梨形四膜虫
光敏剂
细胞内
光催化
材料科学
生物物理学
可见光谱
光化学
纳米技术
生物
生物化学
化学
光电子学
催化作用
四膜虫
作者
Yin-Hua Cui,Jing‐Hang Wu,Wei Wei,Feng Zhang,Lingli Li,Li-Jiao Tian,Wen‐Wei Li,Paul K.S. Lam,Han‐Qing Yu
标识
DOI:10.1021/acsami.0c21902
摘要
Incorporating artificial photosensitizers with microorganisms has recently been recognized as an effective way to convert light energy into chemical energy. However, the incorporated biosystem is usually constructed in an extracellular manner and is vulnerable to the external environment. Here, we develop an intracellular hybrid biosystem in a higher organism protozoa Tetrahymena pyriformis, in which the in vivo synthesized CdS nanoparticles trigger photoreduction of nitrobenzene into aniline under visible-light irradiation. Integrating a photosensitizer CdS into T. pyriformis enables the photosensitizer CdS, inherent nitroreductase, and the cytoplasmic reductive substance in T. pyriformis to synergistically engage in the photocatalysis process, generating a greatly enhanced aniline yield with a 40-fold increment. Moreover, building an intracellular hybrid biosystem in mutant T. pyriformis could even grant it new capability of reducing nitrobenzene into aniline under visible-light irradiation. Such an intracellular hybrid biosystem paves a new way to functionalize higher organisms and diversify light energy conversion.
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