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从黑果枸杞中提取的粉状花色苷的细微变化的改良比色分析

Improved colorimetric analysis for subtle changes of powdered anthocyanins extracted from Lycium ruthenicum Murr.

机构信息

Qinghai Provincial Key Laboratory of Tibetan Medicine Research and CAS Key Laboratory of Tibetan Medicine Research, Northwest Institute of Plateau Biology, Xining 810008, PR China; University of Chinese Academy of Science, Beijing 100049, PR China.

Qinghai Provincial Key Laboratory of Tibetan Medicine Research and CAS Key Laboratory of Tibetan Medicine Research, Northwest Institute of Plateau Biology, Xining 810008, PR China; Huzhou China-Science Innovation Centre of Plateau Biology, Huzhou 313000, PR China.

出版信息

Food Chem. 2022 Mar 1;371:131080. doi: 10.1016/j.foodchem.2021.131080. Epub 2021 Sep 8.

Abstract

Anthocyanins of Lycium ruthenicum (LR) are valuable, whereas stabilities, especially colour stabilities, constrain development. This study investigates stored temperature effects on the stability of powdered anthocyanin extracts of LR in anaerobic conditions and colour changes in simulated applications. We found that temperature had limited effects on anthocyanin contents but negative effects on colour. Colour differences (ΔE) were amplified in simulated applications, 4 °C had the most changes in ΔE in simulated applications, 37 °C caused shrinkage of the colour range towards the yellow area, and changes in ΔE at pH 7 and 9 were summarized by models. In conclusion, during anaerobic storage of powdered anthocyanins, asynchronous changes occur between anthocyanin contents and colour. High storage temperature attenuates colour intensity, but low storage temperature causes more ΔE in applications. Established models are beneficial for decreasing the visual differences in products, deepening the understanding, and offering a new perspective on colour analysis.

摘要

黑果枸杞中的花色苷具有很高的价值,但其稳定性,尤其是颜色稳定性,限制了其发展。本研究探讨了在厌氧条件下储存温度对黑果枸杞花色苷粉末提取物稳定性和模拟应用中颜色变化的影响。我们发现温度对花色苷含量的影响有限,但对颜色有负面影响。在模拟应用中,色差(ΔE)放大,在模拟应用中,4℃的ΔE 变化最大,37℃使颜色范围向黄色区域收缩,在 pH7 和 9 时,ΔE 的变化可由模型总结。总之,在粉末状花色苷的厌氧储存过程中,花色苷含量和颜色之间会发生不同步的变化。较高的储存温度会降低颜色强度,但较低的储存温度会导致应用中的 ΔE 更大。建立的模型有利于减少产品的视觉差异,加深对颜色分析的理解,并提供新的视角。

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