Adamczyk Bartosz, Simon Judy, Kitunen Veikko, Adamczyk Sylwia, Smolander Aino
Department of Food and Environmental Sciences University of Helsinki, PO Box 66 00791 Helsinki Finland.
Ecology, Department of Biology University of Konstanz Universitätsstrasse 10 78457 Konstanz Germany.
ChemistryOpen. 2017 Aug 16;6(5):610-614. doi: 10.1002/open.201700113. eCollection 2017 Oct.
Tannins, an abundant group of plant secondary compounds, raise interest in different fields of science, owing to their unique chemical characteristics. In chemical ecology, tannins play a crucial role in plant defense against pathogens, herbivores, and changing environmental conditions. In the food industry and in medicine, tannins are important because of their proven positive effect on human health and disease treatment. Such wide interests fueled studies on tannin chemistry, especially on their flagship ability to precipitate proteins. In this Review, we expand the basic knowledge on tannin chemistry to the newest insights from the field. We focus especially on tannin reactions with different non-protein organic N compounds, as well as the complex interactions of tannins with enzymes, resulting in either an increase or decrease in enzyme activity.
单宁是一类丰富的植物次生化合物,由于其独特的化学特性,在不同科学领域引起了人们的兴趣。在化学生态学中,单宁在植物抵御病原体、食草动物和不断变化的环境条件方面发挥着关键作用。在食品工业和医学中,单宁因其对人类健康和疾病治疗的已证实的积极作用而很重要。如此广泛的兴趣推动了对单宁化学的研究,特别是对其沉淀蛋白质的标志性能力的研究。在本综述中,我们将单宁化学的基础知识扩展到该领域的最新见解。我们特别关注单宁与不同的非蛋白质有机氮化合物的反应,以及单宁与酶的复杂相互作用,这会导致酶活性的增加或降低。