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What every clinician needs to know about chronic kidney disease: Detection, classification and epidemiology
Nicholas M Selby1,2, Maarten W Taal1,2
1Centre for Kidney Research and Innovation, Academic Unit of Translational Medical Sciences, School of Medicine, University of Nottingham, Nottingham, UK.
Insights
Chronic kidney disease (CKD) affects over 800 million globally, increasing risks for heart disease, kidney failure, and mortality. Early detection and personalized management are crucial for better health outcomes in CKD patients.
Area of Science:
- Nephrology
- Public Health
- Internal Medicine
Background:
- Chronic kidney disease (CKD) impacts over 800 million people worldwide.
- CKD is strongly associated with cardiovascular disease, heart failure, kidney failure, acute kidney injury (AKI), and mortality.
- CKD frequently coexists with other conditions like type 2 diabetes and cardiovascular disease, complicating patient management and prognosis.
Purpose of the Study:
- To define CKD and outline its diagnostic criteria.
- To discuss the limitations of current markers for estimating glomerular filtration rate (GFR).
- To emphasize the importance of risk stratification and personalized care plans for CKD management.
Main Methods:
- CKD definition based on kidney structure/function abnormalities for over 3 months.
- Diagnosis typically involves abnormal estimated glomerular filtration rate (eGFR < 60 mL/min/1.73 m²) and/or proteinuria.
- Discusses limitations of serum creatinine for eGFR estimation in individuals with varying muscle mass and highlights cystatin C as an alternative, with combined creatinine-cystatin C offering the most accuracy.
Main Results:
- Serum creatinine, a common marker for GFR, can be inaccurate due to its relation to muscle mass.
- Cystatin C is an alternative marker for GFR but also has limitations.
- An eGFR estimate using both creatinine and cystatin C provides the highest accuracy.
Conclusions:
- Accurate GFR estimation is vital for diagnosing and managing CKD.
- Classification and risk stratification are essential steps following diagnosis.
- Implementing improved CKD detection and optimal management strategies can significantly benefit population health.
Abstract:
Chronic kidney disease (CKD) is a major healthcare challenge, affecting >800 million people worldwide. Implications for population health result from the strong associations of CKD with increased rates of cardiovascular disease, heart failure, progressive CKD leading to kidney failure, acute kidney injury (AKI), and mortality. In addition to a single disease perspective, CKD commonly coexists alongside other long-term conditions, in particular type 2 diabetes and cardiovascular disease. CKD is therefore an important component of multimorbidity that influences individual management and impacts prognosis. CKD is defined by abnormalities of kidney structure or function of any cause with implications for health that are present for longer than 3 months. The diagnosis is usually made on the basis of an abnormal glomerular filtration rate (GFR < 60 mL/min/1.73 m2) and/or the presence of proteinuria (urine albumin to creatinine ratio > 30 mg/g or >3 mg/mmol). GFR is usually estimated from serum creatinine concentration using a variety of validated equations. However, serum creatinine is closely related to muscle mass and may therefore not be an accurate marker of GFR in people with high or low muscle mass (sarcopaenia). Cystatin C is an alternative endogenous marker of GFR that is increasingly being used but also has limitations. An estimate of GFR based on both creatinine and cystatin C is the most accurate. Diagnosis should be followed by classification and risk stratification to guide the development of a risk-based, personalized care plan. Improved detection and widespread implementation of optimal CKD management has the potential to bring major benefits to population health.
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