Kejia Hou, Yiming Yuan, Junshuai Wang, Zhiwei Huang, Zitong Pan, Hexiang Yin, Jiayi Chen, Zhixin Tang
Hypertension is accompanied by persistent oxidative stress and inflammatory activation, which contribute to vascular dysfunction and target-organ injury. Hypochlorous acid (HClO), a highly reactive oxidant generated through the myeloperoxidase pathway, may serve as a molecular indicator of hypertension-associated oxidative and inflammatory damage. Herein, we developed OX-MT, an HClO-responsive near-infrared fluorescent probe, and integrated it with high-content imaging for the screening of natural products with potential antihypertensive activity. OX-MT enabled rapid (10 s), selective, and sensitive (LOD 20.4 nM) detection of HClO via an oxidative cleavage-triggered fluorescence turn-on at 680 nm. It was successfully applied for imaging exogenous and endogenous HClO in RAW264.7 macrophages. Using OX-MT as a high-content readout, procyanidins were identified from a natural product library that reduced HClO-associated fluorescence in angiotensin II-stimulated cells. In hypertensive mice, procyanidin treatment attenuated blood pressure elevation, reduced OX-MT signals in vivo and ex vivo, and partially alleviated aortic and renal histopathological damage in a dose-dependent manner. Collectively, this study establishes a probe-guided strategy that links HClO-associated oxidative imaging with high-content phenotypic screening and in vivo validation, providing a practical approach for identifying natural products with potential therapeutic value against hypertension.