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用于治疗炎症性肠病的姜黄素@铁/单宁酸复合纳米颗粒

Curcumin@Fe/Tannic Acid Complex Nanoparticles for Inflammatory Bowel Disease Treatment.

作者信息

Jin Jiman, Ye Xiuzhi, Huang Zhenfeng, Jiang Shicui, Lin Dini

机构信息

The Third Affiliated Hospital of Wenzhou Medical University, Wenzhou 325200, China.

出版信息

ACS Omega. 2024 Mar 14;9(12):14316-14322. doi: 10.1021/acsomega.3c10214. eCollection 2024 Mar 26.

Abstract

Inflammatory bowel disease (IBD) is a serious public health issue because of its chronic and incurable nature. Common IBD drugs have limited efficacy and produce adverse effects, leading to an urgent need to develop new drugs and drug delivery systems. Curcumin (Cur) is a natural and nontoxic drug that is increasingly used in the treatment of IBD owing to its anti-inflammatory and antioxidant effects. Metal-polyphenol networks constructed from metal ions and polyphenols exhibit biological functionality while acting as an adhesive nanomaterial to encapsulate nano-Cur, thereby improving its solubility and drug release behavior. In this study, we prepared a Cur@Fe&TA nanodrug delivery system by constructing an Fe/tannic acid (TA) metal-polyphenol network with encapsulated Cur. The Cur@Fe&TA nanodrug exhibited good stability, drug release behavior, and biocompatibility. Based on the anti-inflammatory and antioxidant effects of Cur@Fe&TA, the gastrointestinal cytopathology in an IBD mouse model was effectively improved. The proposed Cur@Fe&TA nanomedicine delivery system has promising application and research value for the treatment of IBD by regulating levels of antioxidants and inflammatory cytokines.

摘要

炎症性肠病(IBD)因其慢性和不可治愈的特性,是一个严重的公共卫生问题。常见的IBD药物疗效有限且会产生不良反应,这导致迫切需要开发新的药物和药物递送系统。姜黄素(Cur)是一种天然无毒的药物,因其抗炎和抗氧化作用,越来越多地用于IBD的治疗。由金属离子和多酚构建的金属-多酚网络在作为一种粘附性纳米材料来包裹纳米姜黄素时,展现出生物学功能,从而改善其溶解性和药物释放行为。在本研究中,我们通过构建包封有Cur的铁/单宁酸(TA)金属-多酚网络,制备了Cur@Fe&TA纳米药物递送系统。Cur@Fe&TA纳米药物表现出良好的稳定性、药物释放行为和生物相容性。基于Cur@Fe&TA的抗炎和抗氧化作用,IBD小鼠模型中的胃肠道细胞病理学得到了有效改善。所提出的Cur@Fe&TA纳米药物递送系统通过调节抗氧化剂和炎症细胞因子水平,在IBD治疗方面具有广阔的应用和研究价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f39c/10976392/67cc006acaba/ao3c10214_0001.jpg

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