Evaluating kidney function using a point-of-care creatinine test in Ugandan children with severe malaria: a

Anthony Batte1, Kristin J Murphy2, Ruth Namazzi3

  • 1Child Health and Development Centre, Makerere University College of Health Sciences, Kampala, Uganda.

BMC Nephrology
|November 7, 2021
PubMed

Insights

Point-of-care creatinine tests underestimated acute kidney injury (AKI) in Ugandan children with malaria. This highlights the need for improved diagnostics in low-income countries to ensure equitable care for AKI.

Area of Science:

  • Pediatrics
  • Nephrology
  • Infectious Diseases

Background:

  • Acute kidney injury (AKI) disproportionately affects low- and middle-income countries (LMIC), yet research from these regions, particularly sub-Saharan Africa, is limited.
  • Accurate serum creatinine measurement is crucial for diagnosing AKI, but access to reliable testing is a significant barrier in LMIC.
  • This study investigated the effectiveness of a point-of-care creatinine test for diagnosing AKI in Ugandan children with malaria.

Purpose of the Study:

  • To evaluate the utility of a point-of-care (POC) creatinine test for diagnosing acute kidney injury (AKI) in Ugandan children hospitalized with severe malaria.
  • To compare POC creatinine measurements with reference laboratory methods (IDMS-traceable and modified Jaffe).
  • To assess the correlation between POC creatinine measurements and AKI diagnosis and mortality prediction.

Main Methods:

  • A cohort of 539 Ugandan children (6 months to 4 years) with severe malaria had paired admission creatinine levels measured.
  • Creatinine was assessed using isotope dilution mass spectrometry (IDMS)-traceable methods as a reference, modified Jaffe method, and a point-of-care i-STAT blood analyzer (with and without CO2 adjustment).
  • AKI was defined and staged using Kidney Disease: Improving Global Outcomes (KDIGO) criteria.

Main Results:

  • High correlation (R²=0.95) was observed between reference creatinine and adjusted POC creatinine across all values, but significantly lower correlation (R²=0.44) in children with creatinine <1mg/dL.
  • The prevalence of AKI was 45.5% by reference creatinine, versus 27.1% (unadjusted POC) and 32.3% (adjusted POC).
  • All methods showed a strong association with mortality (p<0.0001), with reference creatinine-defined AKI being most sensitive for mortality prediction (85.4% sensitivity).

Conclusions:

  • Point-of-care creatinine testing in young Ugandan children with malaria underestimated creatinine levels and AKI prevalence compared to the clinical reference standard.
  • The POC test's accuracy was reduced in children with lower creatinine values, impacting AKI diagnosis.
  • Further research on alternative AKI biomarkers is essential for equitable global AKI diagnostics in LMIC.
Abstract

Related Concept Videos

Drug Dosing in Renal Diseases: Estimation of Glomerular Filtration Rate Based on Serum Creatinine Concentration01:28

Drug Dosing in Renal Diseases: Estimation of Glomerular Filtration Rate Based on Serum Creatinine Concentration

Glomerular filtration rate (GFR) can be estimated from serum creatinine using the modification of diet in renal disease (MDRD) formula or the chronic kidney disease–epidemiology collaboration (CKD–EPI) equation. Both methods are widely used in clinical practice to assess kidney function and guide treatment decisions.The MDRD equation does not require weight or height measurements and is normalized to the body surface area of 1.73 m², considered the average adult surface area.
27
Drug Dosing in Renal Diseases: Measurement of Serum Creatinine Concentration and Clearance01:25

Drug Dosing in Renal Diseases: Measurement of Serum Creatinine Concentration and Clearance

In healthy individuals, serum creatinine levels remain stable due to a balance between its constant production—primarily from muscle metabolism—and renal excretion. Creatinine is freely filtered by the glomeruli, making it a valuable marker for estimating renal function. When the glomerular filtration rate (GFR) decreases, the kidneys can only eliminate less creatinine, causing serum levels to rise.Serum creatinine concentration is widely used to estimate creatinine clearance...
26
Factors Affecting Renal Clearance: Renal Impairment01:17

Factors Affecting Renal Clearance: Renal Impairment

Renal dysfunction significantly impairs the renal clearance of drugs, leading to potential complications in drug therapy. Renal failure, which can be caused by various factors, poses a significant challenge in the elimination of drugs from the body.
One condition associated with renal failure is uremia. Uremia is characterized by impaired glomerular filtration and fluid accumulation in the body. This condition hinders the renal clearance of drugs, resulting in drug accumulation and potential...
193
Serum Studies: Renal Function Tests01:24

Serum Studies: Renal Function Tests

Renal function tests are crucial for assessing kidney health, monitoring disease progression, and evaluating the kidneys' efficiency in waste elimination, fluid balance, and electrolyte regulation. These tests offer critical insights into kidney function, even though routine measurements may appear normal until there is a significant decline in the glomerular filtration rate or GFR. Typically, signs of kidney impairment only become evident when the GFR falls to about 50% of its normal level.
126
Acute Kidney Injury IV: Diagnostic Studies and Prevention01:30

Acute Kidney Injury IV: Diagnostic Studies and Prevention

Accurate diagnosis and effective prevention are critical in managing Acute Kidney Injury (AKI), which is linked to high mortality rates ranging from 10% to 80%. Timely recognition of at-risk patients and careful monitoring can significantly reduce the likelihood of kidney damage.Diagnostic Assessments:The diagnostic process starts with a comprehensive medical history to identify prerenal, intrarenal, and postrenal causes.Prerenal causes, such as dehydration, hypotension, or blood loss, should...
82
Renal Clearance01:23

Renal Clearance

The glomerular filtration rate (GFR) is a critical marker of kidney function, reflecting the efficiency of filtration by the glomeruli. Renal clearance of specific substances, such as inulin or creatinine, is commonly used to measure GFR.
Renal clearance refers to the volume of plasma cleared of a specific substance, such as creatinine, per unit of time. To measure clearance, urine samples are collected over a 24-hour period during each bladder voiding, followed by a single blood sample at the...
1.5K