氧化应激
活性氧
富勒烯
抗氧化剂
肌肽
材料科学
食腐动物
氧化磷酸化
纳米技术
化学
生物化学
有机化学
生物
作者
Haijun Ma,Jiajia Zhao,Haibing Meng,Dan‐Ning Hu,Yue Zhou,Xiaoyan Zhang,Chunru Wang,Jie Li,Jinying Yuan,Yen Wei
标识
DOI:10.1021/acsami.0c01669
摘要
Fullerenes are known as highly efficient scavengers for reactive oxygen species (ROSs). In this study, a carnosine-modified fullerene derivative (C60-Car) was synthesized via a one-step nucleophilic addition reaction. C60-Car forms nanoparticles (NPs) readily in water at neutral pH and room temperature through self-assembly. The C60-Car NPs were found to possess good water solubility, biocompatibility, and excellent ROSs scavenging capability. The scavenging efficiency of ROSs is as high as 92.49% and significantly better than that of hydroxyfullerene (C60-OH NPs, 70.92%) and l-carnosine. Furthermore, C60-Car NPs showed strong cytoprotective ability against H2O2-induced damage to the normal human fetal hepatocyte cells (L-02) and human epidermal keratinocytes-adult (HEK-a) cells at a lower concentration of 2.5 μM. In contrast, C60-OH NPs showed a minor cytoprotective effect on cells at a high concentration of 10 μM. The excellent properties of such a fullerene derivative, C60-Car, can be attributed largely to the involvement of l-carnosine with biological activity and antioxidant property, which make it better for biomedicine, and it may provide a new strategy for mitigating acute oxidative stress based on fullerene materials.
科研通智能强力驱动
Strongly Powered by AbleSci AI