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Published on: August 7, 2014
Spot test of urinary protein using erythrosin B and a membrane film
Emiko Kaneko1, Hiroko Yasuda, Asami Higurashi
1New Industry Creation Hatchery Center, Tohoku University, Sendai 980-8579, Japan. emiko@sda.att.ne.jp
Insights
A new visual spot test for urinary protein using Erythrosin B and poly(ethylene glycol) (PEG) offers a simple, sensitive method for early renal failure screening. This cost-effective test is significantly more sensitive than current methods.
Area of Science:
- Analytical Chemistry
- Biochemistry
Background:
- Elevated urinary protein levels are a key indicator of renal failure, a major global health concern.
- Current screening methods lack the required simplicity and sensitivity for widespread point-of-care use.
Purpose of the Study:
- To develop a novel, visual, and highly sensitive spot test for detecting urinary protein.
- To establish a cost-effective and rapid screening tool for early diagnosis of renal failure.
Main Methods:
- Development of a visual spot test utilizing Erythrosin B dye and a cellulose acetate membrane with poly(ethylene glycol) (PEG).
- Analysis of the underlying mechanism using dynamic light scattering to understand dye-protein particle interactions.
- Determination of visual detection limits for human serum albumin (HSA) and practical detection thresholds in urine.
Main Results:
- The developed method forms a distinct red ring-shaped stain for dye-bound protein.
- Poly(ethylene glycol) (PEG) effectively eliminates reagent blank, enhancing contrast.
- Visual detection limit for HSA is 0.5 mg dm⁻³, with a practical urine detection threshold of 30 mg dm⁻³.
- Sensitivity is 60-200 times higher than standard test strips.
Conclusions:
- The proposed visual spot test is a simple, rapid, and cost-effective method for urinary protein detection.
- This technique offers superior sensitivity for early-stage renal failure screening at the point-of-care.
- The method's high sensitivity and ease of use make it suitable for widespread diagnostic applications.
Abstract:
Point-of-care testing is currently one of the subjects of growing interest in analytical chemistry. Elevated levels of urinary protein imply renal failure, which is one of the world's biggest public health problems. In spite of the urgent necessity for a screening test of protein in urine, there are no reports of a simple yet sensitive method for its detection. In this study, we developed a new visual method, using Erythrosin B and a cellulose acetate membrane film as the substrate for a new spot test of urinary protein in the presence of poly(ethylene glycol) (PEG). The noteworthy point of our work is that when a drop of dye-protein solution containing PEG is set on a membrane film, a red ring-shaped stain of the dye-bound protein is formed on the film surface. PEG plays a significant role in eliminating the reagent blank, thus providing a clear contrast. Measurements taken using a dynamic light scattering particle size analyzer indicated that the underlying mechanism of this contrast is brought about by the different sizes of the excess dye and dye-protein particles. The visual detection limit is 0.5 mg dm(-3) for human serum albumin (HSA), the main protein in urine. Our visual method is sufficiently sensitive to detect urinary protein even for healthy subjects, providing a higher sensitivity than test strips by a factor of 60-200. When 0.15 cm(3) of urine is used to prepare 10 cm(3) of sample solution, the practical detection threshold is 30 mg dm(-3) in urine using a 67x dilution factor. The proposed method will be useful as a simple, rapid, and cost-effective screening test for the diagnosis of renal failure at an early stage.
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