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Singzyme:一种由超笼效应驱动的单分子类酶光催化剂。

Singzyme: A Single-Molecule Enzyme-Like Photocatalyst Powered by the Super Cage Effect.

作者信息

Long Zhiqing, Wang Kaixuan, Luo Ke, Zhu Maijun, He Qing

机构信息

State Key Laboratory of Chemo and Biosensing, College of Chemistry and Chemical Engineering, Hunan University, Changsha 410082, P. R. China.

出版信息

JACS Au. 2025 Jun 19;5(7):3058-3069. doi: 10.1021/jacsau.4c01161. eCollection 2025 Jul 28.

Abstract

Photodynamic therapy (PDT) represents a powerful approach for treating cancers through light-induced reactive oxygen species (ROS) generation; however, its efficacy is often constrained by limitations in photosensitivity, ROS yield, and tumor microenvironment adaptation. Addressing these challenges requires highly engineered photosensitizers capable of enhanced light absorption, stable catalytic performance, and selective redox modulation. Herein, we introduce a structurally and functionally single-molecule enzyme-like photocatalyst (superphane ), a supramolecular photosensitizer based singzyme designed through a "super cage effect" or "superphane effect" that promotes enhanced photosensitivity, superior ROS generation, photocatalytic oxidation and multi-enzyme mimetic activities. Its unique structure, featuring precisely and densely arranged phenothiazine units, maximizes light absorption and optimizes electron transfer dynamics, resulting in an excellent singlet oxygen (O) yield of 70% under 450 nm irradiation, significantly surpassing the yields of 42% for cage , 39% for macrocycle , and 24% for monomer . Functionally, singzyme exhibits excellent catalytic efficiency to NADH ( / = 2.43 × 10 L mol min) and catalyzes oxidation of NADH and GSH, mimicking NADH oxidase and GSH oxidase activity. This selectively depletes NADH and GSH, inducing an intracellular "oxygen burst" effect. This redox imbalance inhibits mitochondrial oxidative phosphorylation (OXPHOS), reduces ATP production, and promotes apoptosis and ferroptosis pathways. With stable activity across acidic and neutral pH environments typical of tumors, singzyme provides a versatile, biocompatible platform for precision cancer therapy. This study establishes a superphane-based singzyme with precise structure and multi-enzyme mimetic functionality, paving the way for single-molecule enzyme mimicry.

摘要

光动力疗法(PDT)是一种通过光诱导产生活性氧(ROS)来治疗癌症的有效方法;然而,其疗效常常受到光敏性、ROS产量和肿瘤微环境适应性等方面的限制。要应对这些挑战,需要高度工程化的光敏剂,具备增强的光吸收能力、稳定的催化性能和选择性氧化还原调节能力。在此,我们介绍一种结构和功能上类似单分子酶的光催化剂(超卟吩),这是一种基于超分子光敏剂的单酶,通过“超笼效应”或“超卟吩效应”设计而成,可促进光敏性增强、优异的ROS生成、光催化氧化和多酶模拟活性。其独特的结构,以精确且密集排列的吩噻嗪单元为特征,可使光吸收最大化并优化电子转移动力学,在450nm光照下产生高达70%的优异单线态氧(O)产量,显著超过笼状结构的42%、大环结构的39%和单体结构的24%。在功能上,单酶对NADH表现出优异的催化效率(/ = 2.43×10 L mol min),并催化NADH和GSH的氧化,模拟NADH氧化酶和GSH氧化酶活性。这会选择性地消耗NADH和GSH,诱导细胞内“氧爆发”效应。这种氧化还原失衡会抑制线粒体氧化磷酸化(OXPHOS),减少ATP生成,并促进凋亡和铁死亡途径。超卟吩在肿瘤典型的酸性和中性pH环境中具有稳定的活性,为精准癌症治疗提供了一个通用的、生物相容性良好的平台。本研究建立了一种具有精确结构和多酶模拟功能的基于超卟吩的单酶,为单分子酶模拟开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97e6/12308452/09c446420504/au4c01161_0001.jpg

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