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Published on: November 7, 2017
[The cardiorenal syndrome and erythropoietin]
Petar Kes1, Nikolina Basić-Jukić, Ivana Jurić
1Zavod za dijalizu, Klinicki bolnicki centar Zagreb, Hrvatska. kespetar@net.hr
Insights
Severe cardiorenal syndrome (SCRS) involves combined heart and kidney dysfunction. Erythropoietin (Epo) treatment may improve cardiac performance and delay kidney disease progression in anemic patients with SCRS.
Area of Science:
- Cardiorenal medicine
- Pathophysiology of organ failure
- Erythropoietin (Epo) signaling
Context:
- Severe cardiorenal syndrome (SCRS) links cardiac and renal dysfunction.
- Anemia is common in chronic renal failure (CRF) and chronic heart failure (CHF).
- Cardiorenal connectors like RAS, NO/ROS, SNS, and inflammation drive SCRS.
Purpose:
- To explore the role of erythropoietin (Epo) in severe cardiorenal syndrome (SCRS).
- To investigate Epo's potential benefits in anemic patients with concurrent cardiac and renal dysfunction.
Summary:
- Erythropoietin (Epo) production declines in chronic renal failure (CRF), and its sensitivity may be reduced in severe cardiorenal syndrome (SCRS).
- Epo treatment, beyond its hematopoietic effects, may counteract cardiorenal connector pathways.
- Evidence suggests Epo therapy improves cardiac function, slows kidney disease progression, and benefits anemic patients with CHF and mild anemia.
Impact:
- Epo treatment shows promise for improving outcomes in patients with severe cardiorenal syndrome (SCRS).
- Understanding Epo's mechanisms could lead to novel therapeutic strategies for cardiorenal diseases.
- Highlights the potential clinical benefit of Epo in managing complex cardiorenal conditions.
Abstract:
The pathophysiological condition, in which combined cardiac and renal dysfunction amplifies a progression in the failure of the individual organ, has been denoted as severe cardiorenal syndrome (SCRS). An interactive network of cardiorenal connectors, i.e., the renin-angiotensin system (RAS), nitric oxide (NO) and reactive oxygen species (ROS) balance, the sympathetic nervous system (SNS), and inflammation, has been proposed as the cornerstones of the pathophysiology of SCRS. Because erythropoietin (Epo) production declinesin chronic renal failure (CRF) and Epo sensitivity might decrease by the cardiorenalconnectors in patients with the SCRS, it is not surprising thatanaemia is a commonly occurring state coinciding with CRF and chronic heart failure (CHF). Epo treatment in patients with SCRS acts via haematopoietic effects, but also may intervenes in the vicious circle of cardiorenal connectors with subsequent deteriorating effects on cardiac, renal, and vascular function. It appears that regular Epo treatment in anaemic patients with diminished renal function improves cardiac performance, delays the progression of kidney disease, and may be of clinical benefit even to patients suffering from CHF with relatively mild anaemia. Despite growing evidence about Epo having positive effects on both renal and cardiac function, little is known about the underlying mechanisms of action.
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