Colorimetric and fluorometric determination of uric acid by a suspension-based assay using enzyme-immobilized micro-sized particles.
Yukiko MoriiwaKeigo HatakeyamaKazuhiro MoriokaYoshinori InoueHiroya MurakamiNorio TeshimaAkio YanagidaAtsushi ShojiPublished in: Analytical sciences : the international journal of the Japan Society for Analytical Chemistry (2024)
Daily monitoring of serum uric acid levels is very important to provide appropriate treatment according to the constitution and lifestyle of individual hyperuricemic patients. We have developed a suspension-based assay to measure uric acid by adding a sample solution to the suspension containing micro-sized particles immobilized on uricase and horseradish peroxidase (HRP). In the proposed method, the mediator reaction of uricase, HRP, and uric acid produces resorufin from Amplex red. This resorufin is adsorbed onto enzyme-immobilized micro-sized particles simultaneously with its production, resulting in the red color of the micro-sized particles. The concentration of resorufin on the small surface area of the microscopic particles achieves a colorimetric analysis of uric acid with superior visibility. In addition, ethanol-induced desorption of resorufin allowed quantitative measurement of uric acid using a 96-well fluorescent microplate reader. The limit of detection (3σ) and RSD (n = 3) were estimated to be 2.2 × 10 -2 μg/mL and ≤ 12.1%, respectively. This approach could also be applied to a portable fluorometer.
Keyphrases
- uric acid
- metabolic syndrome
- end stage renal disease
- gold nanoparticles
- hydrogen peroxide
- high throughput
- chronic kidney disease
- ionic liquid
- newly diagnosed
- peritoneal dialysis
- prognostic factors
- type diabetes
- cardiovascular disease
- sensitive detection
- fluorescent probe
- oxidative stress
- high resolution
- weight loss
- diabetic rats
- endothelial cells
- replacement therapy
- capillary electrophoresis
- combination therapy
- solid phase extraction
- loop mediated isothermal amplification
- simultaneous determination