抗菌剂
富勒烯
单线态氧
光化学
光动力疗法
系统间交叉
光敏剂
阳离子聚合
光激发
化学
电子转移
两亲性
纳米囊
组合化学
纳米技术
材料科学
激发态
单重态
纳米颗粒
氧气
有机化学
聚合物
共聚物
物理
核物理学
作者
Daniel A. Heredia,Andrés M. Durantini,Javier E. Durantini,Edgardo N. Durantini
标识
DOI:10.1016/j.jphotochemrev.2021.100471
摘要
Functionalized fullerenes have shown interesting biomedical applications as potential phototherapeutic agents. The hydrophobic carbon sphere of fullerene C60 can be substituted by cationic groups to obtain amphiphilic structures. These compounds absorb mainly UV light, but absorption in the visible region can be enhanced by anchoring light-harvesting antennas to the C60 core. Upon photoexcitation, fullerenes act as spin converters by effective intersystem crossing. From this excited state, they can react with ground state molecular oxygen and other substrates to form reactive oxygen species. This process leads to the formation of singlet molecular oxygen by energy transfer or superoxide anion radical by electron transfer. Photodynamic inactivation experiments indicate that cationic fullerenes are highly effective photosensitizers with applications as broad-spectrum antimicrobial agents. In these structures, the hydrophobic character of C60 improves membrane penetration, while the presence of positive charges increases the binding of the fullerene derivatives with microbial cells. Herein, we summarize the progress of antimicrobial photodynamic inactivation based on substituted fullerenes specially designed to improve the photodynamic activity.
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