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Cardiorenal syndrome: pathophysiology and potential targets for clinical management
Parta Hatamizadeh1, Gregg C Fonarow, Matthew J Budoff
1Division of Nephrology, University of Michigan, 3914 Taubman Center, SPC 5364, 1500 E. Medical Center Drive, Ann Arbor, MI 48109, USA.
Insights
Cardiorenal syndrome (CRS) involves complex interactions between heart and kidney dysfunction, extending beyond simple heart failure. Targeting multiple interconnected pathways is crucial for effective treatment of this condition.
Area of Science:
- Cardiology
- Nephrology
- Systems Biology
Background:
- Cardiorenal syndrome (CRS) is characterized by combined heart and kidney dysfunction, often linked to hemodynamic impairment.
- Historically, CRS was attributed mainly to cardiac pump failure causing kidney volume retention, but it's now understood as a more complex interplay of multiple systems.
Purpose of the Study:
- To propose a more comprehensive, pathophysiologically relevant classification of cardiorenal syndrome.
- To highlight the interconnected network of events contributing to CRS, including heart failure, kidney disease, and systemic factors.
Main Methods:
- Review and synthesis of existing medical knowledge on cardiorenal syndrome.
- Analysis of the multifactorial nature of CRS, involving heart, kidneys, and other body systems.
Main Results:
- CRS involves a complex network of interrelated events, including heart failure, atherosclerosis, kidney failure, neurohormonal dysregulation, anemia, mineral metabolism disorders (FGF23, phosphorus, vitamin D), and inflammation.
- These factors can lead to malnutrition-inflammation-cachexia complex and protein-energy wasting.
- The origin of CRS in a given patient is often difficult to pinpoint due to the interconnectedness of these pathways.
Conclusions:
- A pathophysiologically relevant classification of CRS is needed, considering its multifactorial nature.
- Current therapies primarily focus on hemodynamic adjustments, which may be insufficient.
- Future research should explore interventions targeting the diverse components of the CRS network to improve treatment outcomes.
Abstract:
Combined dysfunction of the heart and the kidneys, which can be associated with haemodynamic impairment, is classically referred to as cardiorenal syndrome (CRS). Cardiac pump failure with resulting volume retention by the kidneys, once thought to be the major pathophysiologic mechanism of CRS, is now considered to be only a part of a much more complicated phenomenon. Multiple body systems may contribute to the development of this pathologic constellation in an interconnected network of events. These events include heart failure (systolic or diastolic), atherosclerosis and endothelial cell dysfunction, uraemia and kidney failure, neurohormonal dysregulation, anaemia and iron disorders, mineral metabolic derangements including fibroblast growth factor 23, phosphorus and vitamin D disorders, and inflammatory pathways that may lead to malnutrition-inflammation-cachexia complex and protein-energy wasting. Hence, a pathophysiologically and clinically relevant classification of CRS based on the above components would be prudent. With the existing medical knowledge, it is almost impossible to identify where the process has started in any given patient. Rather, the events involved are closely interrelated, so that once the process starts at a particular point, other pathways of the network are potentially activated. Current therapies for CRS as well as ongoing studies are mostly focused on haemodynamic adjustments. The timely targeting of different components of this complex network, which may eventually lead to haemodynamic and vascular compromise and cause refractoriness to conventional treatments, seems necessary. Future studies should focus on interventions targeting these components.
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