Polyphenols are considered healthy because they are supposed to protect people from civilization diseases such as cardiovascular diseases, cancer, or diabetes. This may be due to the inhibition of inflammation or their antioxidant effects. However, there is still a lot of research to be done in this direction because their absorption, distribution, metabolism, and excretion depend on many factors. Moreover, it is possible that the metabolites have a different bioactivity than the original substances. Therefore, it is necessary to accurately identify and quantify the anthocyanin metabolites, and for that reference substances are urgently needed. Because they are not commercially available and cannot be isolated from plants or physiological samples their synthesis is indispensable. Their synthesis can be achieved in different ways: the most obvious realized in this work are enzymatic or chemical approaches. To analyze the results in an advanced way, ion mobility mass spectrometry coupled to a qToF was used. From the obtained data it is possible to establish a database, which may be used to identify metabolites in real biological samples. This is a benefit for the untargeted metabolomics and allows further elucidation of the metabolism of anthocyanins and thus the health-promoting effect of anthocyanins.
Polyphenols are considered healthy because they are supposed to protect people from civilization diseases such as cardiovascular diseases, cancer, or diabetes. This may be due to the inhibition of inflammation or their antioxidant effects. However, there is still a lot of research to be done in this direction because their absorption, distribution, metabolism, and excretion depend on many factors. Moreover, it is possible that the metabolites have a different bioactivity than the original substances. Therefore, it is necessary to accurately identify and quantify the anthocyanin metabolites, and for that reference substances are urgently needed. Because they are not commercially available and cannot be isolated from plants or physiological samples their synthesis is indispensable. Their synthesis can be achieved in different ways: the most obvious realized in this work are enzymatic or chemical approaches. To analyze the results in an advanced way, ion mobility mass spectrometry coupled to a qToF was used. From the obtained data it is possible to establish a database, which may be used to identify metabolites in real biological samples. This is a benefit for the untargeted metabolomics and allows further elucidation of the metabolism of anthocyanins and thus the health-promoting effect of anthocyanins.
Techniques u-r the neurosciences are evolving rapidly. There are currently very few volumes dedicated to the methodology - ployed by neuroscrentists, and those that are available often seem either...
Preface; S. Nigam, C.R. Pace-Asciak. Introductory Remarks: Historical Roots and Contemporary Aspects of Lipoxygenase Research; T. Schewe, et al. Part I: Enzymology, Molecular Biology, and...
Food security and the medicinal needs of billions of people around the world are pressing global issues, and the biodiversity and sustainable utilization of plants is of great significance in this...
Discusses developments in algal active metabolites for biotechnological, commercial, and industrial applications, emphasizing various algal metabolites and assessing their significance as...
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