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首页> 外文期刊>European Journal of Lipid Science and Technology >Inclusion complexes of astaxanthin with hydroxypropyl-β-cyclodextrin: Parameters optimization, spectroscopic profiles, and properties
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Inclusion complexes of astaxanthin with hydroxypropyl-β-cyclodextrin: Parameters optimization, spectroscopic profiles, and properties

机译:虾青素与羟丙基-β-环糊精的包合物:参数优化,光谱特征和性能

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摘要

Inclusion complexes of astaxanthin with hydroxypropyl-β-cyclodextrin (HPCD) were systematically investigated from several aspects of processing optimization by RSM, spectroscopic profiles of UV, FT-IR, and TG/DTA, and properties of water solubility, storage stability, 1,1-diphenyl-2-picrylhydrazyl (DPPH) radical scavenging activity, and reducing power. The results showed that the optimal preparation conditions of inclusion complexes were: 500:1 of HPCD/astaxanthin mass ratio, 49.58°C of temperature and 25 mg/mL of HPCD concentration. Under the optimized conditions, inclusion rate of 30.4 ± 1.3% was achieved. Spectroscopic profiles revealed that the hexatomic ring of the astaxanthin molecules was partly included into the HPCD cavities and the starting decomposition temperature of astaxanthin increased by about 50°C due to the protection of HPCD. The storage stability of inclusion complexes was enhanced at the temperatures of 4, 25, 37, and 50°C in dark and light storage conditions. The reducing power and DPPH radical scavenging activities of inclusion complexes were much higher than those of pure astaxanthin, and the inclusion complexes showed good water solubility with high concentration up to 50 mg/mL, In conclusion, the optimized parameters and monitoring procedure by TGA, UV, FT-IR, and HPLC are useful to conduct the inclusion complexes preparation with good properties, which are helpful for its applications in food and feed industries as an antioxidant additive.
机译:从RSM的工艺优化,UV,FT-IR和TG / DTA的光谱特征,水溶性,储存稳定性等方面对虾青素与羟丙基-β-环糊精(HPCD)的包合物进行了系统研究。 1-二苯基-2-吡啶并肼基(DPPH)自由基清除活性,并降低功率。结果表明,包合物的最佳制备条件为:HPCD /金黄色黄素质量比为500:1,温度为49.58°C,HPCD浓度为25 mg / mL。在最佳条件下,包合率为30.4±1.3%。光谱图表明,虾青素分子的六环部分地包含在HPCD腔中,并且由于HPCD的保护,虾青素的起始分解温度提高了约50℃。在黑暗和明亮的存储条件下,在4、25、37和50°C的温度下,包裹体复合物的存储稳定性得到了增强。包合物的还原能力和DPPH自由基清除活性远高于纯虾青素,包合物的水溶性好,高浓度可达50 mg / mL。 UV,FT-IR和HPLC可用于制备具有良好性能的包合物,这有助于其作为抗氧化剂添加剂在食品和饲料工业中的应用。

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