DOI: 10.1002/advs.77090 ISSN: 2198-3844

Kidney‐Targeted Cilastatin Nanoparticles Inhibit DPEP1‐Mediated Ferroptosis for Acute Kidney Injury Therapy

Wanbing Qin, Jiaqi Huang, Manting Zhang, Wanchun Yang, Mingwei Xu, Chi Jiang, Jiekai Li, Jinjuan Wen, Qibin Huang, Shiqi Wen, Weidong Wang, Junbing He, Qinghua Liu

ABSTRACT

Cisplatin‐induced acute kidney injury (CI‐AKI) is a frequent, dose‐dependent complication in patients receiving cisplatin chemotherapy, and effective targeted treatments remain unavailable. The development of targeted therapies for CI‐AKI may improve the efficacy of chemotherapy while mitigating renal toxicity. Given that ferroptosis is a key pathological mechanism in CI‐AKI, targeted drug delivery systems against this process represent a promising therapeutic strategy. Dipeptidase 1 (DPEP1) is highly expressed in renal proximal tubular brush borders and has been associated with ferroptosis regulation and tubular injury. In this study, mesoporous polydopamine nanoparticles (MPDA NPs) were engineered for renal‐targeted delivery of cilastatin sodium (CTT), a specific DPEP1 inhibitor, through L‐serine (L‐Ser) surface modification (CTT/MPDA@L‐Ser NPs). In vitro experiments demonstrated that CTT/MPDA@L‐Ser NPs inhibited the expression of DPEP1 to upregulate the expression of the ferroptosis‐suppressing protein glutathione peroxidase 4 (GPX4), thereby suppressing ferroptosis pathways. In AKI mice, CTT/MPDA@L‐Ser NPs exhibited selective renal accumulation, significantly ameliorating serum creatinine and blood urea nitrogen levels. Collectively, CTT/MPDA@L‐Ser NPs exhibited potent therapeutic efficacy against AKI, presenting a promising strategy for targeted AKI management.

More from our Archive