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Cardiorenal syndrome in the pediatric population: A systematic review
Subal Kumar Pradhan1, Harsha Adnani2, Rama Safadi3
1Division of Pediatric Nephrology, Sardar Vallabhbhai Patel Post Graduate Institute of Pediatrics and SCB Medical College, Cuttack, Odisha, India.
Insights
Cardiorenal syndrome (CRS) in children is common, especially type 1, and linked to high mortality. Management focuses on diuretics, fluid removal, and treating underlying causes.
Area of Science:
- Pediatric Cardiology
- Pediatric Nephrology
- Cardiorenal Medicine
Background:
- Cardiorenal syndrome (CRS) involves heart-kidney interactions in disease.
- Understanding CRS pathophysiology and management is crucial due to rising morbidity and mortality.
- Pediatric CRS data is limited, necessitating focused review.
Purpose of the Study:
- To review the pathophysiology of different CRS types.
- To summarize therapeutic strategies for pediatric CRS.
- To highlight the prevalence and outcomes of CRS in children.
Main Methods:
- Systematic review of observational studies, case reports, and comparative studies.
- Literature search in PubMed, EMBASE, and Google Scholar (Jan 2000-Jan 2021).
- Keywords included "cardio-renal syndrome," "children," "acute kidney injury," and "acute decompensated heart failure."
Main Results:
- 14 pediatric studies (3608 children) were analyzed; 32% had CRS.
- Type 1 CRS was most prevalent (57%), followed by types 2/3 (14%) and 4/5 (7%).
- Common comorbidities included hematologic, oncologic, and respiratory conditions.
Conclusions:
- Type 1 CRS is prevalent in children and associated with significant mortality.
- Current treatments involve diuretics, fluid removal, and addressing underlying conditions.
- Further research is needed to improve pediatric CRS management.
Abstract:
The concept of cardiorenal syndrome (CRS) is derived from the crosstalk between the heart and kidneys in pathological conditions. Despite the rising importance of CRS, there is a paucity of information on the understanding of its pathophysiology and management, increasing both morbidity and mortality for patients. This review summarizes the existing conceptual pathophysiology of different types of CRS and delves into the associated therapeutic modalities with a focus on pediatric cases. Prospective or retrospective observational studies, comparative studies, case reports, case-control, and cross-sectional studies that include pediatric patients with CRS were included in this review. Literature was searched using PubMed, EMBASE, and Google Scholar with keywords including "cardio-renal syndrome, type," "reno-cardio syndrome," "children," "acute kidney injury," and "acute decompensated heart failure" from January 2000 to January 2021. A total of 14 pediatric studies were ultimately included and analyzed, comprising a combined population of 3608 children of which 32% had CRS. Of the 14 studies, 57% were based on type 1 CRS, 14% on types 2 and 3 CRS, and 7% were on types 4 and 5 CRS. The majority of included studies were prospective cohort, although a wide spectrum was observed in terms of patient age, comorbidities, etiologies, and treatment strategies. Commonly observed comorbidities in CRS type 1 were hematologic, oncologic, cardiology-related side effects, muscular dystrophy, and pneumonia/bronchiolitis. CRS, particularly type 1, is prevalent in children and has a significant risk of mortality. The current treatment regimen primarily involves diuretics, extracorporeal fluid removal, and treatment of underlying etiologies and comorbidities.
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