Pathophysiological mechanisms underlying a rat model of triple whammy acute kidney injury

Laura Prieto-García1,2,3, Laura Vicente-Vicente1,2,3,4,5, Víctor Blanco-Gozalo1,2,3

  • 1Institute of Biomedical Research of Salamanca (IBSAL), Salamanca, Spain.

Insights

The "triple whammy" acute kidney injury (TW-AKI) occurs when renin-angiotensin system inhibitors, diuretics, and NSAIDs are combined, especially when dehydrated. This study establishes a rat model for TW-AKI, revealing it as a prerenal condition.

Area of Science:

  • Nephrology
  • Pharmacology
  • Toxicology

Background:

  • Simultaneous use of renin-angiotensin system inhibitors, diuretics, and NSAIDs can cause "triple whammy" acute kidney injury (TW-AKI).
  • The pathophysiology of TW-AKI is poorly understood due to a lack of suitable preclinical models.
  • Existing research lacks a characterized experimental model for investigating TW-AKI.

Purpose of the Study:

  • To generate and characterize a rat model for studying "triple whammy" acute kidney injury (TW-AKI).
  • To elucidate the pathophysiological mechanisms underlying TW-AKI.
  • To provide a preclinical tool for better diagnosis and clinical management of TW-AKI.

Main Methods:

  • A rat model of TW-AKI was established using trandolapril (renin-angiotensin system inhibitor), ibuprofen (NSAID), and furosemide (diuretic).
  • Animals were subjected to varying drug combinations and partial water restriction.
  • Renal function was assessed via plasma creatinine, glomerular filtration rate, urine analysis, blood pressure, and renal blood flow measurements.

Main Results:

  • Combined drug treatments, particularly the triple combination with water restriction, induced overt acute kidney injury (AKI).
  • Histological examination showed no renal tissue injury, indicating a prerenal type of AKI.
  • Reduced blood pressure and renal blood flow were observed, suggesting impaired renal autoregulation is key in TW-AKI.

Conclusions:

  • Prerenal TW-AKI is precipitated by the combination of renin-angiotensin system inhibitors, NSAIDs, and diuretics when renal perfusion is challenged (e.g., dehydration).
  • The developed rat model effectively mimics prerenal TW-AKI, facilitating further pathophysiological research.
  • This model will aid in understanding and improving the clinical management of TW-AKI.

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