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The gut microbiota composition affects dietary polyphenols-mediated cognitive resilience in mice by modulating the bioavailability of phenolic acids

机译:通过调节酚酸的生物利用度,肠道微生物液组合物通过调节酚酸的生物利用度影响小鼠中的膳食多酚介导的认知性恢复性

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Dietary polyphenols promote memory in models of sleep deprivation (SD), stress, and neurodegeneration. The biological properties of dietary polyphenols greatly depend upon the bioavailability of their phenolic metabolites derivatives, which are modulated by gut microbiota. We recently demonstrated that supplementation with grape-derived bioactive dietary polyphenol preparation (BDPP) improves SD-induced cognitive impairment. This study examined the role of the gut microbiota in the ability of BDPP to prevent memory impairment in response to SD. C57BL6/J mice, treated with antibiotics mix (ABX) or BDPP or both, were sleep-deprived at the end of a fear conditioning training session and fear memory was assessed the next day. Gut microbiota composition was analyzed in fecal samples and BDPP-driven phenolic acid metabolites extraction was measured in plasma. We report that the beneficial effect of BDPP on memory in SD is attenuated by ABX-induced dysbiosis. We identified specific communities of fecal microbiota that are associated with the bioavailability of BDPP-derived phenolic acids, which in turn, are associated with memory promotion. These results suggest the gut microbiota composition significantly affects the bioavailability of phenolic acids that drive the dietary polyphenols' cognitive resilience property. Our findings provide a preclinical model with which to test the causal association of gut microbiota-polyphenols, with the ultimate goal of potential developing dietary polyphenols for the prevention/treatment of cognitive impairment.
机译:膳食多酚促进睡眠剥夺模型(SD),应激和神经变性的模型中的记忆。膳食多酚的生物学性质大大取决于其酚醛代谢物衍生物的生物利用度,其被肠道微生物瘤调节。我们最近证明,用葡萄衍生的生物活性膳食多酚制备(BDPP)补充改善了SD诱导的认知障碍。本研究检测了肠道微生物群在BDPP响应SD的能力中的作用。 C57BL6 / J小鼠用抗生素混合物(ABX)或BDPP或两者或两者进行治疗,在恐惧调理培训课程结束时睡眠不足,恐惧记忆是第二天评估的。在粪便上分析肠道微生物酵母组合物,并在血浆中测量BDPP驱动的酚醛酸代谢物提取。我们认为BDPP对SD中的记忆的有益效果通过ABX诱导的脱敏病毒衰减。我们确定了与BDPP衍生的酚醛酸的生物利用度相关的粪便微生物的特定群落,这反过来与记忆促进有关。这些结果表明肠道微生物群组合物显着影响酚醛酸的生物利用度,这些酚酸驱动膳食多酚的认知性弹性性能。我们的研究结果提供了一种临床前模型,其测试肠道微生物群 - 多酚的因果关系,具有用于预防/治疗认知障碍的潜在发育膳食多酚的最终目标。

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