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通过各向异性Pd@Au等离子体纳米棒实现近红外光加速的生物正交药物解笼和光热消融

Near-Infrared Light-Accelerated Bioorthogonal Drug Uncaging and Photothermal Ablation by Anisotropic Pd@Au Plasmonic Nanorods.

作者信息

Ortega-Liebana M Carmen, Travnickova Jana, Adam Catherine, González-Calderón Davir, Lorente-Macías Álvaro, Lochenie Charles, Arenal Raul, Patton E Elizabeth, Unciti-Broceta Asier

机构信息

Department of Medicinal and Organic Chemistry and Unit of Excellence in Chemistry Applied to Biomedicine and Environment, Campus Cartuja s/n, University of Granada, Granada 18071, Spain.

GENYO, Pfizer/University of Granada/Andalusian Regional Government, Avda. Ilustración 114, Granada 18016, Spain.

出版信息

J Am Chem Soc. 2025 Jul 9;147(27):23980-23990. doi: 10.1021/jacs.5c07261. Epub 2025 Jun 26.

Abstract

Selective activation of chemotherapeutics at the tumor site via bioorthogonal catalysis is a promising strategy to reduce collateral damage to healthy tissues and organs. Despite significant advances in this field, targeted drug activation by transition-metal catalysts is still limited by insufficient spatiotemporal control over the metal-mediated uncaging process. Herein, we report the development of anisotropic Pd@Au plasmonic nanorods with the capacity to accelerate dealkylation reactions under near-infrared (NIR) irradiation, thereby enabling precise control over when and where these catalytic devices are switched on. We also show that the stability and chemical properties of Pd@Au nanorods are enhanced by Au-S functionalization with PEGylated phospholipids and report the development of a novel masking group for prodyes and prodrugs: the POxOC group, designed to improve physicochemical properties and the rate of the Pd-triggered dye/drug release process. NIR-photoactivation of lipo-Pd@Au nanorods is able to catalyze the uncaging of inactive drug precursors and release heat to the environment, killing cancer cells in culture and xenografted in zebrafish. This work provides a novel targeted strategy for photothermal chemotherapy by NIR-laser focalization.

摘要

通过生物正交催化在肿瘤部位选择性激活化疗药物是一种减少对健康组织和器官附带损害的有前景的策略。尽管该领域取得了重大进展,但过渡金属催化剂介导的靶向药物激活仍受限于对金属介导的解笼过程缺乏足够的时空控制。在此,我们报道了具有在近红外(NIR)照射下加速脱烷基反应能力的各向异性Pd@Au等离子体纳米棒的开发,从而能够精确控制这些催化装置何时何地开启。我们还表明,通过用聚乙二醇化磷脂进行Au-S功能化可增强Pd@Au纳米棒的稳定性和化学性质,并报道了一种用于前体染料和前体药物的新型掩蔽基团:POxOC基团,其设计目的是改善物理化学性质以及Pd触发的染料/药物释放过程的速率。脂质体-Pd@Au纳米棒的近红外光激活能够催化无活性药物前体的解笼并向环境释放热量,从而杀死培养物中和移植到斑马鱼体内的癌细胞。这项工作为通过近红外激光聚焦进行光热化疗提供了一种新型靶向策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c35/12257503/9846de46c1fb/ja5c07261_0001.jpg

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