雷亚克夫
活性氧
白色念珠菌
氧气
分子动力学
细胞壁
氢键
生物物理学
分子
键裂
等离子体
化学
立体化学
化学物理
计算化学
生物
物理
生物化学
微生物学
有机化学
量子力学
催化作用
作者
Tong Zhao,Lei Shi,Yuetong Zhang,Liang Zou,Li Zhang
摘要
Atmospheric pressure non-equilibrium plasmas have attracted significant attention and have been widely used to inactivate pathogens, yet the mechanisms underlying the interactions between plasma-generated species and bio-organisms have not been elucidated clearly. In this paper, reactive molecular dynamics simulations are employed to investigate the mechanisms of interactions between reactive oxygen plasma species (O, OH, and O2) and β-1,6-glucan (a model for the C. albicans cell wall) from a microscopic point of view. Our simulations show that O and OH species can break structurally important C-C and C-O bonds, while O2 molecules exhibit only weak, non-bonded interactions with β-1,6-glucan. Hydrogen abstraction from hydroxyl or CH groups occurs first in all bond cleavage mechanisms. This is followed by a cascade of bond cleavage and double bond formation events. These lead to the destruction of the fungal cell wall. O and OH have similar effects related to their bond cleavage mechanisms. Our simulation results provide fundamental insights into the mechanisms underlying the interactions between reactive oxygen plasma species and the fungal cell wall of C. albicans at the atomic level.
科研通智能强力驱动
Strongly Powered by AbleSci AI