Background: The potential of hypophosphatemia (HP) to differentiate between febrile syndromes and its clinical significance in children without sepsis were not previously described.
Methods: Data were retrospectively collected of febrile children 3 months to 18 years of age, hospitalized at general pediatric wards during 2010-2019. Phosphate levels were compared between bacterial infection (BI), viral infection (VI), and Kawasaki disease (KD). Regression analyses were used to evaluate the relationship between HP and outcome.
Results: Of 3963 febrile children, 559 had BI, 3271 had VI, and 133 had KD. In BI compared to VI and KD, HP was more prevalent (49.2%, 19.7%, and 31.6%, respectively; P <0.001) and more severe [median (interquartile range) phosphate standard deviation score: -1.85 (2.08), -0.56 (2.08), and -1.20 (2.28), respectively; P <0.001]. In the BI group, Pi-SDS level was lower among patients with than without bacteremia (-2.33 ± 1.8 vs. -0.79 ± 1.68; P <0.001). Phosphate levels displayed discriminatory potential between bacterial and viral etiologies, with an area under the curve of 0.719 (95% CI, 0.697-0.742). Minimal phosphate standard deviation score values had a negative weak correlation with the maximal C-reactive protein levels and white blood cell count. Univariate and multivariate analyses showed an association of HP with a more severe disease course, manifested by longer hospital stay [+2.10 (95% CI, 0.75-3.46) days; P =0.003] and a higher rate of intensive care unit admission [odds ratio, 2.63 (95% CI, 1.94-3.56); P <0.001).
Conclusions: Hypophosphatemia rates were highest in bacterial etiology, intermediate in KD, and lowest in viral etiology and were associated with poorer outcomes. Phosphate level may serve as a marker for ruling out a bacterial etiology.
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http://dx.doi.org/10.1097/INF.0000000000004471 | DOI Listing |
Sci Rep
January 2025
Department of Nephrology, Fujian Medical University Union Hospital, Fuzhou, 350001, China.
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Hunan Provincial Key Laboratory of Cytochemistry, School of Chemistry and Chemical Engineering, Changsha University of Science and Technology, Changsha, 410114, PR China.
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View Article and Find Full Text PDFInt J Biol Macromol
January 2025
Key Laboratory of Animal Biochemistry and Nutrition, Ministry of Agriculture, College of Veterinary Medicine, Henan Agricultural University, Zhengzhou 450046, Henan, China; Key Laboratory of Veterinary Biotechnology of Henan Province, College of Veterinary Medicine, Henan Agricultural University, Zhengzhou 450046, Henan, China. Electronic address:
Ammonia can cause cells to produce a large amount of reactive oxygen species (ROS), leading to the oxidative stress of cells. As the main intracellular reductant, nicotinamide adenine dinucleotide phosphate (NADPH) plays a crucial role in maintaining reduced glutathione (GSH), helping to remove ROS and protect cells from oxidative damage. Our study demonstrated that SIRT5 desuccinylated isocitrate dehydrogenase 2 (IDH2) to enhance its activity, resulting in increased NADPH production.
View Article and Find Full Text PDFJ Trauma Acute Care Surg
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From the Department of Surgery, University of Cincinnati, Cincinnati, Ohio.
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