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Updated: Apr 17, 2026

Technical Refinement of a Bilateral Renal Ischemia-Reperfusion Mouse Model for Acute Kidney Injury Research
Published on: November 3, 2023
Antithrombin nanoparticles improve kidney reperfusion and protect kidney function after ischemia-reperfusion injury
Junjie Chen1, Chandu Vemuri2, Rohun U Palekar3
1Department of Medicine, Washington University, St. Louis, Missouri;
Abstract:
In the extension phase of acute kidney injury, microvascular thrombosis, inflammation, vasoconstriction, and vascular endothelial cell dysfunction promote progressive damage to renal parenchyma after reperfusion. In this study, we hypothesized that direct targeting and pharmaceutical knockdown of activated thrombin at the sites of injury with a selective nanoparticle (NP)-based thrombin inhibitor, PPACK (phenylalanine-proline-arginine-chloromethylketone), would improve kidney reperfusion and protect renal function after transient warm ischemia in rodent models. Saline- or plain NP-treated animals were employed as controls. In vivo 19F magnetic resonance imaging revealed that kidney nonreperfusion was evident within 3 h after global kidney reperfusion at 34 ± 13% area in the saline group and 43 ± 12% area in the plain NP group and substantially reduced to 17 ± 4% (∼50% decrease, P < 0.05) in the PPACK NP pretreatment group. PPACK NP pretreatment prevented an increase in serum creatinine concentration within 24 h after ischemia-reperfusion, reflecting preserved renal function. Histologic analysis illustrated substantially reduced intrarenal thrombin accumulation within 24 h after reperfusion for PPACK NP-treated kidneys (0.11% ± 0.06%) compared with saline-treated kidneys (0.58 ± 0.37%). These results suggest a direct role for thrombin in the pathophysiology of AKI and a nanomedicine-based preventative strategy for improving kidney reperfusion after transient warm ischemia.
Insights
Nanoparticle-based thrombin inhibitors, PPACK, significantly improved kidney reperfusion and protected renal function after ischemia-reperfusion injury in rodent models. This nanomedicine approach reduced nonreperfusion and intrarenal thrombin accumulation, suggesting a preventative strategy for acute kidney injury.
Area of Science:
- Nephrology
- Vascular Biology
- Nanomedicine
Background:
- Acute kidney injury (AKI) involves microvascular thrombosis, inflammation, and endothelial dysfunction post-reperfusion.
- Activated thrombin contributes to progressive renal damage after transient warm ischemia.
Purpose of the Study:
- To investigate the efficacy of a nanoparticle (NP)-based thrombin inhibitor, PPACK, in improving kidney reperfusion and function after ischemia-reperfusion injury.
- To assess the role of direct thrombin targeting in preventing AKI progression.
Main Methods:
- Rodent models of transient warm kidney ischemia-reperfusion were used.
- Animals were pretreated with saline, plain NPs, or PPACK-loaded NPs.
- In vivo 19F MRI assessed kidney nonreperfusion, serum creatinine measured renal function, and histology evaluated thrombin accumulation.
Main Results:
- PPACK NP pretreatment reduced kidney nonreperfusion by approximately 50% compared to controls (17% vs. 34-43%).
- PPACK NP treatment preserved renal function, preventing the rise in serum creatinine within 24 hours post-ischemia.
- Histologic analysis showed significantly reduced intrarenal thrombin accumulation in PPACK NP-treated kidneys.
Conclusions:
- Direct targeting of activated thrombin with PPACK-loaded NPs is a viable strategy for improving kidney reperfusion after ischemia-reperfusion.
- This nanomedicine approach demonstrates a protective effect against AKI, highlighting thrombin's role in its pathophysiology.
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Acute Kidney Injury I: Introduction
Acute Kidney Injury II: Pathophysiology
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