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Artemisia dracunculus L. polyphenols complexed to soy protein show enhanced bioavailability and hypoglycemic activity in C57BL/6 mice

机译:与大豆蛋白复合的龙蒿多酚在C57BL / 6小鼠中显示出更高的生物利用度和降血糖活性

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摘要

ObjectiveScientifically-validated food-based interventions are a practical means of addressing the epidemic of metabolic syndrome. An ethanolic extract of Artemisia dracunculus L. (PMI-5011) containing bioactive polyphenols, such as 2′, 4′–dihydroxy-4-methoxydihydrochalcone (DMC-2), improved insulin resistance in vitro and in vivo. Plant polyphenols are concentrated and stabilized when complexed to protein-rich matrices, such as soy protein isolate (SPI), which act as effective food-based delivery vehicles. In this study we compared bioaccessibility, bioavailability and efficacy of polyphenols extracted from A. dracunculus and delivered as PMI-5011 (ethanolic extract alone), formulated with the non-food excipient Gelucire®, (5011- Gelucire), or sorbed to SPI (5011-Nutrasorb®).
机译:目的经过科学验证的以食品为基础的干预措施是解决代谢综合征流行病的一种实用方法。含有生物活性多酚(例如2',4'-二羟基-4-甲氧基二氢查尔酮(DMC-2))的青蒿(PMI-5011)乙醇提取物可改善体内和体外的胰岛素抵抗。当与富含蛋白质的基质(例如大豆蛋白分离物(SPI))复合时,植物多酚被浓缩并稳定下来,这些基质可作为有效的基于食物的传递媒介。在这项研究中,我们比较了从麦地那龙提取的多酚作为非食品赋形剂Gelucire ®,(5011-Gelucire)配制的PMI-5011(仅乙醇提取物)的生物利用度,生物利用度和功效。 )或吸附到SPI(5011-Nutrasorb ®)。

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