对映选择合成
级联
催化作用
程序性细胞死亡
材料科学
细胞生物学
纳米技术
生物物理学
化学
生物
生物化学
细胞凋亡
色谱法
作者
Si Li,Jinpeng Wang,Xinhe Xing,Xiaoyong Yue,Shan Sun,Hengwei Lin,Chuanlai Xu
标识
DOI:10.1002/adhm.202303476
摘要
Abstract Chirality is common in nature, which determines the high enantioselectivity of living systems. Selecting suitable chiral configurations is of great meaning for nanostructures to function better in biological systems. In this study, chiral Co 3 O 4 ‐H 2 TPPS‐Au (CoHAu) nanoassemblies are constructed to accelerate the production ∙OH by consuming D ‐glucose ( D ‐Glu, widely spread in nature) based on their outstanding enantioselective cascade‐catalytic abilities. In particular, D ‐CoHAu nanoassemblies are more effective in the catalytic conversion of D ‐Glu than L ‐CoHAu nanoassemblies. This phenomenon is due to the stronger binding affinity of D ‐CoHAu nanoassemblies indicated by the lower K m value. Moreover, D ‐CoHAu nanoassemblies display excellent consumption‐ability of D ‐Glu and production of ∙OH in living cells, which can eliminate senescent cells effectively based on their intracellular enantioselective cascade‐catalysis. This research establishes the foundation for bio‐mimicking nanostructures with unique functionalities to regulate abnormal biological activities better.
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