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Phenol-like group functionalized graphene quantum dots structurally mimicking natural antioxidants for highly efficient acute kidney injury treatment

机译:苯酚状的基团官能化石墨烯量子点结构仿制性抗氧化剂的高效急性肾损伤治疗

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Acute kidney injury (AKI) is a syndrome characterized by rapid loss of renal excretory function with high in-hospital mortality. The excess generation of reactive oxygen species (ROS) in the kidneys during AKI has been considered a major cause of renal failure. Currently available antioxidants for AKI treatment often lack the required antioxidative efficacy or renal accumulation rate. Herein, inspired by the structure of natural phenolic antioxidants, phenol-like group functionalized graphene quantum dots (h-GQDs) with both high ROS scavenging efficacy and renal specificity are constructed for AKI antioxidative therapy. Similar to natural polyphenols, the abundant phenol-like groups on h-GQDs are demonstrated to be the active components exerting antioxidative effects. Further exhaustive mechanistic investigations indicate that the ultrahigh antioxidative activity of h-GQDs originates not solely from the phenol-like groups, but also from the synergy between adjacent phenol-like groups, as well as the removal of unfavorable carbonyl groups on h-GQDs. In AKI mice, h-GQDs can effectively protect the kidneys from oxidative injury with only a one-sixteenth dose of the clinical antioxidant N -acetylcysteine (NAC) and show no evidence of toxicity. The findings of this study will facilitate development of high-performance carbon-based antioxidative platforms via structure–activity relationships for treating AKI and other ROS-related diseases.
机译:急性肾损伤(AKI)是一种综合征,其特征在于肾脏排泄功能高,患有高住院医生的死亡率。在AKI期间肾脏中的过量产生的反应性氧物种(ROS)被认为是肾衰竭的主要原因。目前可用的AKI治疗抗氧化剂通常缺乏所需的抗氧化疗效或肾脏积累率。这里,由天然酚类抗氧化剂的结构的启发,为AKI抗氧化治疗构建了具有高ROS清除功效和肾特异性的酚类类官能化石墨烯量子点(H-GQDS)。与天然多酚类似,H-GQD上的丰富的酚类样基团被证明是施加抗氧化作用的活性成分。进一步的详尽的机械研究表明,H-GQD的超高抗氧化活性不是仅来自酚类基团,而且来自相邻酚样基团之间的协同作用,以及去除在H-GQD上的不利羰基。在AKI小鼠中,H-GQDS可以仅通过临床抗氧化N-乙酰胞嘧啶(NAC)仅具有氧化损伤的氧化损伤,并且没有显示毒性的证据。本研究的结果将通过用于治疗AKI和其他与其他ROS相关疾病的结构 - 活性关系,促进高性能碳抗氧化平台的发展。

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