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A Large Animal Model for Acute Kidney Injury by Temporary Bilateral Renal Artery Occlusion
Published on: February 2, 2021
Cardiopulmonary bypass-associated acute kidney injury: a pigment nephropathy?
Michael Haase1, Anja Haase-Fielitz, Sean M Bagshaw
1Department of Intensive Care, Austin Health, Austin Hospital, Melbourne, Vic., Australia, and Department of Nephrology, Charité University Medicine, Berlin, Germany.
Abstract:
Acute kidney injury (AKI) is a common and serious postoperative complication following exposure to cardiopulmonary bypass (CPB). Several mechanisms have been proposed by which the kidney can be damaged and interventional studies addressing known targets of renal injury have been undertaken in an attempt to prevent or attenuate CPB-associated AKI. However, no definitive strategy appears to protect a broad heterogeneous population of cardiac surgery patients from CPB-associated AKI. Although the association between hemoglobinuria and the development of AKI was recognized many years ago, this idea has not been sufficiently acknowledged in past and current clinical research in the context of cardiac surgery-related AKI. Hemoglobin-induced renal injury may be a major contributor to CPB-associated AKI. Accordingly, we now describe in detail the mechanisms by which hemoglobinuria may induce renal injury and raise the question as to whether CPB-associated AKI may actually be, in a significant part, a form of pigment nephropathy where hemoglobin is the pigment responsible for renal injury. If CPB-associated AKI is a pigment nephropathy, alkalinization of urine with sodium bicarbonate might protect from: (1) tubular cast formation from met-hemoglobin; (2) proximal tubular cell necrosis by reduced endocytotic hemoglobin uptake, and (3) free iron-mediated radical oxygen species production and related injury. Sodium bicarbonate is safe, simple to administer and inexpensive. If part of AKI after CPB is truly secondary to hemoglobin-induced pigment nephropathy, prophylactic sodium bicarbonate infusion might help attenuate it. A trial of such treatment might be a reasonable future investigation in higher risk patients receiving CPB.
Insights
Acute kidney injury after cardiopulmonary bypass may stem from hemoglobinuria, a form of pigment nephropathy. Urine alkalinization with sodium bicarbonate could potentially prevent this kidney damage.
Area of Science:
- Nephrology
- Cardiovascular Surgery
- Intensive Care Medicine
Background:
- Acute kidney injury (AKI) is a frequent and severe complication after cardiopulmonary bypass (CPB).
- Existing strategies to prevent CPB-associated AKI have not proven universally effective.
- The role of hemoglobinuria in CPB-associated AKI has been historically underestimated.
Purpose of the Study:
- To explore the potential of hemoglobinuria as a significant contributor to AKI following CPB.
- To investigate the mechanisms by which hemoglobinuria may cause renal injury, proposing it as pigment nephropathy.
- To evaluate the potential protective role of urine alkalinization with sodium bicarbonate against CPB-associated AKI.
Main Methods:
- Detailed mechanistic review of hemoglobinuria-induced renal injury.
- Hypothesizing CPB-associated AKI as a form of pigment nephropathy.
- Proposing sodium bicarbonate for urine alkalinization to mitigate specific injury pathways.
Main Results:
- Hemoglobinuria can induce renal injury through mechanisms including tubular cast formation, proximal tubular cell necrosis, and iron-mediated oxidative stress.
- Alkalinizing the urine with sodium bicarbonate may counteract these injurious effects.
- Sodium bicarbonate is a safe, inexpensive, and easily administered intervention.
Conclusions:
- CPB-associated AKI may be significantly driven by hemoglobin-induced pigment nephropathy.
- Prophylactic sodium bicarbonate administration could be a viable strategy to attenuate CPB-associated AKI.
- Further clinical investigation, particularly in high-risk patients, is warranted to test this hypothesis.
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