性能。对包封率和负载量的评估显示,在卵清蛋白 -壳聚糖稳定的乳液中,番茄红素的包封率和负载量分别为98.19%和1.7661 mg/g,抑制了从 -番茄红素向(全 -)番茄红素的转化。包封的番茄红素具有紫外线稳定性,保留率高达81.86%。在45°C和80°C时,保留率分别高达65.37%和41.82%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/574b/11327432/01dce31ecec3/gr1.jpg

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