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Blueberry Consumption Challenges Hepatic Mitochondrial Bioenergetics and Elicits Transcriptomics Reprogramming in Healthy Wistar Rats

机译:蓝莓消费挑战肝线粒体生物植物和Elicits转录组织在健康Wistar大鼠中重新编程

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摘要

An emergent trend of blueberries’ (BB) “prophylactic” consumption, due to their phytochemicals’ richness and well-known health-promoting claims, is widely scaled-up. However, the benefits arising from BB indiscriminate intake remains puzzling based on incongruent preclinical and human data. To provide a more in-depth elucidation and support towards a healthier and safer consumption, we conducted a translation-minded experimental study in healthy Wistar rats that consumed BB in a juice form (25 g/kg body weight (BW)/day; 14 weeks’ protocol). Particular attention was paid to the physiological adaptations succeeding in the gut and liver tissues regarding the acknowledged BB-induced metabolic benefits. Systemically, BB boosted serum antioxidant activity and repressed the circulating levels of 3-hydroxybutyrate (3-HB) ketone bodies and 3-HB/acetoacetate ratio. Moreover, BB elicited increased fecal succinic acid levels without major changes on gut microbiota (GM) composition and gut ultra-structural organization. Remarkably, an accentuated hepatic mitochondrial bioenergetic challenge, ensuing metabolic transcriptomic reprogramming along with a concerted anti-inflammatory pre-conditioning, was clearly detected upon long-term consumption of BB phytochemicals. Altogether, the results disclosed herein portray a quiescent mitochondrial-related metabolomics and hint for a unified adaptive response to this nutritional challenge. The beneficial or noxious consequences arising from this dietary trend should be carefully interpreted and necessarily claims future research.
机译:由于他们的植物化学性丰富和众所周知的健康索赔,蓝莓'(BB)“预防性”消费的紧急趋势是广泛的缩放。然而,基于不一致的临床前和人类数据,BB不分青红皂白酸尼灭滑摄入产生的益处仍然是令人费解的。为了提供更深入的阐明和支持更健康和更​​安全的消费,我们在健康的Wistar大鼠中进行了一个脑卒中的实验研究,该研究在果汁形式中消耗BB(25克/千克体重(BW)/日; 14周“协议”)。对肠道和肝组织成功的生理适应性有关认可的BB诱发的代谢益处,应特别注意。全身性的BB促进血清抗氧化活性,并抑制了3-羟基丁酸酯(3-HB)酮体和3-HB /乙酸乙酯的循环水平。此外,BB引发了粪便琥珀酸水平的增加,而不会对肠道微生物(GM)组成和肠道超结构组织进行重大变化。值得注意的是,在长期消耗BB植物化学的长期消费后,显然,随后随后随后随后随后与协调的抗炎预处理进行了齐全的抗炎预调节的肝脏线粒体生物能攻击。完全,本文公开的结果描绘了与这种营养挑战的统一适应性反应的静态线粒体相关的代谢组合和提示。应仔细解释这种饮食趋势产生的有益或有害后果,并要求未来的研究。

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