Controllability of Graphene Oxide Doxorubicin Loading Capacity Based on Density Functional Theory

  • Song, Jiaming; 
  • Cui, Naiyu; 
  • Sun, Shixun; 
  • Lu, Xinyue; 
  • Wang, Yuxuan; 
  • ... Lee, Eui-Seok; 
  • 외 2명
Citations

WEB OF SCIENCE

26
Citations

SCOPUS

30

초록

Graphene can be used as a drug carrier of doxorubicin (DOX) to reduce the side effects of doxorubicin. However, there is limited research on the surface chemical modifications and biological effects of graphene oxide (GO). Therefore, it is necessary to explore the DOX affinity of different oxygen-containing functional groups in the graphene system. We constructed graphene system models and studied the structure and distribution of epoxy and hydroxyl groups on the carbon surface. Based on molecular dynamics simulations and density functional theory (DFT), we investigated the interaction between DOX and either pristine graphene or GO with different ratios of oxygen-containing groups. The hydroxyl groups exhibited a stronger affinity for DOX than the epoxy groups. Therefore, the DOX loading capacity of graphene systems can be adjusted by increasing the ratio of hydroxyl to epoxy groups on the carbon surface.

키워드

graphene; doxorubicin; density functional theory; drug delivery; reduced density gradient; ANTICANCER DRUG; PSEUDOPOTENTIALS; ADRIAMYCIN; DELIVERY; INSIGHTS
제목
Controllability of Graphene Oxide Doxorubicin Loading Capacity Based on Density Functional Theory
저자
Song, Jiaming; Cui, Naiyu; Sun, Shixun; Lu, Xinyue; Wang, Yuxuan; Shi, Haoyu; Lee, Eui-Seok; Jiang, Heng-Bo
DOI
10.3390/nano12030479
발행일
2022-02
유형
Article
저널명
Nanomaterials
권
12
호
3