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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >A Novel Nanosystem Realizing Curcumin Delivery Based on Fe3O4@Carbon Dots Nanocomposite for Alzheimer’s Disease Therapy
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A Novel Nanosystem Realizing Curcumin Delivery Based on Fe3O4@Carbon Dots Nanocomposite for Alzheimer’s Disease Therapy

机译:一种新型纳米系统,实现基于Fe3O4碳点纳米复合物的姜黄素递送,用于阿尔茨米默病治疗

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Alzheimer's disease (AD) is the most common neurodegenerative disease, which seriously affects human health but lacks effective treatment methods. Amyloid β (Aβ) aggregates are considered a possible target for AD treatment. Evidence is increasingly showing that curcumin (CUR) can partly protect cells from Aβ-mediated neurotoxicity by inhibiting Aβ aggregation. However, the efficiency of targeted cellular uptake and bioavailability of CUR is very low due to its poor stability and water-solubility. In order to better improve the cell uptake efficiency and bioavailability of CUR and reduce the cytotoxicity of high-dose CUR, a novel CUR delivery system for AD therapy has been constructed based on the employment of the Fe3O4@carbon dots nanocomposite (Fe3O4@CDs) as the carrier. The CUR-Fe3O4@CDs have a strong affinity toward Aβ and effectively inhibit extracellular Aβ fibrillation. In addition, CUR-Fe3O4@CDs can inhibit the production of reactive oxygen species (ROS) mediated by Aβ fibrils and the corresponding neurotoxicity in PC12 cells. More importantly, it can restore nerve damage and maintained neuronal morphology. These results indicate that the application of CUR-Fe3O4@CDs provides a promising platform for the treatment of AD.
机译:阿尔茨海默病(AD)是最常见的神经变性疾病,严重影响人类健康,但缺乏有效的治疗方法。淀粉样蛋白β(Aβ)聚集体被认为是AD治疗的可能靶标。越来越多地表明姜黄素(Cur)可以通过抑制Aβ聚集来部分保护来自Aβ介导的神经毒性的细胞。然而,由于其稳定性和水溶性差,Cur的靶细胞摄取和生物利用度的效率非常低。为了更好地改善CER的细胞吸收效率和生物利用度,并降低高剂量CUR的细胞毒性,基于FE3O4碳点纳米复合物(FE3O4 @ CDS)的使用,构建了一种用于AD治疗的新型Cur输送系统作为承运人。 CDS对Aβ具有强烈的亲和力,有效地抑制细胞外Aβ纤维化。此外,CDS可以抑制由Aβ原纤维介导的反应性氧物质(ROS)和PC12细胞中的相应神经毒性的产生。更重要的是,它可以恢复神经损伤并保持神经元形态。这些结果表明,CUR-FE3O4 @ CD的应用为AD治疗提供了一个有希望的平台。

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