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Nutraceutical polyphenols: New analytical challenges and opportunities

机译:保健品多酚:新的分析挑战和机遇

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Nowadays, the research for secondary metabolites with health promoting effects in countering or slowing-down chronic and degenerative diseases (e.g. cancer, cardiovascular, and neurodegenerative diseases) identify phenols and polyphenols, widespread and mostly copious in dietary plant sources, as beneficial for human health. These compounds, as intrinsically antioxidant, are claimed as nutraceuticals with preventive efficacy in offsetting oxidant species over-genesis in normal cells, and with the potential ability to halt or reverse oxidative stress-related diseases. In this context, pure (poly)phenols and/or their herbal/food complexes were found to exert both anti- and pro-oxidant activities, suggesting also a promising chemopreventive efficacy. In fact, different evidence further highlights their ability to induce apoptosis, growth arrest, DNA synthesis inhibition and/or modulation of signal transduction pathways. Indeed, a full understanding of the phenolic and polyphenolic composition of plant species, which still now represent their inestimable and worth exploring source, is an important challenge, which today can and must be favourably pursued in the consciousness that the bioactivity of a plant extract is always in its chemistry. To reach this purpose a number of new and advanced techniques are available for extraction, purification and structural identification purposes, but, taking into account how, when and where (poly)phenols are biosynthesized, their use must be highly rationalized. This is particularly true for mass spectrometry techniques which, although representing one of the most powerful tools and in continuous evolution in this era, often suffer from an automatism that does not give justice to the chemical goodness of a plant species and particularly those of nutraceutical interest. This review will deepen into polyphenol research, focusing on biosynthesis, analytical approaches for a conscious exploitability of nutraceutical plant extracts rich in antioxidant and anti-inflammatory polyphenols and/or pure isolated polyphenols. (C) 2019 Elsevier B.V. All rights reserved.
机译:如今,对促进慢性和退行性疾病(例如癌症,心血管和神经变性疾病的慢性和退行性疾病(例如癌症,心血管和神经变性疾病)的次级代谢产物的研究鉴定酚类和多酚在膳食植物来源中普遍和大多数大量,对人体健康有益。将这些化合物作为本质上抗氧化剂,被要求保护具有预防效果的营养效果,在正常细胞中偏移氧化剂物种,并且具有暂停或逆转氧化应激相关疾病的潜在能力。在这种情况下,发现纯(聚)酚和/或其草药/食物络合物施加抗氧化剂活性,表明也是有前途的化学预防效果。实际上,不同的证据进一步突出了它们诱导凋亡,生长停滞,DNA合成抑制和/或调节信号转导途径的能力。实际上,全面了解植物物种的酚类和多酚组成,现在仍然代表他们不可估量和值得探索的来源,这是一个重要的挑战,今天可以在意识中有利地追求植物提取物的生物活性总是在化学中。为达到此目的,许多新的先进技术可用于提取,净化和结构识别目的,但考虑到如何,何时何地(多)酚类生物合成,它们的使用必须高度合理化。对于质谱技术尤其如此,尽管代表了最强大的工具之一和​​在本时代的连续演变之一,但经常遭受任何对植物物种的化学品种的自动性,特别是营养物种的化学品。本综述将深入进入多酚研究,重点是生物合成,分析方法,用于富含抗氧化剂和抗炎多酚和/或纯分离的多酚的富含保留植物提取物的分析方法。 (c)2019 Elsevier B.v.保留所有权利。

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