In summary, we have developed a novel NIR fluorescent probe (DCI-Cl-HNO) for precise monitoring of the dynamic levels of HNO during the DILI process. DCI-Cl-HNO exhibits efficient performance for HNO detection, including a rapid response, high specificity, and outstanding sensitivity. Furthermore, this probe demonstrates excellent performance in tracking fluctuations of both exogenous and endogenous HNO, and has been successfully applied to monitor the overproduction of HNO in an Erastin-induced cellular model of ferroptosis. We not only successfully achieved real-time tracking of fluctuations in endogenous and exogenous HNO levels in cells, but also clearly monitored the excessive production of HNO in Erastin-induced cellular model of ferroptosis. Crucially, with the help of this probe, we intensively investigated the correlation between ferroptosis and DILI in both cellular and murine models, confirming that the occurrence and development of DILI are accompanied by the pathological process of ferroptosis. Therefore, this work not only provides insights into the association between DILI and ferroptosis, but also offers a promising molecular imaging strategy for the diagnosis of DILI.