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由天然可再生茶多酚和人发角蛋白制备的具有生物相容性和抗氧化性的纳米粒子,用于细胞保护和抗炎。

Biocompatible, Antioxidant Nanoparticles Prepared from Natural Renewable Tea Polyphenols and Human Hair Keratins for Cell Protection and Anti-inflammation.

机构信息

National Engineering Research Center for Biomaterials, Sichuan University, Chengdu 610064, P. R. China.

College of Biomedical Engineering, Sichuan University, Chengdu 610064, P. R. China.

出版信息

ACS Biomater Sci Eng. 2021 Mar 8;7(3):1046-1057. doi: 10.1021/acsbiomaterials.0c01616. Epub 2021 Jan 29.

DOI:10.1021/acsbiomaterials.0c01616
PMID:33512989
Abstract

Excessive reactive oxygen species (ROS) can cause oxidative stress of tissues and adversely influence homeostasis of the body. Epigallocatechin gallate (EGCG) with an antioxidative effect can effectively eliminate the ROS, but an evident weakness associated with it is the relatively poor cytocompatibility. Combining with other biomacromolecules such as human hair keratin (KE) and using nanotechnology to prepare nanoparticles can improve this situation. By covalent bonding, we assembled KE and EGCG into KE-EGCG nanoparticles (NANO) with size of about 50 nm and characterized them by DLS, UV, FTIR, NMR, and XPS. Free radical scavenging experiments show that antioxidant properties of the obtained NANO are superior to that of vitamin C. Cell culture experiments also show that the NANO can effectively protect the proliferation of L929 cells and HUVEC cells. In addition, we also used RAW264.7 cells to establish a HO-induced cell injury model and an lipopolysaccharide-induced cellular inflammatory model to evaluate the antioxidant and anti-inflammatory properties of NANO. The results show that the NANO can effectively prevent cells from oxidative damage and reduce inflammatory expression of the cells, indicating that the NANO have a good antioxidative and anti-inflammatory effect on cells which can be applied to many diseases related to oxidative stress.

摘要

过量的活性氧(ROS)会导致组织氧化应激,并对身体的内环境稳态产生不利影响。具有抗氧化作用的表没食子儿茶素没食子酸酯(EGCG)可以有效地消除 ROS,但它明显的弱点是相对较差的细胞相容性。将 EGCG 与其他生物大分子如人发角蛋白(KE)结合,并利用纳米技术制备纳米粒子,可以改善这种情况。通过共价键合,我们将 KE 和 EGCG 组装成尺寸约为 50nm 的 KE-EGCG 纳米粒子(NANO),并通过 DLS、UV、FTIR、NMR 和 XPS 对其进行了表征。自由基清除实验表明,所得到的 NANO 的抗氧化性能优于维生素 C。细胞培养实验也表明,NANO 能有效地保护 L929 细胞和 HUVEC 细胞的增殖。此外,我们还使用 RAW264.7 细胞建立了 HO 诱导的细胞损伤模型和脂多糖诱导的细胞炎症模型,以评估 NANO 的抗氧化和抗炎特性。结果表明,NANO 能有效地防止细胞氧化损伤,降低细胞的炎症表达,表明 NANO 对与氧化应激相关的许多疾病具有良好的抗氧化和抗炎作用。

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