Kraft Foods Global Brands LLC 801 Waukegan Road, Glenview, Illinois, 60025.
Feinberg School of Medicine, Northwestern University Chicago, Illinois, 60611.
Food Sci Nutr. 2013 Sep;1(5):363-8. doi: 10.1002/fsn3.19. Epub 2012 Dec 26.
Research on the health impacts of coffee has escalated. However, few studies were devoted to understanding the potential impact of mechanical processing on coffee's chemistry and subsequent health implications. Coffee flaking is a commonly used process to improve extractability and aroma characteristics. In this study, we studied the biochemical activity, chemical composition, and microstructure of coffee before and after flaking. We found that flaked coffee extract had 3.3-fold higher activity in inhibiting nuclear factor-kappa B (NF-κB) activation than regular coffee extract. Interestingly, flaking did not significantly alter the amount of coffee phenolics. It increased coffee melanoidin, by 2.1-fold, which likely contributed to the observed higher activity in inhibiting NF-κB activation. Flaking crushed cell walls revealed by microscopy might possibly result in disruption of polysaccharide entanglement and release of high-molecular-weight compounds, such as melanoidins. Consequently, the increased melanoidin content in the brew resulted in the increased inhibition of NF-κB activation. Small molecules, like coffee phenolics, are readily soluble in water during coffee brewing even without flaking, suggesting that flaking has no effect on its extractability. In summary, our investigation revealed that flaking enhanced NF-κB inhibition activity, possibly through the release of melanoidins from crushed cell microstructures.
关于咖啡对健康影响的研究不断增加。然而,很少有研究致力于了解机械加工对咖啡化学性质和后续健康影响的潜在影响。咖啡压片是一种常用的提高萃取率和香气特征的方法。在这项研究中,我们研究了压片前后咖啡的生化活性、化学成分和微观结构。我们发现,压片咖啡提取物抑制核因子-κB(NF-κB)激活的活性比普通咖啡提取物高 3.3 倍。有趣的是,压片并没有显著改变咖啡酚类物质的含量。它使咖啡类黑素增加了 2.1 倍,这可能是观察到抑制 NF-κB 激活活性增加的原因。压片通过显微镜揭示了压碎的细胞壁,可能导致多糖缠结的破坏和释放高分子量化合物,如类黑素。因此,冲泡物中类黑素含量的增加导致 NF-κB 激活的抑制增加。在咖啡酿造过程中,小分子,如咖啡酚类物质,即使没有压片也很容易溶于水,这表明压片对其萃取率没有影响。总之,我们的研究表明,压片通过从压碎的细胞微结构中释放类黑素,增强了 NF-κB 抑制活性。