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Updated: Oct 9, 2025

Acute Kidney Injury Model Induced by Cisplatin in Adult Zebrafish
Published on: May 15, 2021
Kidney-Targeted Renalase Agonist Prevents Cisplatin-Induced Chronic Kidney Disease by Inhibiting Regulated Necrosis
Xiaojia Guo1, Leyuan Xu1, Heino Velazquez1,2
1Section of Nephrology, Department of Internal Medicine, Yale School of Medicine, New Haven, Connecticut.
Background:
Repeated administration of cisplatin causes CKD. In previous studies, we reported that the kidney-secreted survival protein renalase (RNLS) and an agonist peptide protected mice from cisplatin-induced AKI.
Methods:
To investigate whether kidney-targeted delivery of RNLS might prevent cisplatin-induced CKD in a mouse model, we achieved specific delivery of a RNLS agonist peptide (RP81) to the renal proximal tubule by encapsulating the peptide in mesoscale nanoparticles (MNPs). We used genetic deletion of RNLS, single-cell RNA sequencing analysis, and Western blotting to determine efficacy and to explore underlying mechanisms. We also measured plasma RNLS in patients with advanced head and neck squamous cell carcinoma receiving their first dose of cisplatin chemotherapy.
Results:
In mice with CKD induced by cisplatin, we observed an approximate 60% reduction of kidney RNLS; genetic deletion of RNLS was associated with significantly more severe cisplatin-induced CKD. In this severe model of cisplatin-induced CKD, systemic administration of MNP-encapsulated RP81 (RP81-MNP) significantly reduced CKD as assessed by plasma creatinine and histology. It also decreased inflammatory cytokines in plasma and inhibited regulated necrosis in kidney. Single-cell RNA sequencing analyses revealed that RP81-MNP preserved epithelial components of the nephron and the vasculature and suppressed inflammatory macrophages and myofibroblasts. In patients receiving their first dose of cisplatin chemotherapy, plasma RNLS levels trended lower at day 14 post-treatment.
Conclusions:
Kidney-targeted delivery of RNLS agonist RP81-MNP protects against cisplatin-induced CKD by decreasing cell death and improving the viability of the renal proximal tubule. These findings suggest that such an approach might mitigate the development of CKD in patients receiving cisplatin cancer chemotherapy.
Insights
Kidney-targeted delivery of a renalase (RNLS) agonist peptide using mesoscale nanoparticles (MNPs) effectively prevented chronic kidney disease (CKD) in mice treated with cisplatin. This approach shows promise for protecting cancer patients undergoing chemotherapy.
Area of Science:
- Nephrology
- Pharmacology
- Biotechnology
Background:
- Cisplatin chemotherapy can cause chronic kidney disease (CKD).
- Renalase (RNLS), a kidney-secreted protein, and its agonist peptides have previously shown protective effects against acute kidney injury (AKI).
Purpose of the Study:
- To investigate if kidney-targeted delivery of an RNLS agonist peptide could prevent cisplatin-induced CKD in a mouse model.
- To explore the underlying mechanisms of protection and assess relevance in human cancer patients.
Main Methods:
- Mesoscale nanoparticles (MNPs) were used to deliver an RNLS agonist peptide (RP81) to the renal proximal tubule in mice.
- Genetic deletion of RNLS, single-cell RNA sequencing, and Western blotting were employed to assess efficacy and mechanisms.
- Plasma RNLS levels were measured in patients receiving cisplatin chemotherapy.
Main Results:
- Cisplatin treatment reduced kidney RNLS by approximately 60%; RNLS deletion exacerbated CKD.
- Systemic administration of RP81-loaded MNPs (RP81-MNP) significantly reduced CKD markers (creatinine, histology) and inflammation.
- RP81-MNP preserved nephron epithelial components and vasculature, suppressed inflammatory macrophages and myofibroblasts.
- Plasma RNLS levels trended lower in patients post-cisplatin treatment.
Conclusions:
- Kidney-targeted delivery of RNLS agonist RP81-MNP protects against cisplatin-induced CKD by reducing cell death and enhancing renal proximal tubule viability.
- This strategy may offer a novel approach to mitigate CKD development in patients receiving cisplatin chemotherapy.
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