Graphdiyne Nanoparticles with High Free Radical Scavenging Activity for Radiation Protection

生物相容性 材料科学 牛血清白蛋白 生物物理学 体内 纳米颗粒 激进的 共轭体系 光化学 组合化学 纳米技术 有机化学 化学 生物化学 聚合物 生物 生物技术
作者
Jiani Xie,Ning Wang,Xinghua Dong,Chengyan Wang,Zhen Du,Linqiang Mei,Yuan Yong,Changshui Huang,Yuliang Li,Zhanjun Gu,Yuliang Zhao
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:11 (3): 2579-2590 被引量:137
标识
DOI:10.1021/acsami.8b00949
摘要

Numerous carbon networks materials comprised of benzene moieties, such as graphene and fullerene, have held great fascination for radioprotection because of their acknowledged good biocompatibility and strong free radical scavenging activity derived from their delocalized π-conjugated structure. Recently, graphdiyne, a new emerging carbon network material consisting of a unique chemical structure of benzene and acetylenic moieties, has gradually attracted attention in many research fields. Encouraged by its unique structure with strong conjugated π-system and highly reactive diacetylenic linkages, graphdiyne might have free radical activity and can thus be used as a radioprotector, which has not been investigated so far. Herein, for the first time, we synthesized bovine serum albumin (BSA)-modified graphdiyne nanoparticles (graphdiyne-BSA NPs) to evaluate their free radical scavenging ability and investigate their application for radioprotection both in cell and animal models. In vitro studies indicated that the graphdiyne-BSA NPs could effectively eliminate the free-radicals, decrease radiation-induced DNA damage in cells, and improve the viability of cells under ionizing radiation. In vivo experiments showed that the graphdiyne-BSA NPs could protect the bone marrow DNA of mice from radiation-induced damage and make the superoxide dismutase (SOD) and malondialdehyde (MDA) (two kinds of vital indicators of radiation-induced injury) recover back to normal levels. Furthermore, the good biocompatibility and negligible systemically toxicity responses of the graphdiyne-BSA NPs to mice were verified. All these results manifest the good biosafety and radioprotection activity of graphdiyne-BSA NPs to normal tissues. Therefore, our studies not only provide a new radiation protection platform based on graphdiyne for protecting normal tissues from radiation-caused injury but also provide a promising direction for the application of graphdiyne in the biomedicine field.
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