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Published on: June 21, 2024
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.
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.
Background:
Acute kidney injury (AKI) disproportionately affects individuals in low-and middle-income countries (LMIC). However, LMIC-particularly countries in sub-Saharan Africa- are under-represented in global AKI research. A critical barrier in diagnosing AKI is access to reliable serum creatinine results. We evaluated the utility of a point-of-care test to measure creatinine and diagnose AKI in Ugandan children with malaria.
Methods:
Paired admission creatinine was assessed in 539 Ugandan children 6 months to 4 years of age hospitalized with severe malaria based on blood smear or rapid diagnostic test. Creatinine levels were measured using isotope dilution mass spectrometry (IDMS)-traceable methods. The reference creatinine was measured using the modified Jaffe method by a certified laboratory and the point-of-care testing was conducted using an i-STAT blood analyzer (i-STAT1, with and without adjustment for the partial pressure of carbon dioxide). AKI was defined and staged using the Kidney Disease: Improving Global Outcomes criteria.
Results:
The mean age of children was 2.1 years, and 21.6% of children were stunted. Mortality was 7.6% in-hospital. Over the entire range of measured creatinine values (<0.20mg/dL-8.4mg/dL), the correlation between the reference creatinine and adjusted and unadjusted point-of-care creatinine was high with R2 values of 0.95 and 0.93 respectively; however, the correlation was significantly lower in children with creatinine values <1mg/dL (R2 of 0.44 between the reference and adjusted and unadjusted i-STAT creatinine). The prevalence of AKI was 45.5% using the reference creatinine, and 27.1 and 32.3% using the unadjusted and adjusted point-of-care creatinine values, respectively. There was a step-wise increase in mortality across AKI stages, and all methods were strongly associated with mortality (p<0.0001 for all). AKI defined using the reference creatinine measure was the most sensitive to predict mortality with a sensitivity of 85.4% compared to 70.7 and 63.4% with the adjusted and unadjusted point-of-care creatinine values, respectively.
Conclusions:
Point-of-care assessment of creatinine in lean Ugandan children <4 years of age underestimated creatinine and AKI compared to the clinical reference. Additional studies are needed to evaluate other biomarkers of AKI in LMIC to ensure equitable access to AKI diagnostics globally.
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