Concurrent Subcellular Delivery of Hydrogen Sulfide and a Payload with Near-Infrared Light

JACS Au Pub Date : 2024-07-05 DOI:10.1021/jacsau.4c00445
Katarzyna Hanc, Hana Janeková, Peter Štacko
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Abstract

Hydrogen sulfide (H2S) is a gaseous signaling molecule, exerting crucial regulatory functions in organelles and cellular environments. H2S exhibits high therapeutic potential and synergistic effects with other drugs, and its potency is notably enhanced through organelle-specific targeting. Yet, the navigation of light-activated H2S donors to specific organelles remains absent. Here, we report the first organelle-specific photocage that simultaneously delivers H2S and a payload with subcellular precision to mitochondria of live human cells using tissue-penetrating near-infrared light as a trigger. The fluorogenic payload enables real-time monitoring of the process, and we demonstrate the concurrent uncaging in mitochondria through a combination of fluorescence microscopy and mitochondria-specific fluorescent probes. We anticipate that these photocages will permit the precise delivery of H2S-drug combinations with exceptional spatiotemporal control, thereby driving the harnessing of known synergistic effects and the discovery of novel therapeutic strategies.

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用近红外光同时向亚细胞输送硫化氢和有效载荷
硫化氢(H2S)是一种气态信号分子,在细胞器和细胞环境中发挥着重要的调节功能。H2S 具有很高的治疗潜力,并能与其他药物产生协同效应。然而,将光激活的 H2S 供体导航到特定细胞器的方法仍然缺乏。在这里,我们报告了首个细胞器特异性光笼子,它利用组织穿透性近红外线作为触发器,同时将 H2S 和有效载荷亚细胞精确地输送到活人体细胞的线粒体。通过荧光显微镜和线粒体特异性荧光探针的组合,我们展示了线粒体中的同步解笼过程。我们预计,这些光电笼将允许以卓越的时空控制精确输送 H2S-药物组合,从而推动已知协同效应的利用和新型治疗策略的发现。
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