首页> 外文期刊>Journal of Labelled Compounds and Radiopharmaceuticals >Synthesis of (2-~(13)C, 4-~(13)C)-(2R,3S)-catechin and (2-~(13)C, 4-~(13)C)-(2R,3R)-epicatechin
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Synthesis of (2-~(13)C, 4-~(13)C)-(2R,3S)-catechin and (2-~(13)C, 4-~(13)C)-(2R,3R)-epicatechin

机译:(2-〜(13)C,4-〜(13)C)-(2R,3S)-儿茶素和(2-〜(13)C,4-〜(13)C)-(2R,3R)的合成依匹替茶素

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The first synthesis of doubly labeled, [2-~(13)C, 4-~(13)C]-(2R,3S)-catechin 15 and [2-~(13)C, 4-~(13)C]-(2R,3R)-epicatechin 18 starting from labeled 2-hydroxy-4, 6-bis(benzyloxy)acetophenone 3 and labeled 3, 4-bis(benzyloxy)-benzaldehyde 7 are described. There is great interest in the role played by the polyphenolic class of compounds in health, nutrition and treatment of disease. In particular, dietary interventions using flavanol-containing foods and beverages have substantiated epidemio-logical data regarding the improvement of vasodilation and blood pressure. Moreover, numerous investigations have been conducted in vitro aimed at elucidating flavanol-mediated bioactivities. These activities include, but are not limited to inhibiting HIV-1 replication in vitro, reducing the risk of heart disease, suppressing ulcer formation, possessing antimuta-genic, neuroprotective, anti-inflammatory, antibacterial, hypertensive properties, and can inhibit the growth of cancer cells. Moreover, flavanols can affect a host of cellular functions in vitro such as signaling pathways, alter cell membrane characteristics and receptor function to imply physiological effects in vivo. It should be noted that these in vitro studies use the natural form of the flavanols as they appear in nature, whereas the biological effects elicited in vivo are the consequences of adsorption (bioavailability), their metabolism and distribution within body organs. Substantial data exists to support the in vivo biotransformation and metabolism of flavanols within the gastrointestinal tract by resident micro-flora15 as well as their hepatic metabolism.
机译:双标记[2-〜(13)C,4-〜(13)C]-(2R,3S)-儿茶素15和[2-〜(13)C,4-〜(13)C描述了从标记的2-羟基-4,6-双(苄氧基)苯乙酮3和标记的3,4-双(苄氧基)-苯甲醛7开始的]-(2R,3R)-表儿茶素18。人们对多酚类化合物在健康,营养和疾病治疗中的作用非常感兴趣。特别是,使用含有黄烷醇的食品和饮料的饮食干预措施已证实了有关改善血管舒张和血压的流行病学数据。此外,已经进行了许多旨在阐明黄烷醇介导的生物活性的体外研究。这些活动包括但不限于在体外抑制HIV-1复制,降低心脏病的风险,抑制溃疡的形成,具有抗诱变,神经保护,抗炎,抗菌,高血压的特性,并且可以抑制癌细胞。此外,黄烷醇可以在体外影响许多细胞功能,例如信号传导途径,改变细胞膜特征和受体功能以暗示体内的生理作用。应当指出的是,这些体外研究使用天然存在的黄烷醇形式,而黄烷醇则存在于自然界中,而在体内引起的生物学效应是吸附(生物利用度),其代谢和在人体器官内分布的后果。存在大量数据来支持体内微生物群落中黄烷醇在体内的生物转化和代谢以及其肝代谢。

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