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首页> 外文期刊>International Dairy Journal >Innovative application of confocal Raman microscopy to investigate the interaction between trans-2-hexenal and bovine milk fat globules.
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Innovative application of confocal Raman microscopy to investigate the interaction between trans-2-hexenal and bovine milk fat globules.

机译:共聚焦拉曼显微镜的创新应用,以研究反式2-己二醛与牛乳脂肪球之间的相互作用。

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摘要

Confocal Raman microscopy was applied to detect the partitioning of a volatile compound, trans-2-hexenal, into bovine milk fat globules (MFGs). The interactions between trans-2-hexenal and individual MFGs were reflected by a change of spectral intensity of the volatile compound in the Raman shift region. At a relatively high concentration of trans-2-hexenal (5%, v/v), stronger intensities of the characteristic Raman spectra were found in the interior of the MFGs compared with the milk fat globule membrane (MFGM) region after reaching equilibrium, revealing that the MFG as a whole, rather than the MFGM, plays the major role in volatile compound absorption processes. The current study reports on an innovative instrumental method to investigate interactions among specific volatile compound and individual emulsion droplets.
机译:共聚焦拉曼显微镜用于检测反式-2-己醛的挥发性化合物在牛乳脂肪小球(MFGs)中的分配。反式-2-己醛与单个MFG之间的相互作用通过拉曼位移区中挥发性化合物的光谱强度变化反映出来。在相对较高的反式-2-己醛浓度(5%,v / v)下,与达到平衡后的乳脂球膜(MFGM)区域相比,MFG内部的特征拉曼光谱强度更高,揭示了MFG整体而非MFGM在挥发性化合物吸收过程中起着主要作用。本研究报告了一种创新的仪器方法,用于研究特定挥发性化合物与单个乳液液滴之间的相互作用。

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