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;

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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